Clinical & Demographic |
Demographics |
PHC_Visit
|
|
|
Harmonized Visit Number |
|
Integer |
Given differences in visit codes across cohorts, we built a harmonized visit variable simply counting each sequential visit within each study starting with the first visit with cognitive data and ending with the last visit with cognitive data. For non-cognitive data, PHC_Visit corresponds to the matching cognitive PHC_Visit where their respective collection dates were within 90 days of the given cognitive visit. |
|
|
Clinical & Demographic |
Demographics |
PHC_Age_Cognition
|
|
|
Participant's Age at Cognitive Visit |
Years |
Number |
Note: In NIAGADS this is a character variable since any PHC_Age equal to or above 90 was changed to "90+". |
|
|
Clinical & Demographic |
Demographics |
PHC_Age_Biomarker
|
|
|
Participant's Age at Biomarker Visit |
Years |
Number |
Note: In NIAGADS this is a character variable since any PHC_Age equal to or above 90 was changed to "90+". |
|
|
Clinical & Demographic |
Demographics |
PHC_Age_CardiovascularRisk
|
|
|
Participant's Age at Cardiovascular Risk Visit |
Years |
Number |
Note: In NIAGADS this is a character variable since any PHC_Age equal to or above 90 was changed to "90+". |
|
|
Clinical & Demographic |
Demographics |
PHC_Age_PET_Amyloid
|
|
|
Participant's Age at PET Amyloid Visit |
Years |
Number |
Note: In NIAGADS this is a character variable since any PHC_Age equal to or above 90 was changed to "90+". |
|
|
Clinical & Demographic |
Demographics |
PHC_Age_PET_Tau
|
|
|
Participant's Age at PET Tau Visit |
Years |
Number |
Note: In NIAGADS this is a character variable since any PHC_Age equal to or above 90 was changed to "90+". |
|
|
Clinical & Demographic |
Demographics |
PHC_Age_FLAIR
|
|
|
Participant's Age at FLAIR Visit |
Years |
Number |
Note: In NIAGADS this is a character variable since any PHC_Age equal to or above 90 was changed to "90+". |
|
|
Clinical & Demographic |
Demographics |
PHC_Age_T1_FS
|
|
|
Participant's Age at T1 Freesurfer Visit |
Years |
Number |
Note: In NIAGADS this is a character variable since any PHC_Age equal to or above 90 was changed to "90+". |
|
|
Clinical & Demographic |
Demographics |
PHC_Age_T1_MUSE
|
|
|
Participant's Age at T1 MUSE Visit |
Years |
Number |
Note: In NIAGADS this is a character variable since any PHC_Age equal to or above 90 was changed to "90+". |
|
|
Clinical & Demographic |
Demographics |
PHC_Age_DTI
|
|
|
Participant's Age at DTI Visit |
Years |
Number |
Note: In NIAGADS this is a character variable since any PHC_Age equal to or above 90 was changed to "90+". |
|
|
Clinical & Demographic |
Demographics |
PHC_AgeDeath
|
|
|
Participant's Age at Death |
Years |
Number |
Note: In NIAGADS this is a character variable since any PHC_Age equal to or above 90 was changed to "90+". |
|
|
Clinical & Demographic |
Demographics |
FollowUp_Time
|
|
|
Follow up time from first cognitive visit. |
Years |
Number |
|
|
|
Clinical & Demographic |
Demographics |
Sex
|
|
|
Participant's Sex |
|
String |
|
|
Level |
Label |
1 |
Male |
2 |
Female |
|
Clinical & Demographic |
Demographics |
Race
|
|
|
Participant's Race |
|
String |
|
|
Level |
Label |
1 |
American Indian or Alaska Native |
2 |
Asian |
3 |
Black or African American |
4 |
Native Hawaiian or Other Pacific Islander |
5 |
White |
6 |
Multiple/Other/Unknown |
|
Clinical & Demographic |
Demographics |
Ethnicity
|
|
|
Participant's Ethnicity |
|
String |
|
|
Level |
Label |
1 |
Hispanic or Latino |
2 |
Not Hispanic or Latino |
|
Clinical & Demographic |
Demographics |
Education
|
|
|
Participant's Education |
Years |
Integer |
|
|
|
Clinical & Demographic |
Clinical |
Diagnosis
|
|
|
Status of Alzheimer's Diagnosis |
|
String |
|
|
Level |
Label |
1 |
No Cognitive Impairment |
2 |
Mild Cognitive Impairment |
3 |
Alzheimer's Dementia |
|
Clinical & Demographic |
Clinical |
ADSP_CaseControl
|
|
|
Status of ADSP's Alzheimer's Diagnosis |
|
String |
|
|
Level |
Label |
0 |
Case |
1 |
Control |
|
Cognition |
Memory |
mmarea_A4
|
Memory Anchor |
A4 |
MMSE What county (district, borough, area) are we in? |
|
String |
|
|
|
Cognition |
Memory |
mmday_A4
|
Memory Anchor |
A4 |
MMSE What day of the week is today? |
|
String |
|
|
|
Cognition |
Memory |
mmfloor_A4
|
Memory Anchor |
A4 |
MMSE What floor are we on? |
|
String |
|
|
|
Cognition |
Memory |
mmhospit_A4
|
Memory Anchor |
A4 |
MMSE What is the name of this hospital (clinic, place)? |
|
String |
|
|
|
Cognition |
Memory |
mmseason_A4
|
Memory Anchor |
A4 |
MMSE What season is it? |
|
String |
|
|
|
Cognition |
Memory |
mmball
|
Memory Anchor |
A4 |
MMSE repeat ball |
|
String |
|
|
|
Cognition |
Memory |
mmflag
|
Memory Anchor |
A4 |
MMSE repeat flag |
|
String |
|
|
|
Cognition |
Memory |
mmtree
|
Memory Anchor |
A4 |
MMSE repeat tree |
|
String |
|
|
|
Cognition |
Memory |
mmballdl
|
Memory Anchor |
A4 |
MMSE recall ball |
|
String |
|
|
|
Cognition |
Memory |
mmflagdl
|
Memory Anchor |
A4 |
MMSE recall flag |
|
String |
|
|
|
Cognition |
Memory |
mmtreedl
|
Memory Anchor |
A4 |
MMSE recall tree |
|
String |
|
|
|
Cognition |
Memory |
fcfreet1
|
|
A4 |
Free and cued selective reminding test trial 1 free recall. |
|
Integer |
Item was multiplied by 2 and summed with fccuedt1 to get the variable used in the model. |
|
|
Cognition |
Memory |
fccuedt1
|
|
A4 |
Free and cued selective reminding test trial 1 cued recall. |
|
Integer |
Item was summed with 2 x fcfreet1 to get the variable used in the model. |
|
|
Cognition |
Memory |
fcfreet2
|
|
A4 |
Free and cued selective reminding test trial 2 free recall. |
|
Integer |
Item was multiplied by 2 and summed with fccuedt2 to get the variable used in the model. |
|
|
Cognition |
Memory |
fccuedt2
|
|
A4 |
Free and cued selective reminding test trial 2 cued recall. |
|
Integer |
Item was summed with 2 x fcfreet2 to get the variable used in the model. |
|
|
Cognition |
Memory |
fcfreet3
|
|
A4 |
Free and cued selective reminding test trial 3 free recall. |
|
Integer |
Item was multiplied by 2 and summed with fccuedt3 to get the variable used in the model. |
|
|
Cognition |
Memory |
fccuedt3
|
|
A4 |
Free and cued selective reminding test trial 3 cued recall. |
|
Integer |
Item was summed with 2 x fcfreet3 to get the variable used in the model. |
|
|
Cognition |
Memory |
ldeltotal_A4
|
Memory Anchor |
A4 |
WMS-R Logical Memory immediate recall. |
|
Integer |
PARTIAL ANCHOR: Includes scores for all 4 versions of logical memory that were adminsitered but split into different variables using lmstory. The Anna Thompson Story is the anchor variable, the Robert Miller Story is a non-anchor. |
|
|
Cognition |
Memory |
limmtotal_A4
|
Memory Anchor |
A4 |
WMS-R Logical Memory delayed recall. |
|
Integer |
PARTIAL ANCHOR: Includes scores for all 4 versions of logical memory that were adminsitered but split into different variables using lmstory. The Anna Thompson Story is the anchor variable, the Robert Miller Story is a non-anchor. |
|
|
Cognition |
Memory |
mmcity_A4
|
Memory Anchor |
A4 |
MMSE What city are we in? |
|
String |
|
|
|
Cognition |
Memory |
mmstate_A4
|
Memory Anchor |
A4 |
MMSE What state are we in? |
|
String |
|
|
|
Cognition |
Memory |
mmdate_A4
|
Memory Anchor |
A4 |
MMSE What is today's date? |
|
String |
|
|
|
Cognition |
Memory |
mmmonth_A4
|
Memory Anchor |
A4 |
MMSE What is the month? |
|
String |
|
|
|
Cognition |
Memory |
mmyear_A4
|
Memory Anchor |
A4 |
MMSE What is the year? |
|
String |
|
|
|
Cognition |
Memory |
mat_mem
|
|
ACT |
DRS: Mattis Dementia Rating Scale Memory score |
|
Integer |
|
|
|
Cognition |
Memory |
w_in_c1
|
|
ACT |
CERAD: Word list learning trial 1 total score |
|
Integer |
|
|
|
Cognition |
Memory |
w_in_c2
|
|
ACT |
CERAD: Word list learning trial 2 total score |
|
Integer |
|
|
|
Cognition |
Memory |
w_in_c3
|
|
ACT |
CERAD: Word list learning trial 3 total score |
|
Integer |
|
|
|
Cognition |
Memory |
w_rcl_c
|
|
ACT |
CERAD: Word List Recall-correct |
|
Integer |
|
|
|
Cognition |
Memory |
w_rcg_t
|
|
ACT |
CERAD: Word Recognition-total correct |
|
Integer |
|
|
|
Cognition |
Memory |
cp_re_ci
|
|
ACT |
CERAD: Constructional Praxis Delay-circle |
|
Integer |
|
|
|
Cognition |
Memory |
cp_re_di
|
|
ACT |
CERAD: Constructional Praxis Delay-diamond |
|
Integer |
|
|
|
Cognition |
Memory |
cp_re_re
|
|
ACT |
CERAD: Constructional Praxis Delay-rectangles |
|
Integer |
|
|
|
Cognition |
Memory |
cp_re_cu
|
|
ACT |
CERAD: Constructional Praxis Delay-cube |
|
Integer |
|
|
|
Cognition |
Memory |
w_lm_ima
|
Memory Anchor |
ACT |
WMS-R:Logical Mem I-immediate recall total story (AT*) |
|
Integer |
|
|
|
Cognition |
Memory |
w_lm_imb
|
|
ACT |
WMS-R:Logical Mem I-immediate recall total story (RM*) |
|
Integer |
|
|
|
Cognition |
Memory |
w_lm_dea
|
Memory Anchor |
ACT |
WMS-R:Logical Mem II-delayed recall total story (AT) |
|
Integer |
|
|
|
Cognition |
Memory |
w_lm_deb
|
|
ACT |
WMS-R:Logical Mem II-delayed recall total story (RM) |
|
Integer |
|
|
|
Cognition |
Memory |
w_vp_ine
|
|
ACT |
WMS-R:Verbal Paired Associates I easy |
|
Integer |
|
|
|
Cognition |
Memory |
w_vp_inh
|
|
ACT |
WMS-R:Verbal Paired Associates I hard |
|
Integer |
|
|
|
Cognition |
Memory |
w_vp_ree
|
|
ACT |
WMS-R:Verbal Paired Associates II easy |
|
Integer |
|
|
|
Cognition |
Memory |
w_vp_reh
|
|
ACT |
WMS-R:Verbal Paired Associates II hard |
|
Integer |
|
|
|
Cognition |
Memory |
rgs1
|
|
ACT |
CASI: repeat words |
|
Integer |
|
|
|
Cognition |
Memory |
rc1a
|
|
ACT |
CASI: Word recall-something to wear - 1 |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct (multiple choice cue) |
2 |
Correct (category cue) |
3 |
Correct (no cue) |
|
Cognition |
Memory |
rc1b
|
|
ACT |
CASI: Word recall-a color - 1 |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct (multiple choice cue) |
2 |
Correct (category cue) |
3 |
Correct (no cue) |
|
Cognition |
Memory |
rc1c
|
|
ACT |
CASI: Word recall-personal quality - 1 |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct (multiple choice cue) |
2 |
Correct (category cue) |
3 |
Correct (no cue) |
|
Cognition |
Memory |
yr
|
Memory Anchor |
ACT |
CASI: What is today's date?-year |
|
String |
|
|
Level |
Label |
0 |
Missed by 6 or more years |
1 |
Missed by 2-5 years |
2 |
Missed by 1 year |
4 |
Correct |
|
Cognition |
Memory |
mo
|
Memory Anchor |
ACT |
CASI: What is today's date?-month |
|
String |
|
|
Level |
Label |
0 |
Missed by 2 or more months |
1 |
Missed by 1 month |
2 |
Correct |
|
Cognition |
Memory |
casi_dat
|
Memory Anchor |
ACT |
CASI: What is today's date?-day |
|
String |
|
|
Level |
Label |
0 |
Missed by 6 or more days |
1 |
Missed by 3-5 days |
2 |
Missed by 1 or 2 days |
3 |
Correct |
|
Cognition |
Memory |
day
|
Memory Anchor |
ACT |
CASI: What day of week? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
casi_ssn
|
Memory Anchor |
ACT |
CASI: What season is it? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
spa
|
Memory Anchor |
ACT |
CASI: What state and city? |
|
String |
|
|
Level |
Label |
0 |
City and State Incorrect |
2 |
City or State Correct |
4 |
City and State Correct |
|
Cognition |
Memory |
spb
|
|
ACT |
CASI: What is this place? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
rc2a
|
|
ACT |
CASI: Word recall-something to wear - 2 |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct (multiple choice cue) |
2 |
Correct (category cue) |
3 |
Correct (no cue) |
|
Cognition |
Memory |
rc2b
|
|
ACT |
CASI: Word recall-a color - 2 |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct (multiple choice cue) |
2 |
Correct (category cue) |
3 |
Correct (no cue) |
|
Cognition |
Memory |
rc2c
|
|
ACT |
CASI: Word recall-personal quality - 2 |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct (multiple choice cue) |
2 |
Correct (category cue) |
3 |
Correct (no cue) |
|
Cognition |
Memory |
rcobj
|
|
ACT |
CASI: Recall of 5 objects |
|
Integer |
|
|
|
Cognition |
Memory |
limmtotal_ADNI
|
Memory Anchor |
ADNI |
WMS-R: Logical Memory-Immediate Recall (AT) |
|
Integer |
|
|
|
Cognition |
Memory |
ldeltotal_ADNI
|
Memory Anchor |
ADNI |
WMS-R: Logical Memory-Delayed Recall (AT) |
|
Integer |
|
|
|
Cognition |
Memory |
avtot1
|
|
ADNI |
Rey: AVLT Trial 1 Total |
|
Integer |
|
|
|
Cognition |
Memory |
avtot2
|
|
ADNI |
Rey: AVLT Trial 2 Total |
|
Integer |
|
|
|
Cognition |
Memory |
avtot3
|
|
ADNI |
Rey: AVLT Trial 3 Total |
|
Integer |
|
|
|
Cognition |
Memory |
avtot4
|
|
ADNI |
Rey: AVLT Trial 4 Total |
|
Integer |
|
|
|
Cognition |
Memory |
avtot5
|
|
ADNI |
Rey: AVLT Trial 5 Total |
|
Integer |
|
|
|
Cognition |
Memory |
avtot6
|
|
ADNI |
Rey: AVLT Trial 6 Total |
|
Integer |
|
|
|
Cognition |
Memory |
avtotb
|
|
ADNI |
Rey: AVLT List B Total |
|
Integer |
|
|
|
Cognition |
Memory |
avdel30min
|
|
ADNI |
Rey: AVLT 30 Minute Delay Total |
|
Integer |
|
|
|
Cognition |
Memory |
avdeltot
|
|
ADNI |
Rey: AVLT Recognition Score |
|
Integer |
|
|
|
Cognition |
Memory |
mmword1
|
|
ADNI |
MMSE: ball-immediate recall |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmword2
|
|
ADNI |
MMSE: flag-immediate recall |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmword3
|
|
ADNI |
MMSE: tree-immediate recall |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmword1dl
|
|
ADNI |
MMSE: ball-delayed recall |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmword2dl
|
|
ADNI |
MMSE: flag-delayed recall |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmword3dl
|
|
ADNI |
MMSE: tree-delayed recall |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmdate_ADNI
|
Memory Anchor |
ADNI |
MMSE: What is today's date? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmyear_ADNI
|
Memory Anchor |
ADNI |
MMSE: What is the year? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmmonth_ADNI
|
Memory Anchor |
ADNI |
MMSE: What is the month? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmday_ADNI
|
Memory Anchor |
ADNI |
MMSE: What day of the week is today? |
|
String |
|
|
|
Cognition |
Memory |
mmseason_ADNI
|
Memory Anchor |
ADNI |
MMSE: What season is it? |
|
String |
|
|
|
Cognition |
Memory |
mmhospit_ADNI
|
Memory Anchor |
ADNI |
MMSE: What is the name of this hospital (clinic, place)? |
|
String |
|
|
|
Cognition |
Memory |
mmfloor_ADNI
|
Memory Anchor |
ADNI |
MMSE: What floor are we on? |
|
String |
|
|
|
Cognition |
Memory |
mmcity_ADNI
|
Memory Anchor |
ADNI |
MMSE: What town or city are we in? |
|
String |
|
|
|
Cognition |
Memory |
mmarea_ADNI
|
Memory Anchor |
ADNI |
MMSE: What County (district, borough, area) are we in? |
|
String |
|
|
|
Cognition |
Memory |
mmstate_ADNI
|
Memory Anchor |
ADNI |
MMSE: What state are we in? |
|
String |
|
|
|
Cognition |
Memory |
q4score
|
|
ADNI |
ADAS-Cog: Delayed Word Recall |
|
Integer |
|
|
|
Cognition |
Memory |
q7score
|
|
ADNI |
ADAS-Cog: Orientation-score |
|
Integer |
|
|
|
Cognition |
Memory |
q8score
|
|
ADNI |
ADAS-Cog: Word Recognition-score |
|
Integer |
|
|
|
Cognition |
Memory |
cot1scor
|
|
ADNI |
ADAS-Cog: Word Recall-score - Trial 1 |
|
Integer |
|
|
|
Cognition |
Memory |
cot2scor
|
|
ADNI |
ADAS-Cog: Word Recall-score - Trial 2 |
|
Integer |
|
|
|
Cognition |
Memory |
cot3scor
|
|
ADNI |
ADAS-Cog: Word Recall-score - Trial 3 |
|
Integer |
|
|
|
Cognition |
Memory |
immt1w1
|
Memory Anchor |
ADNI |
Immediate (#1): Face |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
immt1w2
|
Memory Anchor |
ADNI |
Immediate (#1): Velvet |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
immt1w3
|
Memory Anchor |
ADNI |
Immediate (#1): Church |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
immt1w4
|
Memory Anchor |
ADNI |
Immediate (#1): Daisy |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
immt1w5
|
Memory Anchor |
ADNI |
Immediate (#1): Red |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
immt2w1
|
Memory Anchor |
ADNI |
Immediate (#2): Face |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
immt2w2
|
Memory Anchor |
ADNI |
Immediate (#2): Velvet |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
immt2w3
|
Memory Anchor |
ADNI |
Immediate (#2): Church |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
immt2w4
|
Memory Anchor |
ADNI |
Immediate (#2): Daisy |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
immt2w5
|
Memory Anchor |
ADNI |
Immediate (#2): Red |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
delw1
|
Memory Anchor |
ADNI |
Delayed: Face |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct (no cue) |
2 |
Correct (category cue) |
3 |
Correct (multiple choice cue) |
|
Cognition |
Memory |
delw2
|
Memory Anchor |
ADNI |
Delayed: Velvet |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct (no cue) |
2 |
Correct (category cue) |
3 |
Correct (multiple choice cue) |
|
Cognition |
Memory |
delw3
|
Memory Anchor |
ADNI |
Delayed: Church |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct (no cue) |
2 |
Correct (category cue) |
3 |
Correct (multiple choice cue) |
|
Cognition |
Memory |
delw4
|
Memory Anchor |
ADNI |
Delayed: Daisy |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct (no cue) |
2 |
Correct (category cue) |
3 |
Correct (multiple choice cue) |
|
Cognition |
Memory |
delw5
|
Memory Anchor |
ADNI |
Delayed: Red |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct (no cue) |
2 |
Correct (category cue) |
3 |
Correct (multiple choice cue) |
|
Cognition |
Memory |
m1totalrecall
|
Memory Anchor |
EFIGA |
SRT: total of immediate recall trails 1-6 |
|
Integer |
|
|
|
Cognition |
Memory |
m3delayedrecall
|
Memory Anchor |
EFIGA |
SRT: delayed recall trial |
|
Integer |
|
|
|
Cognition |
Memory |
m4delayedrecognition
|
Memory Anchor |
EFIGA |
SRT: recognition |
|
Integer |
|
|
|
Cognition |
Memory |
m12bentonrecognition
|
Memory Anchor |
EFIGA |
BVRT: recognition |
|
Integer |
|
|
|
Cognition |
Memory |
htablehwhattime
|
Memory Anchor |
EFIGA |
SBT: what time is it? |
|
String |
|
|
Level |
Label |
0 |
No Errors |
1 |
Error |
|
Cognition |
Memory |
htablehrepeatname
|
Memory Anchor |
EFIGA |
SBT: recall address - number of errors |
|
Integer |
|
|
|
Cognition |
Memory |
nsorientation
|
Memory Anchor |
EFIGA |
MMSE: orientation composite |
|
Integer |
|
|
|
Cognition |
Memory |
j4_1st
|
Memory Anchor |
KBASE |
CERAD: Word List - Trial 1 |
|
Integer |
|
|
|
Cognition |
Memory |
j4_2nd
|
Memory Anchor |
KBASE |
CERAD: Word List - Trial 2 |
|
Integer |
|
|
|
Cognition |
Memory |
j4_3rd
|
Memory Anchor |
KBASE |
CERAD: Word List - Trial 3 |
|
Integer |
|
|
|
Cognition |
Memory |
j6
|
Memory Anchor |
KBASE |
CERAD: Word List - delayed recall |
|
Integer |
|
|
|
Cognition |
Memory |
j7
|
|
KBASE |
CERAD: Word list - recognition |
|
Integer |
|
|
|
Cognition |
Memory |
j8
|
Memory Anchor |
KBASE |
CERAD: Constructional Praxis - delayed recall |
|
Integer |
|
|
|
Cognition |
Memory |
l3_rcft_3min
|
Memory Anchor |
KBASE |
Rey Complex Figure Test - 3 min delayed recall |
|
Number |
|
|
|
Cognition |
Memory |
l8_rcft_30min
|
Memory Anchor |
KBASE |
Rey Complex Figure Test - 30 min delayed recall |
|
Number |
|
|
|
Cognition |
Memory |
l4_a
|
|
KBASE |
WMS-IV: K logical memory, immediate story A |
|
Integer |
|
|
|
Cognition |
Memory |
l4_b
|
|
KBASE |
WMS-IV: K logical memory, immediate story B |
|
Integer |
|
|
|
Cognition |
Memory |
l10_a
|
|
KBASE |
WMS-IV: K logical memory, delayed story A |
|
Integer |
|
|
|
Cognition |
Memory |
l10_b
|
|
KBASE |
WMS-IV: K logical memory, delayed story B |
|
Integer |
|
|
|
Cognition |
Memory |
l10_recog
|
|
KBASE |
WMS-IV: K logical memory, recognition |
|
Integer |
|
|
|
Cognition |
Memory |
srt1f
|
|
Knight ADRC |
Free and cued selective reminding test, trial 1 |
|
Integer |
|
|
|
Cognition |
Memory |
srt2f
|
|
Knight ADRC |
Free and cued selective reminding test, trial 2 |
|
Integer |
|
|
|
Cognition |
Memory |
srt3f
|
|
Knight ADRC |
Free and cued selective reminding test, trial 3 |
|
Integer |
|
|
|
Cognition |
Memory |
psy010
|
|
Knight ADRC |
WMS: Associate learning recall, easy |
|
Integer |
|
|
|
Cognition |
Memory |
psy011
|
|
Knight ADRC |
WMS: Associate learning recall, hard |
|
Integer |
|
|
|
Cognition |
Memory |
psy004
|
|
Knight ADRC |
WMS (original): logical memory, immediate recall |
|
Number |
|
|
|
Cognition |
Memory |
psy251
|
|
Knight ADRC |
WMS (original): logical memory, delayed recall |
|
Number |
|
|
|
Cognition |
Memory |
psy023
|
|
Knight ADRC |
Benton visual retention test, recognition |
|
Integer |
|
|
|
Cognition |
Memory |
psy013
|
|
Knight ADRC |
WMS: Associate learning recognition, easy |
|
Integer |
|
|
|
Cognition |
Memory |
psy014
|
|
Knight ADRC |
WMS: Associate learning recognition, hard |
|
Integer |
|
|
|
Cognition |
Memory |
craftvrs_KnightADRC
|
Memory Anchor |
Knight ADRC |
Craft story 21, immediate recall |
|
Integer |
|
|
|
Cognition |
Memory |
craftdvr_KnightADRC
|
Memory Anchor |
Knight ADRC |
Craft story 21, delayed recall |
|
Integer |
|
|
|
Cognition |
Memory |
udsbentd_KnightADRC
|
Memory Anchor |
Knight ADRC |
Benson complex figure, delayed |
|
Integer |
|
|
|
Cognition |
Memory |
udsbenrs_KnightADRC
|
Memory Anchor |
Knight ADRC |
Benson complex figure, recognition |
|
String |
|
|
Level |
Label |
0 |
Yes, recognized |
1 |
No, not recognized |
|
Cognition |
Memory |
logimem_KnightADRC
|
Memory Anchor |
Knight ADRC |
WMS-R: logical memory, immediate recall |
|
Integer |
|
|
|
Cognition |
Memory |
memunits_KnightADRC
|
Memory Anchor |
Knight ADRC |
WMS-R: logical memory, delayed recall |
|
Integer |
|
|
|
Cognition |
Memory |
ksbt3
|
|
Knight ADRC |
What time is it? |
|
String |
|
|
|
Cognition |
Memory |
ksbt6
|
|
Knight ADRC |
Repeat back John Brown memory phase |
|
Integer |
|
|
|
Cognition |
Memory |
msq07
|
|
Knight ADRC |
Who is the current president? |
|
String |
|
|
|
Cognition |
Memory |
msq08
|
|
Knight ADRC |
Who was the previous president? |
|
String |
|
|
|
Cognition |
Memory |
month_mmse
|
Memory Anchor |
Knight ADRC |
MMSE: What month is it? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
year_mmse
|
Memory Anchor |
Knight ADRC |
MMSE: What year is it? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
city_mmse
|
Memory Anchor |
Knight ADRC |
MMSE: What city are we in? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
loca
|
Memory Anchor |
Knight ADRC |
MMSE: What state are we in? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
seas
|
Memory Anchor |
Knight ADRC |
MMSE: What season is it? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
date_mmse
|
Memory Anchor |
Knight ADRC |
MMSE: What is the date? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
day_mmse
|
Memory Anchor |
Knight ADRC |
MMSE: What day is it? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
leve
|
Memory Anchor |
Knight ADRC |
MMSE: What floor are we on? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
place_mmse
|
Memory Anchor |
Knight ADRC |
MMSE: What place is this? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmsetr1
|
Memory Anchor |
Knight ADRC |
MMSE: Repeat ball, flag, tree - combined |
|
Integer |
|
|
|
Cognition |
Memory |
ball
|
Memory Anchor |
Knight ADRC |
MMSE: Repeat ball, flag, tree - ball |
|
String |
|
|
|
Cognition |
Memory |
flag
|
Memory Anchor |
Knight ADRC |
MMSE: Repeat ball, flag, tree - flag |
|
String |
|
|
|
Cognition |
Memory |
tree
|
Memory Anchor |
Knight ADRC |
MMSE: Repeat ball, flag, tree - tree |
|
String |
|
|
|
Cognition |
Memory |
ball2
|
Memory Anchor |
Knight ADRC |
MMSE: Recall ball, flag, tree - ball |
|
String |
|
|
|
Cognition |
Memory |
flag2
|
Memory Anchor |
Knight ADRC |
MMSE: Recall ball, flag, tree - flag |
|
String |
|
|
|
Cognition |
Memory |
tree2
|
Memory Anchor |
Knight ADRC |
MMSE: Recall ball, flag, tree - tree |
|
String |
|
|
|
Cognition |
Memory |
mmseorda
|
Memory Anchor |
NACC |
MMSE Orientation subscale score - time |
|
Integer |
|
|
|
Cognition |
Memory |
mmseorlo
|
Memory Anchor |
NACC |
MMSE Orientation subscale score - place |
|
Integer |
|
|
|
Cognition |
Memory |
mocaordt
|
Memory Anchor |
NACC |
MoCA orientation - date |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mocaordy
|
Memory Anchor |
NACC |
MoCA orientation - day |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mocaormo
|
Memory Anchor |
NACC |
MoCA orientation - month |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mocaoryr
|
Memory Anchor |
NACC |
MoCA orientation - year |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mocaorct
|
Memory Anchor |
NACC |
MoCA orientation - city |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mocaorpl
|
Memory Anchor |
NACC |
MoCA orientation - place |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mocarecn
|
Memory Anchor |
NACC |
MoCA delayed recall - no cue |
|
Integer |
|
|
|
Cognition |
Memory |
logimem_NACC
|
Memory Anchor |
NACC |
Logical Memory Immediate A: Story units recalled (Story A) |
|
Integer |
|
|
|
Cognition |
Memory |
memunits_NACC
|
Memory Anchor |
NACC |
Logical Memory Delayed A: Story units recalled (Story A) |
|
Integer |
|
|
|
Cognition |
Memory |
mocaregi
|
Memory Anchor |
NACC |
MoCA memory: registration (2 trials) |
|
Integer |
|
|
|
Cognition |
Memory |
craftdvr_NACC
|
|
NACC |
Craft story 21 recall (delayed): paraphrase |
|
Integer |
|
|
|
Cognition |
Memory |
craftvrs_NACC
|
|
NACC |
Craft story 21 recall (delayed): verbatim |
|
Integer |
|
|
|
Cognition |
Memory |
udsbentd_NACC
|
|
NACC |
Benson complex figure copy, delayed |
|
Integer |
|
|
|
Cognition |
Memory |
udsbenrs_NACC
|
|
NACC |
Benson complex figure recognition |
|
String |
|
|
|
Cognition |
Memory |
story
|
Memory Anchor |
NIA-AD FBS |
logical memory IA -- story score (Anna Thompson) |
|
Integer |
|
|
|
Cognition |
Memory |
delay
|
Memory Anchor |
NIA-AD FBS |
logical memory IIA -- story score (story recall) |
|
Integer |
|
|
|
Cognition |
Memory |
mmse30_item1
|
Memory Anchor |
ROS, MAP - Rush, MARS |
MMSE: What is the year? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmse30_item2
|
Memory Anchor |
ROS, MAP - Rush, MARS |
MMSE: What is the season of the year? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmse30_item3
|
Memory Anchor |
ROS, MAP - Rush, MARS |
MMSE: What is the date? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmse30_item4
|
Memory Anchor |
ROS, MAP - Rush, MARS |
MMSE: What is the day of the week? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmse30_item5
|
Memory Anchor |
ROS, MAP - Rush, MARS |
MMSE: What is the month? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmse30_item6
|
Memory Anchor |
ROS, MAP - Rush, MARS |
MMSE: What state are we in? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmse30_item7
|
Memory Anchor |
ROS, MAP - Rush, MARS |
MMSE: What County are we in? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmse30_item8
|
Memory Anchor |
ROS, MAP - Rush, MARS |
MMSE: What city are we in? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmse30_item9
|
Memory Anchor |
ROS, MAP - Rush, MARS |
MMSE: What room are we in? |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmse30_item10
|
Memory Anchor |
ROS, MAP - Rush, MARS |
What is the address of this place? Street number and name? |
|
String |
Previously separated into 10a (Street Number) and 10b (Street Name) |
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmse30_item11
|
|
ROS, MAP - Rush, MARS |
MMSE: apple (immediate recall) |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmse30_item12
|
|
ROS, MAP - Rush, MARS |
MMSE: table (immediate recall) |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmse30_item13
|
|
ROS, MAP - Rush, MARS |
MMSE: penny (immediate recall) |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmse30_item14
|
|
ROS, MAP - Rush, MARS |
MMSE: apple (delayed recall) |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmse30_item15
|
|
ROS, MAP - Rush, MARS |
MMSE: table (delayed recall) |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
mmse30_item16
|
|
ROS, MAP - Rush, MARS |
MMSE: penny (delayed recall) |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Memory |
cts_wliii
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list recognition |
|
Integer |
|
|
|
Cognition |
Memory |
cts_wlii
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list recall |
|
Integer |
|
|
|
Cognition |
Memory |
cts_ebmt
|
|
ROS, MAP - Rush, MARS |
East Boston Memory Test-immediate recall |
|
Integer |
|
|
|
Cognition |
Memory |
cts_ebdr
|
|
ROS, MAP - Rush, MARS |
East Boston Memory Test-delayed recall |
|
Integer |
|
|
|
Cognition |
Memory |
cts_story
|
Memory Anchor |
ROS, MAP - Rush, MARS |
WMS-R: Logical memory (AT) |
|
Integer |
|
|
|
Cognition |
Memory |
cts_delay
|
Memory Anchor |
ROS, MAP - Rush, MARS |
WMS-R: Tell me the story again (AT) |
|
Integer |
|
|
|
Cognition |
Memory |
wli_item1
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 1 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item2
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 1 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item3
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 1 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item4
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 1 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item5
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 1 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item6
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 1 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item7
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 1 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item8
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 1 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item9
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 1 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item10
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 1 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item11
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 2 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item12
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 2 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item13
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 2 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item14
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 2 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item15
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 2 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item16
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 2 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item17
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 2 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item18
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 2 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item19
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 2 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item20
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 2 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item21
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 3 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item22
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 3 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item23
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 3 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item24
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 3 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item25
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 3 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item26
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 3 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item27
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 3 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item28
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 3 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item29
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 3 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
wli_item30
|
|
ROS, MAP - Rush, MARS |
CERAD: Word list learning Trial 3 (10 items collapsed) |
|
String |
|
|
|
Cognition |
Memory |
c1_cerad_ll_1
|
Memory Anchor |
TARCC |
CERAD: Word list memory - Trial 1 |
|
Integer |
|
|
|
Cognition |
Memory |
c1_cerad_ll_2
|
Memory Anchor |
TARCC |
CERAD: Word list memory - Trial 2 |
|
Integer |
|
|
|
Cognition |
Memory |
c1_cerad_ll_3
|
Memory Anchor |
TARCC |
CERAD: Word list memory - Trial 3 |
|
Integer |
|
|
|
Cognition |
Memory |
c1_cerad_ll_delay
|
Memory Anchor |
TARCC |
CERAD: Word list memory - delayed recall |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wms3_story1a
|
Memory Anchor |
TARCC |
Logical memory WMS-3 - Anna Thompson immediate recall |
|
Integer |
WMS-3 and WMS-R versions of the story are identical |
|
|
Cognition |
Memory |
c1_wms3_story2a
|
Memory Anchor |
TARCC |
Logical memory WMS-3 - Anna Thompson delayed recall |
|
Integer |
WMS-3 and WMS-R versions of the story are identical |
|
|
Cognition |
Memory |
c1_wmsr_lmem1
|
Memory Anchor |
TARCC |
Aggregate of WMS-R logical memory - immediate recall items, AT and RM |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wmsr_lmem2
|
Memory Anchor |
TARCC |
Aggregate of WMS-R logical memory -delayed recall items, AT and RM |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wmsr_story1a
|
Memory Anchor |
TARCC |
Logical memory WMS-R - Anna Thompson immediate recall |
|
Integer |
WMS-3 and WMS-R versions of the story are identical |
|
|
Cognition |
Memory |
c1_wmsr_story1b1
|
Memory Anchor |
TARCC |
Logical memory WMS-R - Robert Miller immediate recall |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wmsr_story2a
|
Memory Anchor |
TARCC |
Logical memory WMS-R - Annna Thompson delayed recall |
|
Integer |
WMS-3 and WMS-R versions of the story are identical |
|
|
Cognition |
Memory |
c1_wmsr_story2b
|
Memory Anchor |
TARCC |
Logical memory WMS-R - Robert Miller delayed recall |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wms3_vr_a
|
|
TARCC |
WMS-3: Visual Reproduction 1, Figure A |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wms3_vr_b
|
|
TARCC |
WMS-3: Visual Reproduction 1, Figure B |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wms3_vr_c
|
|
TARCC |
WMS-3: Visual Reproduction 1, Figure C |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wms3_vr_d
|
|
TARCC |
WMS-3: Visual Reproduction 1, Figure D |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wms3_vr_e
|
|
TARCC |
WMS-3: Visual Reproduction 1, Figure E |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wms3_vr2_a
|
|
TARCC |
WMS-3: Visual Reproduction 2, Figure A |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wms3_vr2_b
|
|
TARCC |
WMS-3: Visual Reproduction 2, Figure B |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wms3_vr2_c
|
|
TARCC |
WMS-3: Visual Reproduction 2, Figure C |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wms3_vr2_d
|
|
TARCC |
WMS-3: Visual Reproduction 2, Figure D |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wms3_vr2_e
|
|
TARCC |
WMS-3: Visual Reproduction 2, Figure E |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wmsr_vr_a
|
|
TARCC |
WMS-R: Visual Reproduction 1, Figure A |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wmsr_vr_b
|
|
TARCC |
WMS-R: Visual Reproduction 1, Figure B |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wmsr_vr_c
|
|
TARCC |
WMS-R: Visual Reproduction 1, Figure C |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wmsr_vr_d
|
|
TARCC |
WMS-R: Visual Reproduction 1, Figure D |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wmsr_vr2_a
|
|
TARCC |
WMS-R: Visual Reproduction 2, Figure A |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wmsr_vr2_b
|
|
TARCC |
WMS-R: Visual Reproduction 2, Figure B |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wmsr_vr2_c
|
|
TARCC |
WMS-R: Visual Reproduction 2, Figure C |
|
Integer |
|
|
|
Cognition |
Memory |
c1_wmsr_vr2_d
|
|
TARCC |
WMS-R: Visual Reproduction 2, Figure D |
|
Integer |
|
|
|
Cognition |
Memory |
orient
|
Memory Anchor |
WHICAP |
MMSE: orientation composite |
|
Integer |
|
|
|
Cognition |
Memory |
h29_rp
|
Memory Anchor |
WHICAP |
SBT: what time is it? |
|
String |
h29_rp and h29_n: _rp is the research psysician short blessed (neuropsychological), _n is the neurological exam. These two items were combined, where _rp was the ideal item and _n was used when _rp was not available |
|
Level |
Label |
0 |
No Errors |
1 |
Error |
|
Cognition |
Memory |
h29_n
|
Memory Anchor |
WHICAP |
SBT: what time is it? |
|
String |
h29_rp and h29_n: _rp is the research psysician short blessed (neuropsychological), _n is the neurological exam. These two items were combined, where _rp was the ideal item and _n was used when _rp was not available |
|
Level |
Label |
0 |
No Errors |
1 |
Error |
|
Cognition |
Memory |
h32_rp
|
Memory Anchor |
WHICAP |
SBT: John Brown address - number of errors |
|
Integer |
h32_rp and h32_n: _rp is the research psysician short blessed (neuropsychological), _n is the neurological exam. These two items were combined, where _rp was the ideal item and _n was used when _rp was not available |
|
|
Cognition |
Memory |
h32_n
|
Memory Anchor |
WHICAP |
SBT: John Brown address - number of errors |
|
Integer |
h32_rp and h32_n: _rp is the research psysician short blessed (neuropsychological), _n is the neurological exam. These two items were combined, where _rp was the ideal item and _n was used when _rp was not available |
|
|
Cognition |
Memory |
mem01
|
|
WHICAP |
SRT: immediate recall trials |
|
Integer |
|
|
|
Cognition |
Memory |
mem03
|
|
WHICAP |
SRT: delayed recall |
|
Integer |
|
|
|
Cognition |
Memory |
mem04
|
|
WHICAP |
SRT: recognition |
|
Integer |
|
|
|
Cognition |
Memory |
mem11
|
|
WHICAP |
BVRT: recognition |
|
Integer |
|
|
|
Cognition |
Memory |
t1raw
|
Memory Anchor |
WRAP |
AVLT Trial 1 |
|
Integer |
|
|
|
Cognition |
Memory |
t2raw
|
Memory Anchor |
WRAP |
AVLT Trial 2 |
|
Integer |
|
|
|
Cognition |
Memory |
t3raw
|
Memory Anchor |
WRAP |
AVLT Trial 3 |
|
Integer |
|
|
|
Cognition |
Memory |
t4raw
|
Memory Anchor |
WRAP |
AVLT Trial 4 |
|
Integer |
|
|
|
Cognition |
Memory |
t5raw
|
Memory Anchor |
WRAP |
AVLT Trial 5 |
|
Integer |
|
|
|
Cognition |
Memory |
t6raw
|
Memory Anchor |
WRAP |
AVLT Trial 6 |
|
Integer |
|
|
|
Cognition |
Memory |
lbraw
|
Memory Anchor |
WRAP |
AVLT List B Raw |
|
Integer |
|
|
|
Cognition |
Memory |
drraw
|
Memory Anchor |
WRAP |
AVLT Delayed Recall Raw |
|
Integer |
|
|
|
Cognition |
Memory |
recraw
|
Memory Anchor |
WRAP |
AVLT Recognition raw |
|
Integer |
|
|
|
Cognition |
Memory |
wmsrar
|
Memory Anchor |
WRAP |
Logical Memory Immediate A |
|
Integer |
|
|
|
Cognition |
Memory |
wmsrbr
|
Memory Anchor |
WRAP |
Logical Memory Immediate B |
|
Integer |
|
|
|
Cognition |
Memory |
wmsrar2
|
Memory Anchor |
WRAP |
Logical Memory Delayed A |
|
Integer |
|
|
|
Cognition |
Memory |
wmsrbr2
|
Memory Anchor |
WRAP |
Logical Memory Delayed B |
|
Integer |
|
|
|
Cognition |
Memory |
bvmt1r
|
|
WRAP |
Brief Visuospatial Memory Test Revised Trial 1 Raw |
|
Integer |
|
|
|
Cognition |
Memory |
bvmt2r
|
|
WRAP |
Brief Visuospatial Memory Test Revised Trial 2 Raw |
|
Integer |
|
|
|
Cognition |
Memory |
bvmt3r
|
|
WRAP |
Brief Visuospatial Memory Test Revised Trial 3 Raw |
|
Integer |
|
|
|
Cognition |
Memory |
bvmtdel
|
|
WRAP |
BVMT-R delayed Raw |
|
Integer |
|
|
|
Cognition |
Memory |
bvmtrec
|
|
WRAP |
BVMT-R Rec hits |
|
Integer |
|
|
|
Cognition |
Memory |
PHC_MEM
|
|
Harmonized |
Harmonized Composite Memory Score |
|
Number |
This is a composite measure of the memory scores that were harmonized across ten datasets. |
|
|
Cognition |
Memory |
PHC_MEM_SE
|
|
Harmonized |
Standard Error of Harmonized Composite Memory Score |
|
Number |
|
|
|
Cognition |
Memory |
PHC_MEM_PreciseFilter
|
|
Harmonized |
Precision Filter to isolate Harmonized Composite Memory Scores |
|
String |
Precision filter criteria is met when the standard error is less than or equal to 0.6 |
|
Level |
Label |
0 |
Does not meet PreciseFilter criteria |
1 |
Does meet PreciseFilter criteria |
|
Cognition |
Executive Function |
mat_attn
|
|
ACT |
DRS: Mattis Dementia Rating Scale, Attention score |
|
Integer |
|
|
|
Cognition |
Executive Function |
mat_conc
|
|
ACT |
DRS: Mattis Dementia Rating Scale, Concentration score |
|
Integer |
|
|
|
Cognition |
Executive Function |
mat_ip
|
|
ACT |
DRS: Mattis Dementia Rating Scale, initiation / perseveration score |
|
Integer |
|
|
|
Cognition |
Executive Function |
tr_a_tm
|
Executive Function Anchor |
ACT |
Trails A time to complete |
Seconds |
Integer |
|
|
|
Cognition |
Executive Function |
tr_b_tm
|
Executive Function Anchor |
ACT |
Trails B time to complete |
Seconds |
Integer |
|
|
|
Cognition |
Executive Function |
clockdr
|
|
ACT |
Clock drawing |
|
Integer |
|
|
|
Cognition |
Executive Function |
dba
|
|
ACT |
CASI: repeat numbers backward (3 trials collapsed) |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Executive Function |
dbb
|
|
ACT |
CASI: repeat numbers backward (3 trials collapsed) |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
2 |
Correct |
|
Cognition |
Executive Function |
dbc
|
|
ACT |
CASI: repeat numbers backward (3 trials collapsed) |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
2 |
Correct |
|
Cognition |
Executive Function |
sub3a
|
|
ACT |
CASI: Subtraction (3 trials collapsed) |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Executive Function |
sub3b
|
|
ACT |
CASI: Subtraction (3 trials collapsed) |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Executive Function |
sub3c
|
|
ACT |
CASI: Subtraction (3 trials collapsed) |
|
Integer |
|
|
|
Cognition |
Executive Function |
sim_ACT
|
|
ACT |
CASI: similarities |
|
Integer |
|
|
|
Cognition |
Executive Function |
jgmt
|
|
ACT |
CASI: judgement |
|
Integer |
|
|
|
Cognition |
Executive Function |
clockcirc
|
|
ADNI |
Approximately circular face |
|
String |
|
|
|
Cognition |
Executive Function |
clocksym
|
|
ADNI |
Symmetry of number placement |
|
String |
|
|
|
Cognition |
Executive Function |
clocknum
|
|
ADNI |
Correctness of numbers |
|
String |
|
|
|
Cognition |
Executive Function |
clockhand
|
|
ADNI |
Presence of the two hands |
|
String |
|
|
|
Cognition |
Executive Function |
clocktime
|
|
ADNI |
Presence of the two hands, set to ten after eleven |
|
String |
|
|
|
Cognition |
Executive Function |
dspanbac
|
Executive Function Anchor |
ADNI |
WAIS-R: Digit Span Backward Total Correct |
|
Integer |
|
|
|
Cognition |
Executive Function |
traascor
|
Executive Function Anchor |
ADNI |
Trails A Time to Complete |
Seconds |
Integer |
|
|
|
Cognition |
Executive Function |
trabscor
|
Executive Function Anchor |
ADNI |
Trails B Time to complete |
Seconds |
Integer |
|
|
|
Cognition |
Executive Function |
digitscor
|
Executive Function Anchor |
ADNI |
WAIS-R: Digit Symbol Total Correct |
|
Integer |
|
|
|
Cognition |
Executive Function |
dspanfor
|
Executive Function Anchor |
ADNI |
WAIS-R: Digit Span Forward Total Correct |
|
Integer |
|
|
|
Cognition |
Executive Function |
q13score
|
|
ADNI |
ADAS-Cog: Number cancellation task |
|
Integer |
|
|
|
Cognition |
Executive Function |
absmeas
|
Executive Function Anchor |
ADNI |
MoCA: Abstraction: watch-ruler |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Executive Function |
abstran
|
Executive Function Anchor |
ADNI |
MoCA: Abstraction: train-bicycle |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Executive Function |
trails
|
Executive Function Anchor |
ADNI |
MoCA: Trails |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Executive Function |
digback_ADNI
|
Executive Function Anchor |
ADNI |
MoCA: Digits Backward |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Executive Function |
digfor_ADNI
|
Executive Function Anchor |
ADNI |
MoCA: Digits Forward |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Executive Function |
letters
|
Executive Function Anchor |
ADNI |
MoCA: List of Letters/Tapping: # Errors |
|
Integer |
|
|
|
Cognition |
Executive Function |
serial1
|
|
ADNI |
MoCA: Serial 7: 1st Subtraction |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Executive Function |
serial2
|
|
ADNI |
MoCA: Serial 7: 2nd Subtraction |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Executive Function |
serial3
|
|
ADNI |
MoCA: Serial 7: 3rd Subtraction |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Executive Function |
serial4
|
|
ADNI |
MoCA: Serial 7: 4th Subtraction |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Executive Function |
serial5
|
|
ADNI |
MoCA: Serial 7: 5th Subtraction |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
correct |
|
Cognition |
Executive Function |
mmworldscore
|
Executive Function Anchor |
ADNI |
Collated Score of mm*ltr and mmltr* - Total correct |
|
Integer |
mm*ltr variables were used for ADNI 1/GO/2 while mmltr* variables were used for ADNI 3. |
This variable was derived to create one World Backwards Score |
|
Cognition |
Executive Function |
mmdltr
|
Executive Function Anchor |
ADNI |
MMSE: Spell WORLD backward: Letter 1 |
|
String |
|
|
|
Cognition |
Executive Function |
mmlltr
|
Executive Function Anchor |
ADNI |
MMSE: Spell WORLD backward: Letter 2 |
|
String |
|
|
|
Cognition |
Executive Function |
mmrltr
|
Executive Function Anchor |
ADNI |
MMSE: Spell WORLD backward: Letter 3 |
|
String |
|
|
|
Cognition |
Executive Function |
mmoltr
|
Executive Function Anchor |
ADNI |
MMSE: Spell WORLD backward: Letter 4 |
|
String |
|
|
|
Cognition |
Executive Function |
mmwltr
|
Executive Function Anchor |
ADNI |
MMSE: Spell WORLD backward: Letter 5 |
|
String |
|
|
|
Cognition |
Executive Function |
mmltr1
|
Executive Function Anchor |
ADNI |
Indicate 1st letter (of WORLD backwards) |
|
String |
|
|
|
Cognition |
Executive Function |
mmltr2
|
Executive Function Anchor |
ADNI |
Indicate 2nd letter (of WORLD backwards) |
|
String |
|
|
|
Cognition |
Executive Function |
mmltr3
|
Executive Function Anchor |
ADNI |
Indicate 3rd letter (of WORLD backwards) |
|
String |
|
|
|
Cognition |
Executive Function |
mmltr4
|
Executive Function Anchor |
ADNI |
Indicate 4th letter (of WORLD backwards) |
|
String |
|
|
|
Cognition |
Executive Function |
mmltr5
|
Executive Function Anchor |
ADNI |
Indicate 5th letter (of WORLD backwards) |
|
String |
|
|
|
Cognition |
Executive Function |
ab1similaritiesraw
|
Executive Function Anchor |
EFIGA |
WAIS-R: similarities, Spanish |
|
Integer |
|
|
|
Cognition |
Executive Function |
ab4identitiesoditiessame
|
Executive Function Anchor |
EFIGA |
identities/oddities: same |
|
Integer |
|
|
|
Cognition |
Executive Function |
ab5identitiesoditiesdiffe
|
Executive Function Anchor |
EFIGA |
identities/oddities: different |
|
Integer |
|
|
|
Cognition |
Executive Function |
nsctt_time1
|
Executive Function Anchor |
EFIGA |
Color trail test A time |
Seconds |
Integer |
|
|
|
Cognition |
Executive Function |
nsctt_time2
|
Executive Function Anchor |
EFIGA |
Color trail test B time |
Seconds |
Integer |
|
|
|
Cognition |
Executive Function |
htablehmonthsinreverse
|
Executive Function Anchor |
EFIGA |
SBT: month in reverse - number of errors |
|
Integer |
|
|
|
Cognition |
Executive Function |
htablehcountbackwards
|
Executive Function Anchor |
EFIGA |
SBT: count 20 to 1 - number of errors |
|
Integer |
|
|
|
Cognition |
Executive Function |
k3_1
|
|
KBASE |
Clock drawing: 1:45 |
|
Integer |
|
|
|
Cognition |
Executive Function |
k1_cw
|
Executive Function Anchor |
KBASE |
Stroop color-word (Golden) |
|
Integer |
|
|
|
Cognition |
Executive Function |
ds_forwardl12
|
Executive Function Anchor |
KBASE |
WAIS-R: Digit span forwards |
|
Integer |
|
|
|
Cognition |
Executive Function |
ds_backwardl12
|
Executive Function Anchor |
KBASE |
WAIS-R: Digit span backwards |
|
Integer |
|
|
|
Cognition |
Executive Function |
tmt_al11
|
Executive Function Anchor |
KBASE |
Trail making A |
|
Integer |
|
|
|
Cognition |
Executive Function |
tmt_bl11
|
Executive Function Anchor |
KBASE |
Trail Making B |
|
Integer |
|
|
|
Cognition |
Executive Function |
traila_KnightADRC
|
Executive Function Anchor |
Knight ADRC |
Trail Making A |
Seconds |
Integer |
traila_KnightADRC and tma are combined into one variable |
|
|
Cognition |
Executive Function |
tma
|
Executive Function Anchor |
Knight ADRC |
Trail Making A |
Seconds |
Integer |
traila_KnightADRC and tma are combined into one variable |
|
|
Cognition |
Executive Function |
trailb_KnightADRC
|
Executive Function Anchor |
Knight ADRC |
Trail Making B |
Seconds |
Integer |
|
|
|
Cognition |
Executive Function |
tmb
|
|
Knight ADRC |
Trail Making B |
Seconds |
Integer |
|
|
|
Cognition |
Executive Function |
digib_KnightADRC
|
Executive Function Anchor |
Knight ADRC |
WMS-R: Digit span backward |
|
Integer |
|
|
|
Cognition |
Executive Function |
digif_KnightADRC
|
Executive Function Anchor |
Knight ADRC |
WMS-R: Digit span forward |
|
Integer |
|
|
|
Cognition |
Executive Function |
digsym
|
Executive Function Anchor |
Knight ADRC |
WAIS-R: Digit Symbol |
|
Integer |
|
|
|
Cognition |
Executive Function |
worldback
|
Executive Function Anchor |
Knight ADRC |
Spell WORLD backwards |
|
Integer |
|
|
|
Cognition |
Executive Function |
digbacct_KnightADRC
|
Executive Function Anchor |
Knight ADRC |
Number span backward |
|
Integer |
|
|
|
Cognition |
Executive Function |
digforct_KnightADRC
|
Executive Function Anchor |
Knight ADRC |
Number span forward |
|
Integer |
|
|
|
Cognition |
Executive Function |
digback_KnightADRC
|
|
Knight ADRC |
WMS: Digit span backwards |
|
Integer |
|
|
|
Cognition |
Executive Function |
digfor_KnightADRC
|
|
Knight ADRC |
WMS: Digit span forward |
|
Integer |
|
|
|
Cognition |
Executive Function |
mentcont
|
|
Knight ADRC |
WMS: Mental control summary score |
|
Integer |
|
|
|
Cognition |
Executive Function |
msq10
|
|
Knight ADRC |
Pfeiffer: subtract 3s from 20 |
|
String |
|
|
|
Cognition |
Executive Function |
ksbt4
|
|
Knight ADRC |
SBT: count aloud backward - # of errors |
|
Integer |
|
|
|
Cognition |
Executive Function |
ksbt5
|
|
Knight ADRC |
SBT: name the months of the year backwards - # of errors |
|
Integer |
|
|
|
Cognition |
Executive Function |
sim_KnightADRC
|
|
Knight ADRC |
WAIS-III: similarities |
|
Integer |
|
|
|
Cognition |
Executive Function |
simonnumber
|
|
Knight ADRC |
Simon task: number of correct responses on 120 trials |
|
Integer |
|
|
|
Cognition |
Executive Function |
tapping
|
|
Knight ADRC |
median tapping response out of 109 trials |
|
Integer |
|
|
|
Cognition |
Executive Function |
stroopcolor
|
|
Knight ADRC |
color only stroop |
|
Integer |
|
|
|
Cognition |
Executive Function |
stroopswitch
|
|
Knight ADRC |
color/word stroop |
|
Integer |
|
|
|
Cognition |
Executive Function |
switchcv
|
|
Knight ADRC |
consonant/vowel |
|
Integer |
|
|
|
Cognition |
Executive Function |
switchoe
|
|
Knight ADRC |
odd/even |
|
Integer |
|
|
|
Cognition |
Executive Function |
switchmixed
|
|
Knight ADRC |
switch c/v and o/e |
|
Integer |
|
|
|
Cognition |
Executive Function |
readtot
|
|
Knight ADRC |
reading total |
|
Integer |
|
|
|
Cognition |
Executive Function |
traila_NACC
|
Executive Function Anchor |
NACC |
Trails A: Time to complete |
Seconds |
Integer |
|
|
|
Cognition |
Executive Function |
trailb_NACC
|
Executive Function Anchor |
NACC |
Trails B: Time to complete |
Seconds |
Integer |
|
|
|
Cognition |
Executive Function |
mocatrai
|
Executive Function Anchor |
NACC |
MoCA: Trails |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Executive Function |
mocaabst
|
Executive Function Anchor |
NACC |
MoCA: Abstraction |
|
Integer |
|
|
|
Cognition |
Executive Function |
mocalett
|
Executive Function Anchor |
NACC |
MoCA: Attention - letter A |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Executive Function |
mocadigi
|
Executive Function Anchor |
NACC |
MoCA: Attention - digits |
|
Integer |
|
|
|
Cognition |
Executive Function |
mocacloc
|
|
NACC |
MoCA: Draw clock circle in place |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Executive Function |
mocaclon
|
|
NACC |
MoCA: Draw clock numbers in place |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Executive Function |
mocacloh
|
|
NACC |
MoCA: Draw clock hands in place |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Executive Function |
mocaser7
|
|
NACC |
MoCA: Attention - serial 7s |
|
Integer |
|
|
|
Cognition |
Executive Function |
digbacct_NACC
|
|
NACC |
Number Span Backward - correct |
|
Integer |
|
|
|
Cognition |
Executive Function |
digforct_NACC
|
|
NACC |
Number Span Forward - correct |
|
Integer |
|
|
|
Cognition |
Executive Function |
wais
|
Executive Function Anchor |
NACC |
WAIS-R Digit Symbol |
|
Integer |
|
|
|
Cognition |
Executive Function |
digib_NACC
|
Executive Function Anchor |
NACC |
WAIS-R Digit Span Backward: Total correct |
|
Integer |
|
|
|
Cognition |
Executive Function |
digif_NACC
|
Executive Function Anchor |
NACC |
WAIS-R Digit Span Forward: Total correct |
|
Integer |
|
|
|
Cognition |
Executive Function |
digfor_NIAADFBS
|
Executive Function Anchor |
NIA-AD FBS |
Digit span forwards (WMS-R) |
|
Integer |
|
|
|
Cognition |
Executive Function |
digbak
|
Executive Function Anchor |
NIA-AD FBS |
Digit span backwards (WMS-R) |
|
Integer |
|
|
|
Cognition |
Executive Function |
digord
|
Executive Function Anchor |
NIA-AD FBS |
Digits ordering |
|
Integer |
|
|
|
Cognition |
Executive Function |
cts_pmat
|
|
ROS, MAP - Rush, MARS |
Raven Progressive Matrices composite |
|
Integer |
|
|
|
Cognition |
Executive Function |
cts_doperf
|
|
ROS, MAP - Rush, MARS |
Digit Ordering composite |
|
Integer |
|
|
|
Cognition |
Executive Function |
cts_db
|
Executive Function Anchor |
ROS, MAP - Rush, MARS |
WAIS-R: Digit Span Backward Total Correct |
|
Integer |
|
|
|
Cognition |
Executive Function |
cts_sdmt
|
|
ROS, MAP - Rush, MARS |
Symbol digit modality test (oral) |
|
Integer |
|
|
|
Cognition |
Executive Function |
cts_nccrtd
|
|
ROS, MAP - Rush, MARS |
Number comparison |
|
Integer |
|
|
|
Cognition |
Executive Function |
cts_df
|
Executive Function Anchor |
ROS, MAP - Rush, MARS |
WAIS-R: Digit Span Forward Total Correct |
|
Integer |
|
|
|
Cognition |
Executive Function |
cts_stroop_cname
|
|
ROS, MAP - Rush, MARS |
Stroop color naming |
|
Integer |
|
|
|
Cognition |
Executive Function |
mmse30_item26_dlr
|
Executive Function Anchor |
ROS, MAP - Rush, MARS |
MMSE: Spell WORLD backwards |
|
Integer |
|
|
|
Cognition |
Executive Function |
c1_clock
|
|
TARCC |
Original Clock |
|
Integer |
|
|
|
Cognition |
Executive Function |
c1_clox1
|
|
TARCC |
Enhanced Clock |
|
Integer |
|
|
|
Cognition |
Executive Function |
c1_traila
|
Executive Function Anchor |
TARCC |
Trails A |
|
Integer |
|
|
|
Cognition |
Executive Function |
c1_trailb
|
Executive Function Anchor |
TARCC |
Trails B |
|
Integer |
|
|
|
Cognition |
Executive Function |
c1_wais3_digib
|
Executive Function Anchor |
TARCC |
WAIS-3: Digit Span Backwards |
|
Integer |
|
|
|
Cognition |
Executive Function |
c1_wais3_digif
|
Executive Function Anchor |
TARCC |
WAIS-3: Digit Span Forwards |
|
Integer |
|
|
|
Cognition |
Executive Function |
c1_waisr_digib
|
Executive Function Anchor |
TARCC |
WAIS-R: Digit Span Backwards |
|
Integer |
|
|
|
Cognition |
Executive Function |
c1_waisr_digif
|
Executive Function Anchor |
TARCC |
WAIS-R: Digit Span Forwards |
|
Integer |
|
|
|
Cognition |
Executive Function |
c1_wmsr_digib
|
Executive Function Anchor |
TARCC |
WMS-R: Digit Span Backwards |
|
Integer |
|
|
|
Cognition |
Executive Function |
c1_wmsr_digif
|
Executive Function Anchor |
TARCC |
WMS-R: Digit Span Forwards |
|
Integer |
|
|
|
Cognition |
Executive Function |
h30_rp
|
Executive Function Anchor |
WHICAP |
SBT: Counting backwards from 20 - number of errors |
|
Integer |
h30_rp and h30_n: _rp is the research psysician short blessed (neuropsychological), _n is the neurological exam. These two items were combined, where _rp was the ideal item and _n was used when _rp was not available |
|
|
Cognition |
Executive Function |
h30_n
|
Executive Function Anchor |
WHICAP |
SBT: Counting backwards from 20 - number of errors |
|
Integer |
h30_rp and h30_n: _rp is the research psysician short blessed (neuropsychological), _n is the neurological exam. These two items were combined, where _rp was the ideal item and _n was used when _rp was not available |
|
|
Cognition |
Executive Function |
h31_rp
|
Executive Function Anchor |
WHICAP |
SBT: Months backwards - number of errors |
|
Integer |
h31_rp and h31_n: _rp is the research psysician short blessed (neuropsychological), _n is the neurological exam. These two items were combined, where _rp was the ideal item and _n was used when _rp was not available |
|
|
Cognition |
Executive Function |
h31_n
|
Executive Function Anchor |
WHICAP |
SBT: Months backwards - number of errors |
|
Integer |
h31_rp and h31_n: _rp is the research psysician short blessed (neuropsychological), _n is the neurological exam. These two items were combined, where _rp was the ideal item and _n was used when _rp was not available |
|
|
Cognition |
Executive Function |
abs01
|
Executive Function Anchor |
WHICAP |
WAIS-R: Similarities |
|
Integer |
PARTIAL ANCHOR: When the test was administered in English, this item was an anchor. When this test was administered in Spanish, it was not an anchor. |
|
|
Cognition |
Executive Function |
abs04
|
|
WHICAP |
Identities and oddities, same |
|
Integer |
|
|
|
Cognition |
Executive Function |
abs05
|
|
WHICAP |
Identities and oddities, different |
|
Integer |
|
|
|
Cognition |
Executive Function |
color1t
|
|
WHICAP |
Color trails 1 |
Seconds |
Integer |
|
|
|
Cognition |
Executive Function |
color2t
|
|
WHICAP |
Color trails 2 |
Seconds |
Integer |
|
|
|
Cognition |
Executive Function |
trla
|
Executive Function Anchor |
WRAP |
Trail Making Test - Trail A |
Seconds |
Integer |
|
|
|
Cognition |
Executive Function |
trlb
|
Executive Function Anchor |
WRAP |
Trail Making Test - Trail B |
Seconds |
Integer |
|
|
|
Cognition |
Executive Function |
waisrtot
|
Executive Function Anchor |
WRAP |
Digit Symbol - Total Raw |
|
Integer |
|
|
|
Cognition |
Executive Function |
iqdspf
|
Executive Function Anchor |
WRAP |
Digit Span - Forward (WAIS-III) |
|
Integer |
|
|
|
Cognition |
Executive Function |
iqdspb
|
Executive Function Anchor |
WRAP |
Digit Span - Backward (WAIS-III) |
|
Integer |
|
|
|
Cognition |
Executive Function |
cdtts
|
Executive Function Anchor |
WRAP |
Clock Draw - CDT Total Score |
|
Integer |
|
|
|
Cognition |
Executive Function |
stroocw
|
|
WRAP |
STROOP - Number named for Color-Word |
|
Integer |
|
|
|
Cognition |
Executive Function |
iqlnsr
|
|
WRAP |
Letter/Number Sequence - Raw score |
|
Integer |
|
|
|
Cognition |
Executive Function |
PHC_EXF
|
|
Harmonized |
Harmonized Composite Executive Function Score |
|
Number |
This is a composite measure of the Executive Function scores that were harmonized across nine datasets. |
|
|
Cognition |
Executive Function |
PHC_EXF_SE
|
|
Harmonized |
Standard Error of Harmonized Composite Executive Function Score |
|
Number |
|
|
|
Cognition |
Executive Function |
PHC_EXF_PreciseFilter
|
|
Harmonized |
Precision Filter to isolate Harmonized Composite Executive Function Scores |
|
String |
Precision filter criteria is met when the standard error is less than or equal to 0.6 |
|
Level |
Label |
0 |
Does not meet PreciseFilter criteria |
1 |
Does meet PreciseFilter criteria |
|
Cognition |
Language |
bnt_adpr
|
|
ACT |
Boston Naming Test - 10-item version |
|
Integer |
|
|
|
Cognition |
Language |
bnt_cer
|
Language Anchor |
ACT |
CERAD: Boston Naming Test - 15-item version |
|
Integer |
|
|
|
Cognition |
Language |
v_flu_t
|
Language Anchor |
ACT |
Category Fluency (Animals) - Total Correct |
|
Integer |
|
|
|
Cognition |
Language |
animal
|
|
ACT |
CASI: animals with 4 legs |
|
Integer |
|
|
|
Cognition |
Language |
rpta
|
|
ACT |
CASI: repeat phrase - 1 |
|
String |
|
|
Level |
Label |
0 |
Three or more missed or wrong words |
1 |
One or two missed or wrong words |
2 |
Correct |
|
Cognition |
Language |
rptb
|
|
ACT |
CASI: repeat phrase - 2 |
|
Integer |
|
|
|
Cognition |
Language |
cas_read
|
Language Anchor |
ACT |
CASI: read and follow a command |
|
String |
|
|
Level |
Label |
0 |
Neither reads nor obeys |
1 |
Reads correctly, but does not obey |
2 |
Obeys after prompting |
3 |
Obeys without prompting |
|
Cognition |
Language |
cas_writ
|
|
ACT |
CASI: write a sentence |
|
Integer |
|
|
|
Cognition |
Language |
cmd
|
Language Anchor |
ACT |
CASI: obey oral commands |
|
Integer |
|
|
|
Cognition |
Language |
body
|
|
ACT |
CASI: identify parts of body |
|
Integer |
|
|
|
Cognition |
Language |
obja
|
|
ACT |
CASI: identify objects - 1 |
|
Integer |
|
|
|
Cognition |
Language |
objb
|
|
ACT |
CASI: identify objects - 2 |
|
Integer |
|
|
|
Cognition |
Language |
catanimsc
|
Language Anchor |
ADNI |
Category Fluency (Animals) -Total Correct |
|
Integer |
|
|
|
Cognition |
Language |
catvegesc
|
Language Anchor |
ADNI |
Category Fluency (Vegetables) -Total Correct |
|
Integer |
|
|
|
Cognition |
Language |
bnttotal
|
Language Anchor |
ADNI |
BNT: Boston Naming Test: Total Number Correct (1+3) |
|
Integer |
|
|
|
Cognition |
Language |
q2score
|
|
ADNI |
ADAS-Cog: Commands |
|
Integer |
|
|
|
Cognition |
Language |
q5score
|
|
ADNI |
ADAS-Cog: Naming |
|
Integer |
|
|
|
Cognition |
Language |
q6score
|
|
ADNI |
ADAS-Cog: Ideational Praxis-score |
|
Integer |
|
|
|
Cognition |
Language |
mmrepeat
|
Language Anchor |
ADNI |
MMSE: Repeat after me: no ifs, ands, or buts. |
|
String |
|
|
|
Cognition |
Language |
mmhand
|
Language Anchor |
ADNI |
MMSE: Takes paper in right hand |
|
String |
|
|
|
Cognition |
Language |
mmfold
|
Language Anchor |
ADNI |
MMSE: Folds paper in half |
|
String |
|
|
|
Cognition |
Language |
mmonflr
|
Language Anchor |
ADNI |
MMSE: Puts paper on floor |
|
String |
|
|
|
Cognition |
Language |
mmread
|
Language Anchor |
ADNI |
MMSE: Present the piece of paper which reads |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Language |
mmwrite
|
Language Anchor |
ADNI |
MMSE: Write a sentence. |
|
String |
|
|
|
Cognition |
Language |
camel
|
Language Anchor |
ADNI |
MoCA: Camel naming |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Language |
lion
|
Language Anchor |
ADNI |
MoCA: Lion naming |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Language |
rhino
|
Language Anchor |
ADNI |
MoCA: Rhinoceros naming |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Language |
repeat1
|
Language Anchor |
ADNI |
MoCA: Repeat Sentence |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Language |
repeat2
|
Language Anchor |
ADNI |
MoCA: Repeat Sentence |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Language |
ffluency
|
Language Anchor |
ADNI |
MoCA: Letter Fluency-F (total number of correct words) |
|
Integer |
|
|
|
Cognition |
Language |
lg1namingtotal
|
Language Anchor |
EFIGA |
BNT 15 item |
|
Integer |
|
|
|
Cognition |
Language |
lg10numberofanimals
|
Language Anchor |
EFIGA |
Animal category fluency |
|
Integer |
|
|
|
Cognition |
Language |
lg12repetition
|
Language Anchor |
EFIGA |
Boston Diagnostic Aphasia Examination repetition |
|
Integer |
|
|
|
Cognition |
Language |
lg13comprehension
|
Language Anchor |
EFIGA |
Boston Diagnostic Aphasia Examination comprehension |
|
Integer |
|
|
|
Cognition |
Language |
lg6cflsum
|
Language Anchor |
EFIGA |
Letter Fluency Total: CFL |
|
Integer |
|
|
|
Cognition |
Language |
k1_w
|
|
KBASE |
Stroop words |
|
Integer |
|
|
|
Cognition |
Language |
k1_c
|
Language Anchor |
KBASE |
Stroop colors |
|
Integer |
|
|
|
Cognition |
Language |
j1_tot
|
Language Anchor |
KBASE |
Animal Fluency |
|
Integer |
|
|
|
Cognition |
Language |
j2_tot
|
|
KBASE |
Boston Naming Test |
|
Integer |
|
|
|
Cognition |
Language |
l2_1
|
|
KBASE |
Phonemic Fluency - F |
|
Integer |
|
|
|
Cognition |
Language |
l2_2
|
|
KBASE |
Phonemic Fluency - A |
|
Integer |
|
|
|
Cognition |
Language |
l2_3
|
|
KBASE |
Phonemic Fluency - S |
|
Integer |
|
|
|
Cognition |
Language |
animals_KnightADRC
|
Language Anchor |
Knight ADRC |
Category Fluency: animals |
|
Integer |
|
|
|
Cognition |
Language |
veg_KnightADRC
|
Language Anchor |
Knight ADRC |
Category Fluency: vegetables |
|
Integer |
|
|
|
Cognition |
Language |
psy032
|
Language Anchor |
Knight ADRC |
Letter fluency: S |
|
Integer |
|
|
|
Cognition |
Language |
psy033
|
|
Knight ADRC |
Letter fluency: P |
|
Integer |
|
|
|
Cognition |
Language |
udsverfc_KnightADRC
|
Language Anchor |
Knight ADRC |
Letter fluency: F |
|
Integer |
|
|
|
Cognition |
Language |
udsverlc_KnightADRC
|
Language Anchor |
Knight ADRC |
Letter fluency: L |
|
Integer |
|
|
|
Cognition |
Language |
fold
|
Language Anchor |
Knight ADRC |
MMSE: Fold paper in half |
|
String |
|
|
|
Cognition |
Language |
lap
|
Language Anchor |
Knight ADRC |
MMSE: Puts paper on lap |
|
String |
|
|
|
Cognition |
Language |
righ
|
Language Anchor |
Knight ADRC |
MMSE: Take paper in right hand |
|
String |
|
|
|
Cognition |
Language |
phra
|
Language Anchor |
Knight ADRC |
MMSE: repeat phrase |
|
String |
|
|
|
Cognition |
Language |
sent
|
Language Anchor |
Knight ADRC |
MMSE: Write a sentence. |
|
String |
|
|
|
Cognition |
Language |
redo
|
Language Anchor |
Knight ADRC |
MMSE: read and do |
|
String |
|
|
|
Cognition |
Language |
bnt
|
Language Anchor |
Knight ADRC |
Boston Naming Test - 60 item total |
|
Integer |
|
|
|
Cognition |
Language |
minttots
|
|
NACC |
Multilingual naming test (MINT) - total score |
|
Integer |
|
|
|
Cognition |
Language |
udsverlc_NACC
|
|
NACC |
MAE: Letter Fluency - L (total number of correct words) |
|
Integer |
|
|
|
Cognition |
Language |
mocarepe
|
Language Anchor |
NACC |
MoCA: language - repetition |
|
Integer |
|
|
|
Cognition |
Language |
mocanami
|
Language Anchor |
NACC |
MoCA: language - naming (lion, camel, rhino) |
|
Integer |
|
|
|
Cognition |
Language |
animals_NACC
|
Language Anchor |
NACC |
Category Fluency (Animals) - Total Correct |
|
Integer |
|
|
|
Cognition |
Language |
boston
|
Language Anchor |
NACC |
Boston Naming Test: Total number correct (1+3) |
|
Integer |
|
|
|
Cognition |
Language |
veg_NACC
|
Language Anchor |
NACC |
Category Fluency (Vegetables) - Total Correct |
|
Integer |
|
|
|
Cognition |
Language |
udsverfc_NACC
|
Language Anchor |
NACC |
MAE: Letter Fluency - F (total number of correct words) |
|
Integer |
|
|
|
Cognition |
Language |
animals_NIAADFBS
|
Language Anchor |
NIA-AD FBS |
Category Fluency: animals |
|
Integer |
|
|
|
Cognition |
Language |
veg_NIAADFBS
|
Language Anchor |
NIA-AD FBS |
Category Fluency: vegetables |
|
Integer |
|
|
|
Cognition |
Language |
mmse30_item19
|
Language Anchor |
ROS, MAP - Rush, MARS |
MMSE: Repeat a phrase |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Language |
mmse30_item20
|
Language Anchor |
ROS, MAP - Rush, MARS |
MMSE: Read the words on this card, then do what it says |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Language |
mmse30_item21
|
Language Anchor |
ROS, MAP - Rush, MARS |
MMSE: Take paper in right hand |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Language |
mmse30_item22
|
Language Anchor |
ROS, MAP - Rush, MARS |
MMSE: Fold paper in half |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Language |
mmse30_item23
|
Language Anchor |
ROS, MAP - Rush, MARS |
MMSE: Puts paper on lap |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Language |
mmse30_item24
|
Language Anchor |
ROS, MAP - Rush, MARS |
MMSE: Write any complete sentence |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Language |
cts_stroop_wread
|
|
ROS, MAP - Rush, MARS |
Stroop word reading |
|
Integer |
|
|
|
Cognition |
Language |
cts_bname
|
Language Anchor |
ROS, MAP - Rush, MARS |
CERAD: Boston Naming Test â 15-item version |
|
Integer |
|
|
|
Cognition |
Language |
cts_animals
|
Language Anchor |
ROS, MAP - Rush, MARS |
Category Fluency (Animals) - Total Correct |
|
Integer |
|
|
|
Cognition |
Language |
cts_fruits
|
|
ROS, MAP - Rush, MARS |
Category Fluency (Fruits) - Total Correct |
|
Integer |
|
|
|
Cognition |
Language |
idea_item1
|
|
ROS, MAP - Rush, MARS |
Complex ideation: Will a board sink in water? |
|
String |
|
|
|
Cognition |
Language |
idea_item2
|
|
ROS, MAP - Rush, MARS |
Complex ideation: Will a stone sink in water? |
|
String |
|
|
|
Cognition |
Language |
idea_item3
|
|
ROS, MAP - Rush, MARS |
Complex ideation: Is a hammer good for cutting wood? |
|
String |
|
|
|
Cognition |
Language |
idea_item4
|
|
ROS, MAP - Rush, MARS |
Complex ideation: Can you use a hammer to pound nails? |
|
String |
|
|
|
Cognition |
Language |
idea_item5
|
|
ROS, MAP - Rush, MARS |
Complex ideation: Do two pounds of flour weigh more than one? |
|
String |
|
|
|
Cognition |
Language |
idea_item6
|
|
ROS, MAP - Rush, MARS |
Complex ideation: Is one pound of flour heavier than two? |
|
String |
|
|
|
Cognition |
Language |
idea_item7
|
|
ROS, MAP - Rush, MARS |
Complex ideation: Will water go through a good pair of rubber boots? |
|
String |
|
|
|
Cognition |
Language |
idea_item8
|
|
ROS, MAP - Rush, MARS |
Complex ideation: Will a good pair of rubber boots keep water out? |
|
String |
|
|
|
Cognition |
Language |
c1_boston30
|
Language Anchor |
TARCC |
Boston naming test - 30 items |
|
Integer |
|
|
|
Cognition |
Language |
c1_boston60
|
Language Anchor |
TARCC |
Boston naming test - 60 items |
|
Integer |
|
|
|
Cognition |
Language |
c1_animal
|
Language Anchor |
TARCC |
Animal category fluency |
|
Integer |
|
|
|
Cognition |
Language |
c1_fas_f
|
Language Anchor |
TARCC |
Letter F fluency |
|
Integer |
|
|
|
Cognition |
Language |
c1_fas_a
|
Language Anchor |
TARCC |
Letter A fluency |
|
Integer |
|
|
|
Cognition |
Language |
c1_fas_s
|
Language Anchor |
TARCC |
Letter S fluency |
|
Integer |
|
|
|
Cognition |
Language |
lan01
|
|
WHICAP |
Boston Naming Test: Naming Total |
|
Integer |
|
|
|
Cognition |
Language |
lan06
|
Language Anchor |
WHICAP |
Letter Fluency: CFL |
|
Integer |
|
|
|
Cognition |
Language |
lan10
|
Language Anchor |
WHICAP |
Category fluency: animals |
|
Integer |
|
|
|
Cognition |
Language |
lan12
|
|
WHICAP |
BDAE Repetition |
|
Integer |
|
|
|
Cognition |
Language |
lan13
|
|
WHICAP |
BDAE Comprehension |
|
Integer |
|
|
|
Cognition |
Language |
animtotraw
|
Language Anchor |
WRAP |
Animal Naming - Total Raw |
|
Integer |
|
|
|
Cognition |
Language |
bntspon
|
Language Anchor |
WRAP |
Boston Naming Test - Total-spontaneous (raw) |
|
Integer |
|
|
|
Cognition |
Language |
flucfl
|
|
WRAP |
Letter Fluency - C,F,L Raw |
|
Integer |
|
|
|
Cognition |
Language |
strooc
|
|
WRAP |
STROOP - Number named for Color |
|
Integer |
|
|
|
Cognition |
Language |
PHC_LAN
|
|
Harmonized |
Harmonized Composite Language Score |
|
Number |
This is a composite measure of the Language scores that were harmonized across nine datasets. |
|
|
Cognition |
Language |
PHC_LAN_SE
|
|
Harmonized |
Standard Error of Harmonized Composite Language Score |
|
Number |
|
|
|
Cognition |
Language |
PHC_LAN_PreciseFilter
|
|
Harmonized |
Precision Filter to isolate Harmonized Composite Language Scores |
|
String |
Precision filter criteria is met when the standard error is less than or equal to 0.6 |
|
Level |
Label |
0 |
Does not meet PreciseFilter criteria |
1 |
Does meet PreciseFilter criteria |
|
Cognition |
Visuospatial |
mat_cons
|
|
ACT |
DRS: Mattis Dementia Rating Scale-constructional praxis score |
|
Integer |
|
|
|
Cognition |
Visuospatial |
cp_in_ci
|
|
ACT |
CERAD: Constructional Praxis-circle |
|
Integer |
|
|
|
Cognition |
Visuospatial |
cp_in_di
|
|
ACT |
CERAD: Constructional Praxis-diamond |
|
Integer |
|
|
|
Cognition |
Visuospatial |
cp_in_re
|
|
ACT |
CERAD: Constructional Praxis-rectangles |
|
Integer |
|
|
|
Cognition |
Visuospatial |
cp_in_cu
|
|
ACT |
CERAD: Constructional Praxis-cube |
|
Integer |
|
|
|
Cognition |
Visuospatial |
draw_ACT
|
Visuospatial Anchor |
ACT |
CASI: Copy interlocking pentagons |
|
Integer |
|
|
|
Cognition |
Visuospatial |
copycirc
|
|
ADNI |
Clock copy: Approximately circular face |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Visuospatial |
copysym
|
|
ADNI |
Clock copy: Symmetry of number placement |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Visuospatial |
copynum
|
|
ADNI |
Clock copy: Correctness of numbers |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Visuospatial |
copytime
|
|
ADNI |
Clock copy: Presence of the two hands, set to ten after eleven |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Visuospatial |
q3score
|
|
ADNI |
ADAS-Cog: Constructional Praxis-score |
|
Integer |
|
|
|
Cognition |
Visuospatial |
mmdraw
|
Visuospatial Anchor |
ADNI |
MMSE: Copy interlocking pentagons |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Visuospatial |
j5
|
Visuospatial Anchor |
KBASE |
CERAD: Constructional praxis |
|
Integer |
|
|
|
Cognition |
Visuospatial |
l1_rcft_copy
|
Visuospatial Anchor |
KBASE |
Rey Complex Figure |
|
Number |
|
|
|
Cognition |
Visuospatial |
k3_2
|
|
KBASE |
Clock drawing |
|
Integer |
|
|
|
Cognition |
Visuospatial |
l5
|
|
KBASE |
Block design |
|
Integer |
|
|
|
Cognition |
Visuospatial |
psy021
|
|
Knight ADRC |
WAIS: Block Design |
|
Integer |
|
|
|
Cognition |
Visuospatial |
psy025
|
|
Knight ADRC |
Benton Visual Retention - number correct |
|
Integer |
|
|
|
Cognition |
Visuospatial |
psy247
|
|
Knight ADRC |
Benton Visual Discrimination - number correct |
|
Integer |
|
|
|
Cognition |
Visuospatial |
udsbentc
|
|
Knight ADRC |
Benson Figure Copy |
|
Integer |
|
|
|
Cognition |
Visuospatial |
draw_KnightADRC
|
Visuospatial Anchor |
Knight ADRC |
Copy interlocking pentagons |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Visuospatial |
mmse30_item25
|
Visuospatial Anchor |
ROS, MAP - Rush, MARS |
MMSE: Copy interlocking pentagons |
|
String |
|
|
Level |
Label |
0 |
Incorrect |
1 |
Correct |
|
Cognition |
Visuospatial |
lopair_item1
|
|
ROS, MAP - Rush, MARS |
JLO: Line orientation items (15 items) |
|
String |
|
|
|
Cognition |
Visuospatial |
lopair_item2
|
|
ROS, MAP - Rush, MARS |
JLO: Line orientation items (15 items) |
|
String |
|
|
|
Cognition |
Visuospatial |
lopair_item3
|
|
ROS, MAP - Rush, MARS |
JLO: Line orientation items (15 items) |
|
String |
|
|
|
Cognition |
Visuospatial |
lopair_item4
|
|
ROS, MAP - Rush, MARS |
JLO: Line orientation items (15 items) |
|
String |
|
|
|
Cognition |
Visuospatial |
lopair_item5
|
|
ROS, MAP - Rush, MARS |
JLO: Line orientation items (15 items) |
|
String |
|
|
|
Cognition |
Visuospatial |
lopair_item6
|
|
ROS, MAP - Rush, MARS |
JLO: Line orientation items (15 items) |
|
String |
|
|
|
Cognition |
Visuospatial |
lopair_item7
|
|
ROS, MAP - Rush, MARS |
JLO: Line orientation items (15 items) |
|
String |
|
|
|
Cognition |
Visuospatial |
lopair_item8
|
|
ROS, MAP - Rush, MARS |
JLO: Line orientation items (15 items) |
|
String |
|
|
|
Cognition |
Visuospatial |
lopair_item9
|
|
ROS, MAP - Rush, MARS |
JLO: Line orientation items (15 items) |
|
String |
|
|
|
Cognition |
Visuospatial |
lopair_item10
|
|
ROS, MAP - Rush, MARS |
JLO: Line orientation items (15 items) |
|
String |
|
|
|
Cognition |
Visuospatial |
lopair_item11
|
|
ROS, MAP - Rush, MARS |
JLO: Line orientation items (15 items) |
|
String |
|
|
|
Cognition |
Visuospatial |
lopair_item12
|
|
ROS, MAP - Rush, MARS |
JLO: Line orientation items (15 items) |
|
String |
|
|
|
Cognition |
Visuospatial |
lopair_item13
|
|
ROS, MAP - Rush, MARS |
JLO: Line orientation items (15 items) |
|
String |
|
|
|
Cognition |
Visuospatial |
lopair_item14
|
|
ROS, MAP - Rush, MARS |
JLO: Line orientation items (15 items) |
|
String |
|
|
|
Cognition |
Visuospatial |
lopair_item15
|
|
ROS, MAP - Rush, MARS |
JLO: Line orientation items (15 items) |
|
String |
|
|
|
Cognition |
Visuospatial |
PHC_VSP
|
|
Harmonized |
Harmonized Composite Visuospatial Score |
|
Number |
This is a composite measure of the Visuospatial scores that were harmonized across four datasets. |
|
|
Cognition |
Visuospatial |
PHC_VSP_SE
|
|
Harmonized |
Standard Error of Harmonized Composite Visuospatial Score |
|
Number |
|
|
|
Cognition |
Visuospatial |
PHC_VSP_PreciseFilter
|
|
Harmonized |
Precision Filter to isolate Harmonized Composite Visuospatial Scores |
|
String |
Precision filter criteria is met when the standard error is less than or equal to 0.6 |
|
Level |
Label |
0 |
Does not meet PreciseFilter criteria |
1 |
Does meet PreciseFilter criteria |
|
Fluid Biomarkers |
General |
Platform
|
|
|
Immunoassay platform used for biomarker measurement |
|
String |
|
|
|
Fluid Biomarkers |
General |
AT_class
|
|
|
A+/- and T+/- class as identified from CSF biomarker levels |
|
String |
|
|
|
Fluid Biomarkers |
AB42 Levels |
PHC_AB42
|
|
|
Harmonized Z-Score for AB42 Biomarker Levels |
|
Number |
|
|
|
Fluid Biomarkers |
AB42 Levels |
AB42_RAW
|
|
|
Raw AB42 Biomarker Levels |
|
Number |
|
|
|
Fluid Biomarkers |
AB42 Levels |
PHC_SCeNS_AB42_Score
|
|
|
SymmetricCentipolar Normalized Score calculated from AB42 Z-score |
|
Number |
|
|
|
Fluid Biomarkers |
Tau Levels |
PHC_Tau
|
|
|
Harmonized Z-Score for Tau Biomarker Levels |
|
Number |
|
|
|
Fluid Biomarkers |
Tau Levels |
Tau_RAW
|
|
|
Raw Tau Biomarker Levels |
|
Number |
|
|
|
Fluid Biomarkers |
pTau Levels |
PHC_pTau
|
|
|
Harmonized Z-Score for pTau Biomarker Levels |
|
Number |
|
|
|
Fluid Biomarkers |
pTau Levels |
pTau_RAW
|
|
|
Raw pTau Biomarker Levels |
|
Number |
|
|
|
Fluid Biomarkers |
pTau Levels |
PHC_SCeNS_pTau_Score
|
|
|
SymmetricCentipolar Normalized Score calculated from pTau Z-score |
|
Number |
|
|
|
Vascular Risk Factors |
BMI |
PHC_BMI
|
|
|
Body Mass Index (BMI) |
|
Number |
|
|
|
Vascular Risk Factors |
Hypertension |
PHC_Hypertension
|
|
|
History of Hypertension |
|
String |
|
|
Level |
Label |
0 |
No Hypertension |
1 |
Hypertension |
|
Vascular Risk Factors |
Diabetes |
PHC_Diabetes
|
|
|
History of Diabetes |
|
String |
|
|
Level |
Label |
0 |
No Diabetes |
1 |
Diabetes |
|
Vascular Risk Factors |
Heart Disease |
PHC_Heart
|
|
|
History of Heart Disease |
|
String |
|
|
Level |
Label |
0 |
No Heart Disease |
1 |
Heart Disease |
|
Vascular Risk Factors |
Stroke |
PHC_Stroke
|
|
|
History of Stroke |
|
String |
|
|
Level |
Label |
0 |
No Stroke |
1 |
Stroke |
|
Vascular Risk Factors |
Blood Pressure |
PHC_SBP
|
|
|
Systolic Blood Pressure |
|
Number |
|
|
|
Vascular Risk Factors |
Blood Pressure |
PHC_BP_Med
|
|
|
Blood Pressure Medication |
|
String |
|
|
|
Vascular Risk Factors |
Smoking |
PHC_Smoker
|
|
|
Current Smoker |
|
String |
|
|
|
Vascular Risk Factors |
Cardiovascular Risk Score |
PHC_ASCVD_10y_FRS_Simple_AgeOver30
|
|
|
Framingham Atherosclerotic Cardiovascular Disease Risk Score |
|
Number |
|
|
|
Vascular Risk Factors |
Principal Component |
PHC_PC1_All
|
|
|
Principal Component for Overall |
|
Number |
|
|
|
Vascular Risk Factors |
Principal Component |
PHC_PC1_Each
|
|
|
Principal Component for each Cohort |
|
Number |
|
|
|
Neuropath |
General Neuropath |
BRAINWT
|
|
|
Brain Weight |
Grams |
Number |
|
|
|
Neuropath |
General Neuropath |
INT
|
|
|
Interval between last exam and death |
Months |
Integer |
|
|
|
Neuropath |
General Neuropath |
PMI
|
|
|
Post-mortem interval |
Hours |
Number |
|
|
|
Neuropath |
Amyloid Deposition |
AMY_THAL
|
|
|
Thal Phase |
|
String |
|
|
Level |
Label |
0 |
None |
1 |
Phase 1 |
2 |
Phase 2 |
3 |
Phase 3 |
4 |
Phase 4 |
5 |
Phase 5 |
|
Neuropath |
Amyloid Deposition |
AMY_A
|
|
|
A Score |
|
String |
|
|
Level |
Label |
0 |
None |
1 |
Thal Phase 1 or 2 |
2 |
Thal Phase 3 |
3 |
Thal Phase 4 or 5 |
|
Neuropath |
Amyloid Deposition |
AMY_CERAD
|
|
|
CERAD |
|
String |
|
|
Level |
Label |
0 |
None |
1 |
Sparse/Possible |
2 |
Moderate/Probable |
3 |
Definite/Frequent |
|
Neuropath |
Amyloid Deposition |
AMY_ANY
|
|
|
Any Amyloid Presence |
|
String |
|
|
Level |
Label |
0 |
None |
1 |
Some Amyloid |
|
Neuropath |
Neurofibirillary Degeneration |
BRAA
|
|
|
Braak Stage |
|
String |
|
|
Level |
Label |
0 |
None |
1 |
BRAAK Stage I |
2 |
BRAAK Stage II |
3 |
BRAAK Stage III |
4 |
BRAAK Stage IV |
5 |
BRAAK Stage V |
6 |
BRAAK Stage VI |
|
Neuropath |
Neurofibirillary Degeneration |
B_SCORE
|
|
|
B score |
|
String |
|
|
Level |
Label |
0 |
None |
1 |
BRAAK Stage I-II |
2 |
BRAAK Stage III-IV |
3 |
BRAAK Stage V-VI |
|
Neuropath |
General ADNC |
ADNC
|
|
|
ADNC severity score |
|
String |
|
|
Level |
Label |
0 |
Not AD |
1 |
Low |
2 |
Intermediate |
3 |
High |
|
Neuropath |
General ADNC |
REAG
|
|
|
NIA-REAGAN criteria for AD |
|
String |
|
|
Level |
Label |
0 |
None |
1 |
Low Likelihood |
2 |
Intermediate Likelihood |
3 |
High Likelihood |
|
Neuropath |
Lewy Bodies |
LEWY_full
|
|
|
PD Braak Staging |
|
String |
|
|
Level |
Label |
0 |
None |
1 |
Brainstem predom. |
2 |
Limbic/amygdala (transitional) |
3 |
Neocortical (diffuse) |
4 |
Olfactory bulb or Region unspecified |
|
Neuropath |
Lewy Bodies |
LEWY_grp
|
|
|
PD Braak (grouped) |
|
String |
|
|
Level |
Label |
0 |
None |
1 |
Brainstem predom. |
2 |
Transitional, diffuse, olfactory bulb, or region unspecified |
|
Neuropath |
Lewy Bodies |
LEWY_ANY
|
|
|
PD Braak (dichotomous) |
|
String |
|
|
Level |
Label |
0 |
None |
1 |
Brainstem, transitional, diffuse, olfactory bulb, or region unspecified |
|
Neuropath |
Vascular Brain Injury |
INFA
|
|
|
Infarcts and lacunes |
|
String |
|
|
|
Neuropath |
Vascular Brain Injury |
HEMOR
|
|
|
Hemorrhages |
|
String |
|
|
|
Neuropath |
Vascular Brain Injury |
MICR
|
|
|
Microinfarcts |
|
String |
|
|
|
Neuropath |
Vascular Brain Injury |
WMRCAL
|
|
|
White matter rarifaction (cerebral arteriosclerotic leukoencephalopthy) |
|
String |
|
|
|
Neuropath |
Vascular Brain Injury |
WMR
|
|
|
White matter rarifaction |
|
String |
|
|
Level |
Label |
0 |
None |
1 |
Mild |
2 |
Moderate |
3 |
Severe |
|
Neuropath |
Vascular Brain Injury |
WBVD
|
|
|
Whole brain vascular disease |
|
String |
|
|
|
Neuropath |
Hippocampal Sclerosis |
HS_L
|
|
|
Hippocampal sclerosis (with laterality) |
|
String |
|
|
Level |
Label |
0 |
None |
1 |
Unilateral |
2 |
Bilateral |
3 |
Present, Location UK |
|
Neuropath |
Hippocampal Sclerosis |
HS_S
|
|
|
Hippocampal sclerosis (simplified) |
|
String |
|
|
|
Neuropath |
TDP43 |
TDP43
|
|
|
TDP Whole Brain (dichotomous) |
|
String |
|
|
Level |
Label |
0 |
No |
1 |
Yes (positive in amygdala/ hippocampus/etorhinal/neocortex) |
|
Neuropath |
TDP43 |
TDP_3
|
|
|
TDP - 3 Component |
|
String |
|
|
Level |
Label |
0 |
None |
1 |
Amygdala |
2 |
Hippocampus or Etorhinal |
3 |
Neocortex |
|
Neuropath |
TDP43 |
TDP_5
|
|
|
TDP Stage; Assumes that TDP progresses from brainstem>amygdala>hippocampus>inferior temporal cortex>neocortex |
|
String |
|
|
Level |
Label |
0 |
None |
1 |
Brainstem/Spinal Cord |
2 |
Amygdala |
3 |
Hippocampus |
4 |
Entorhinal |
5 |
Neocortex |
|
Neuropath |
Cerebrovascular Disease |
CVD_S
|
|
|
Cerebrovascular Disease (simplified) |
|
String |
|
|
Level |
Label |
0 |
None |
1 |
Presence |
|
Neuropath |
Cerebrovascular Disease |
CVD_ATH
|
|
|
Atherosclerosis |
|
String |
|
|
Level |
Label |
0 |
None |
1 |
Mild |
2 |
Moderate |
3 |
Severe |
|
Neuropath |
Cerebrovascular Disease |
CVD_ATH_ANY
|
|
|
Atherosclerosis (dichotomous) |
|
String |
|
|
|
Neuropath |
Cerebrovascular Disease |
CVD_ART
|
|
|
Arteriolosclerosis |
|
String |
|
|
Level |
Label |
0 |
None |
1 |
Mild |
2 |
Moderate |
3 |
Severe |
|
Neuropath |
Cerebrovascular Disease |
CVD_ART_ANY
|
|
|
Arteriolosclerosis (dichotomous) |
|
String |
|
|
|
Neuropath |
Cerebrovascular Disease |
CVD_CAA
|
|
|
Cerebral Amyloid Angiopathy (CAA) |
|
String |
|
|
Level |
Label |
0 |
None |
1 |
Mild |
2 |
Moderate |
3 |
Severe |
|
Neuropath |
Cerebrovascular Disease |
CVD_CAA_ANY
|
|
|
Cerebral Amyloid Angiopathy (CAA) (dichotomous) |
|
String |
|
|
|
PET |
Amyloid |
PHC_TRACER_Amyloid
|
|
|
PET Radiotracer |
|
String |
|
|
|
PET |
Amyloid |
PHC_QC_IMAGE_Amyloid
|
|
|
Determination if scan passed or failed quality control-- image quality |
|
String |
|
|
Level |
Label |
0 |
Fail |
1 |
Pass |
2 |
Pending |
|
PET |
Amyloid |
PHC_QC_TIMING_Amyloid
|
|
|
Determination if scan passed or failed quality control-- acquisition time |
|
String |
|
|
Level |
Label |
0 |
Fail |
1 |
Pass |
2 |
Pending |
|
PET |
Amyloid |
PHC_INJECTED_DOSE_Amyloid
|
|
|
Measure of injected radioligand dose |
millicurie |
Number |
|
|
|
PET |
Amyloid |
PHC_CENTILOIDS
|
|
|
Centiloids (CLs) values converted from GAAIN summary cortical SUVR normalized by GAAIN whole cerebellum; See ADSP MRI-Free PET Methods document |
centiloids |
Integer |
|
|
|
PET |
Amyloid |
PHC_CL_FAIL
|
|
|
Projected centiloid values for images that failed QC_TIMING |
|
Integer |
|
|
|
PET |
Amyloid |
PHC_AMYLOID_STATUS
|
|
|
Amyloid positivity determined by applying thresholds to the GAAIN summary cortical SUVR normalized by GAAIN whole cerebellum; See ADSP MRI-Free PET Methods document |
|
String |
|
|
Level |
Label |
0 |
Negative |
1 |
Positive |
9 |
Unknown |
|
PET |
Amyloid |
GAAIN_SUMMARY_SUVR
|
|
|
GAAIN summary cortical SUVR normalized by GAAIN whole cerebellum |
|
Number |
|
|
|
PET |
Amyloid |
GAAIN_WHOLECEREBELLUM_SUVR
|
|
|
Reference region - SUVR of GAAIN whole cerebellum normalized by GAAIN whole cerebellum |
|
Number |
|
|
|
PET |
Amyloid |
GAAIN_COMPOSITE_REF_SUVR
|
|
|
Reference region - SUVR of composite ref region (volume-weighted mean of GAAIN whole cerebellum, GAAIN brainstem and NPDKA eroded WM) normalized by GAAIN whole cerebellum |
|
Number |
|
|
|
PET |
Amyloid |
GAAIN_CEREBELLUM_CORTEX_SUVR
|
|
|
Reference region - SUVR of GAAIN cerebellum grey matter normalized by GAAIN whole cerebellum |
|
Number |
|
|
|
PET |
Amyloid |
NPDKA_SUMMARY_SUVR
|
|
|
NPDKA summary cortical SUVR (volume-weighted mean of frontal, cingulate, parietal and temporal regions) normalized by NPDKA whole cerebellum; See SCAN MRI-Free Amyloid PET Methods document on LONI |
|
Number |
|
|
|
PET |
Amyloid |
NPDKA_WHOLECEREBELLUM_SUVR
|
|
|
Reference region - SUVR of NPDKA whole cerebellum normalized by NPDKA whole cerebellum |
|
Number |
|
|
|
PET |
Amyloid |
NPDKA_COMPOSITE_REF_SUVR
|
|
|
Reference region - SUVR of composite ref region (volume-weighted mean of NPDKA whole cerebellum, NPDKA brainstem and NPDKA eroded WM) normalized by NPDKA whole cerebellum |
|
Number |
|
|
|
PET |
Amyloid |
NPDKA_CEREBELLUM_CORTEX_SUVR
|
|
|
Reference region - SUVR of NPDKA cerebellum grey matter normalized by NPDKA whole cerebellum |
|
Number |
|
|
|
PET |
Amyloid |
NPDKA_ERODED_SUBCORTICALWM_SUVR
|
|
|
Reference region - SUVR of NPDKA eroded subcortical white matter normalized by NPDKA whole cerebellum; See SCAN MRI-Free Amyloid PET Methods document on LONI |
|
Number |
|
|
|
PET |
Amyloid |
BRAINSTEM_SUVR_Amyloid
|
|
|
brain-stem SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CC_ANTERIOR_SUVR_Amyloid
|
|
|
cc-anterior SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CC_CENTRAL_SUVR_Amyloid
|
|
|
cc-central SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CC_MID_ANTERIOR_SUVR_Amyloid
|
|
|
cc-mid-anterior SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CC_MID_POSTERIOR_SUVR_Amyloid
|
|
|
cc-mid-posterior SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CC_POSTERIOR_SUVR_Amyloid
|
|
|
cc-posterior SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CSF_SUVR_Amyloid
|
|
|
csf SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
VENTRICLE_3RD_SUVR_Amyloid
|
|
|
3rd-ventricle SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
VENTRICLE_4TH_SUVR_Amyloid
|
|
|
4th-ventricle SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
VENTRICLE_5TH_SUVR_Amyloid
|
|
|
5th-ventricle SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
WM_HYPOINTENSITIES_SUVR_Amyloid
|
|
|
wm-hypointensities SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
NON_WM_HYPOINTENSITIES_SUVR_Amyloid
|
|
|
non-wm-hypointensities SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_BANKSSTS_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-bankssts and ctx-rh-bankssts normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_CAUDALANTERIORCINGULATE_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-caudalanteriorcingulate and ctx-rh-caudalanteriorcingulate normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_CAUDALMIDDLEFRONTAL_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-caudalmiddlefrontal and ctx-rh-caudalmiddlefrontal normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_CUNEUS_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-cuneus and ctx-rh-cuneus normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_ENTORHINAL_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-entorhinal and ctx-rh-entorhinal normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_FRONTALPOLE_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-frontalpole and ctx-rh-frontalpole normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_FUSIFORM_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-fusiform and ctx-rh-fusiform normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_INFERIORPARIETAL_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-inferiorparietal and ctx-rh-inferiorparietal normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_INFERIORTEMPORAL_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-inferiortemporal and ctx-rh-inferiortemporal normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_INSULA_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-insula and ctx-rh-insula normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_ISTHMUSCINGULATE_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-isthmuscingulate and ctx-rh-isthmuscingulate normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LATERALOCCIPITAL_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-lateraloccipital and ctx-rh-lateraloccipital normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LATERALORBITOFRONTAL_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-lateralorbitofrontal and ctx-rh-lateralorbitofrontal normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LINGUAL_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-lingual and ctx-rh-lingual normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_MEDIALORBITOFRONTAL_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-medialorbitofrontal and ctx-rh-medialorbitofrontal normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_MIDDLETEMPORAL_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-middletemporal and ctx-rh-middletemporal normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_PARACENTRAL_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-paracentral and ctx-rh-paracentral normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_PARAHIPPOCAMPAL_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-parahippocampal and ctx-rh-parahippocampal normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_PARSOPERCULARIS_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-parsopercularis and ctx-rh-parsopercularis normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_PARSORBITALIS_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-parsorbitalis and ctx-rh-parsorbitalis normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_PARSTRIANGULARIS_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-parstriangularis and ctx-rh-parstriangularis normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_PERICALCARINE_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-pericalcarine and ctx-rh-pericalcarine normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_POSTCENTRAL_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-postcentral and ctx-rh-postcentral normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_POSTERIORCINGULATE_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-posteriorcingulate and ctx-rh-posteriorcingulate normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_PRECENTRAL_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-precentral and ctx-rh-precentral normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_PRECUNEUS_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-precuneus and ctx-rh-precuneus normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_ROSTRALANTERIORCINGULATE_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-rostralanteriorcingulate and ctx-rh-rostralanteriorcingulate normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_ROSTRALMIDDLEFRONTAL_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-rostralmiddlefrontal and ctx-rh-rostralmiddlefrontal normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_SUPERIORFRONTAL_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-superiorfrontal and ctx-rh-superiorfrontal normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_SUPERIORPARIETAL_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-superiorparietal and ctx-rh-superiorparietal normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_SUPERIORTEMPORAL_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-superiortemporal and ctx-rh-superiortemporal normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_SUPRAMARGINAL_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-supramarginal and ctx-rh-supramarginal normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_TEMPORALPOLE_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-temporalpole and ctx-rh-temporalpole normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_TRANSVERSETEMPORAL_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of ctx-lh-transversetemporal and ctx-rh-transversetemporal normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
ACCUMBENS_AREA_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of left-accumbens-area and right-accumbens-area normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
AMYGDALA_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of left-amygdala and right-amygdala normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CAUDATE_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of left-caudate and right-caudate normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CEREBELLUM_WHITE_MATTER_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of left-cerebellum-white-matter and right-cerebellum-white-matter normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CEREBRAL_WHITE_MATTER_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of left-cerebral-white-matter and right-cerebral-white-matter normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CHOROID_PLEXUS_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of left-choroid-plexus and right-choroid-plexus normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
HIPPOCAMPUS_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of left-hippocampus and right-hippocampus normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
OPTIC_CHIASM_SUVR_Amyloid
|
|
|
optic-chiasm SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
INF_LAT_VENT_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of left-inf-lat-vent and right-inf-lat-vent normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
LATERAL_VENTRICLE_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of left-lateral-ventricle and right-lateral-ventricle normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
PALLIDUM_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of left-pallidum and right-pallidum normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
PUTAMEN_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of left-putamen and right-putamen normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
THALAMUS_PROPER_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of left-thalamus-proper and right-thalamus-proper normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
VENTRALDC_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of left-ventraldc and right-ventraldc normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
VESSEL_SUVR_Amyloid
|
|
|
Volume-weighted mean SUVR of left-vessel and right-vessel normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_BANKSSTS_SUVR_Amyloid
|
|
|
ctx-lh-bankssts SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_CAUDALANTERIORCINGULATE_SUVR_Amyloid
|
|
|
ctx-lh-caudalanteriorcingulate SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_CAUDALMIDDLEFRONTAL_SUVR_Amyloid
|
|
|
ctx-lh-caudalmiddlefrontal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_CUNEUS_SUVR_Amyloid
|
|
|
ctx-lh-cuneus SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_ENTORHINAL_SUVR_Amyloid
|
|
|
ctx-lh-entorhinal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_FRONTALPOLE_SUVR_Amyloid
|
|
|
ctx-lh-frontalpole SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_FUSIFORM_SUVR_Amyloid
|
|
|
ctx-lh-fusiform SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_INFERIORPARIETAL_SUVR_Amyloid
|
|
|
ctx-lh-inferiorparietal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_INFERIORTEMPORAL_SUVR_Amyloid
|
|
|
ctx-lh-inferiortemporal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_INSULA_SUVR_Amyloid
|
|
|
ctx-lh-insula SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_ISTHMUSCINGULATE_SUVR_Amyloid
|
|
|
ctx-lh-isthmuscingulate SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_LATERALOCCIPITAL_SUVR_Amyloid
|
|
|
ctx-lh-lateraloccipital SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_LATERALORBITOFRONTAL_SUVR_Amyloid
|
|
|
ctx-lh-lateralorbitofrontal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_LINGUAL_SUVR_Amyloid
|
|
|
ctx-lh-lingual SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_MEDIALORBITOFRONTAL_SUVR_Amyloid
|
|
|
ctx-lh-medialorbitofrontal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_MIDDLETEMPORAL_SUVR_Amyloid
|
|
|
ctx-lh-middletemporal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_PARACENTRAL_SUVR_Amyloid
|
|
|
ctx-lh-paracentral SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_PARAHIPPOCAMPAL_SUVR_Amyloid
|
|
|
ctx-lh-parahippocampal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_PARSOPERCULARIS_SUVR_Amyloid
|
|
|
ctx-lh-parsopercularis SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_PARSORBITALIS_SUVR_Amyloid
|
|
|
ctx-lh-parsorbitalis SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_PARSTRIANGULARIS_SUVR_Amyloid
|
|
|
ctx-lh-parstriangularis SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_PERICALCARINE_SUVR_Amyloid
|
|
|
ctx-lh-pericalcarine SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_POSTCENTRAL_SUVR_Amyloid
|
|
|
ctx-lh-postcentral SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_POSTERIORCINGULATE_SUVR_Amyloid
|
|
|
ctx-lh-posteriorcingulate SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_PRECENTRAL_SUVR_Amyloid
|
|
|
ctx-lh-precentral SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_PRECUNEUS_SUVR_Amyloid
|
|
|
ctx-lh-precuneus SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_ROSTRALANTERIORCINGULATE_SUVR_Amyloid
|
|
|
ctx-lh-rostralanteriorcingulate SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_ROSTRALMIDDLEFRONTAL_SUVR_Amyloid
|
|
|
ctx-lh-rostralmiddlefrontal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_SUPERIORFRONTAL_SUVR_Amyloid
|
|
|
ctx-lh-superiorfrontal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_SUPERIORPARIETAL_SUVR_Amyloid
|
|
|
ctx-lh-superiorparietal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_SUPERIORTEMPORAL_SUVR_Amyloid
|
|
|
ctx-lh-superiortemporal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_SUPRAMARGINAL_SUVR_Amyloid
|
|
|
ctx-lh-supramarginal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_TEMPORALPOLE_SUVR_Amyloid
|
|
|
ctx-lh-temporalpole SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_LH_TRANSVERSETEMPORAL_SUVR_Amyloid
|
|
|
ctx-lh-transversetemporal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_BANKSSTS_SUVR_Amyloid
|
|
|
ctx-rh-bankssts SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_CAUDALANTERIORCINGULATE_SUVR_Amyloid
|
|
|
ctx-rh-caudalanteriorcingulate SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_CAUDALMIDDLEFRONTAL_SUVR_Amyloid
|
|
|
ctx-rh-caudalmiddlefrontal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_CUNEUS_SUVR_Amyloid
|
|
|
ctx-rh-cuneus SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_ENTORHINAL_SUVR_Amyloid
|
|
|
ctx-rh-entorhinal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_FRONTALPOLE_SUVR_Amyloid
|
|
|
ctx-rh-frontalpole SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_FUSIFORM_SUVR_Amyloid
|
|
|
ctx-rh-fusiform SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_INFERIORPARIETAL_SUVR_Amyloid
|
|
|
ctx-rh-inferiorparietal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_INFERIORTEMPORAL_SUVR_Amyloid
|
|
|
ctx-rh-inferiortemporal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_INSULA_SUVR_Amyloid
|
|
|
ctx-rh-insula SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_ISTHMUSCINGULATE_SUVR_Amyloid
|
|
|
ctx-rh-isthmuscingulate SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_LATERALOCCIPITAL_SUVR_Amyloid
|
|
|
ctx-rh-lateraloccipital SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_LATERALORBITOFRONTAL_SUVR_Amyloid
|
|
|
ctx-rh-lateralorbitofrontal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_LINGUAL_SUVR_Amyloid
|
|
|
ctx-rh-lingual SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_MEDIALORBITOFRONTAL_SUVR_Amyloid
|
|
|
ctx-rh-medialorbitofrontal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_MIDDLETEMPORAL_SUVR_Amyloid
|
|
|
ctx-rh-middletemporal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_PARACENTRAL_SUVR_Amyloid
|
|
|
ctx-rh-paracentral SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_PARAHIPPOCAMPAL_SUVR_Amyloid
|
|
|
ctx-rh-parahippocampal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_PARSOPERCULARIS_SUVR_Amyloid
|
|
|
ctx-rh-parsopercularis SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_PARSORBITALIS_SUVR_Amyloid
|
|
|
ctx-rh-parsorbitalis SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_PARSTRIANGULARIS_SUVR_Amyloid
|
|
|
ctx-rh-parstriangularis SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_PERICALCARINE_SUVR_Amyloid
|
|
|
ctx-rh-pericalcarine SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_POSTCENTRAL_SUVR_Amyloid
|
|
|
ctx-rh-postcentral SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_POSTERIORCINGULATE_SUVR_Amyloid
|
|
|
ctx-rh-posteriorcingulate SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_PRECENTRAL_SUVR_Amyloid
|
|
|
ctx-rh-precentral SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_PRECUNEUS_SUVR_Amyloid
|
|
|
ctx-rh-precuneus SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_ROSTRALANTERIORCINGULATE_SUVR_Amyloid
|
|
|
ctx-rh-rostralanteriorcingulate SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_ROSTRALMIDDLEFRONTAL_SUVR_Amyloid
|
|
|
ctx-rh-rostralmiddlefrontal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_SUPERIORFRONTAL_SUVR_Amyloid
|
|
|
ctx-rh-superiorfrontal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_SUPERIORPARIETAL_SUVR_Amyloid
|
|
|
ctx-rh-superiorparietal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_SUPERIORTEMPORAL_SUVR_Amyloid
|
|
|
ctx-rh-superiortemporal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_SUPRAMARGINAL_SUVR_Amyloid
|
|
|
ctx-rh-supramarginal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_TEMPORALPOLE_SUVR_Amyloid
|
|
|
ctx-rh-temporalpole SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
CTX_RH_TRANSVERSETEMPORAL_SUVR_Amyloid
|
|
|
ctx-rh-transversetemporal SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
LEFT_ACCUMBENS_AREA_SUVR_Amyloid
|
|
|
left-accumbens-area SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
LEFT_AMYGDALA_SUVR_Amyloid
|
|
|
left-amygdala SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
LEFT_CAUDATE_SUVR_Amyloid
|
|
|
left-caudate SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
LEFT_CEREBELLUM_CORTEX_SUVR_Amyloid
|
|
|
left-cerebellum-cortex SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
LEFT_CEREBELLUM_WHITE_MATTER_SUVR_Amyloid
|
|
|
left-cerebellum-white-matter SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
LEFT_CEREBRAL_WHITE_MATTER_SUVR_Amyloid
|
|
|
left-cerebral-white-matter SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
LEFT_CHOROID_PLEXUS_SUVR_Amyloid
|
|
|
left-choroid-plexus SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
LEFT_HIPPOCAMPUS_SUVR_Amyloid
|
|
|
left-hippocampus SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
LEFT_INF_LAT_VENT_SUVR_Amyloid
|
|
|
left-inf-lat-vent SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
LEFT_LATERAL_VENTRICLE_SUVR_Amyloid
|
|
|
left-lateral-ventricle SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
LEFT_PALLIDUM_SUVR_Amyloid
|
|
|
left-pallidum SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
LEFT_PUTAMEN_SUVR_Amyloid
|
|
|
left-putamen SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
LEFT_THALAMUS_PROPER_SUVR_Amyloid
|
|
|
left-thalamus-proper SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
LEFT_VENTRALDC_SUVR_Amyloid
|
|
|
left-ventraldc SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
LEFT_VESSEL_SUVR_Amyloid
|
|
|
left-vessel SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
RIGHT_ACCUMBENS_AREA_SUVR_Amyloid
|
|
|
right-accumbens-area SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
RIGHT_AMYGDALA_SUVR_Amyloid
|
|
|
right-amygdala SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
RIGHT_CAUDATE_SUVR_Amyloid
|
|
|
right-caudate SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
RIGHT_CEREBELLUM_CORTEX_SUVR_Amyloid
|
|
|
right-cerebellum-cortex SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
RIGHT_CEREBELLUM_WHITE_MATTER_SUVR_Amyloid
|
|
|
right-cerebellum-white-matter SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
RIGHT_CEREBRAL_WHITE_MATTER_SUVR_Amyloid
|
|
|
right-cerebral-white-matter SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
RIGHT_CHOROID_PLEXUS_SUVR_Amyloid
|
|
|
right-choroid-plexus SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
RIGHT_HIPPOCAMPUS_SUVR_Amyloid
|
|
|
right-hippocampus SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
RIGHT_INF_LAT_VENT_SUVR_Amyloid
|
|
|
right-inf-lat-vent SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
RIGHT_LATERAL_VENTRICLE_SUVR_Amyloid
|
|
|
right-lateral-ventricle SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
RIGHT_PALLIDUM_SUVR_Amyloid
|
|
|
right-pallidum SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
RIGHT_PUTAMEN_SUVR_Amyloid
|
|
|
right-putamen SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
RIGHT_THALAMUS_PROPER_SUVR_Amyloid
|
|
|
right-thalamus-proper SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
RIGHT_VENTRALDC_SUVR_Amyloid
|
|
|
right-ventraldc SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Amyloid |
RIGHT_VESSEL_SUVR_Amyloid
|
|
|
right-vessel SUVR normalized by whole cerebellum; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
PHC_TRACER_Tau
|
|
|
PET Radiotracer |
|
String |
|
|
|
PET |
Tau |
PHC_QC_IMAGE_Tau
|
|
|
Determination if scan passed or failed quality control-- image quality |
|
String |
|
|
Level |
Label |
0 |
Fail |
1 |
Pass |
2 |
Pending |
|
PET |
Tau |
PHC_QC_TIMING_Tau
|
|
|
Determination if scan passed or failed quality control-- acquisition time |
|
String |
|
|
Level |
Label |
0 |
Fail |
1 |
Pass |
2 |
Pending |
|
PET |
Tau |
PHC_INJECTED_DOSE_Tau
|
|
|
Measure of injected radioligand dose |
millicurie |
Number |
|
|
|
PET |
Tau |
PHC_B12pos
|
|
|
Threshold-based tau-positivity in B1/B2region |
|
String |
|
|
Level |
Label |
0 |
Negative |
1 |
Positive |
|
PET |
Tau |
PHC_B3pos
|
|
|
Threshold-based tau-positivity in B3 region |
|
String |
|
|
Level |
Label |
0 |
Negative |
1 |
Positive |
|
PET |
Tau |
PHC_B4pos
|
|
|
Threshold-based tau-positivity in B4 region |
|
String |
|
|
Level |
Label |
0 |
Negative |
1 |
Positive |
|
PET |
Tau |
PHC_B5pos
|
|
|
Threshold-based tau-positivity in B5 region |
|
String |
|
|
Level |
Label |
0 |
Negative |
1 |
Positive |
|
PET |
Tau |
PHC_B6pos
|
|
|
Threshold-based tau-positivity in B6 region |
|
String |
|
|
Level |
Label |
0 |
Negative |
1 |
Positive |
|
PET |
Tau |
PHC_HIBRAAKpos
|
|
|
Hierarchical Braak positivity |
|
String |
|
|
|
PET |
Tau |
B12_SUVR
|
|
|
SUVR of B1/B2 normalized by NPDKA inferior cerebellum |
|
Number |
|
|
|
PET |
Tau |
B3_SUVR
|
|
|
SUVR of B3 normalized by NPDKA inferior cerebellum |
|
Number |
|
|
|
PET |
Tau |
B4_SUVR
|
|
|
SUVR of B4 normalized by NPDKA inferior cerebellum |
|
Number |
|
|
|
PET |
Tau |
B5_SUVR
|
|
|
SUVR of B5 normalized by NPDKA inferior cerebellum |
|
Number |
|
|
|
PET |
Tau |
B6_SUVR
|
|
|
SUVR of B6 normalized by NPDKA inferior cerebellum |
|
Number |
|
|
|
PET |
Tau |
META_TEMPORAL_SUVR
|
|
|
Meta temporal SUVR normalized by inferior cerebellar grey matter. |
|
Number |
|
|
|
PET |
Tau |
CTX_ENTORHINAL_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-entorhinal and ctx-rh-entorhinal normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
INFERIORCEREBELLUM_SUVR
|
|
|
Reference region - SUVR of NPDKA inferior cerebellar grey matter; See SCAN MRI-Free Tau PET methods document on LONI |
|
Number |
|
|
|
PET |
Tau |
ERODED_SUBCORTICALWM_SUVR
|
|
|
Reference region - SUVR of NPDKA eroded subcortical white matter normalized by NPDKA inferior cerebellar grey matter; See SCAN MRI-Free Tau PET Methods document on LONI |
|
Number |
|
|
|
PET |
Tau |
BRAINSTEM_SUVR_Tau
|
|
|
brain-stem SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CC_ANTERIOR_SUVR_Tau
|
|
|
cc-anterior SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CC_CENTRAL_SUVR_Tau
|
|
|
cc-central SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CC_MID_ANTERIOR_SUVR_Tau
|
|
|
cc-mid-anterior SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CC_MID_POSTERIOR_SUVR_Tau
|
|
|
cc-mid-posterior SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CC_POSTERIOR_SUVR_Tau
|
|
|
cc-posterior SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CSF_SUVR_Tau
|
|
|
csf SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
VENTRICLE_3RD_SUVR_Tau
|
|
|
3rd-ventricle SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
VENTRICLE_4TH_SUVR_Tau
|
|
|
4th-ventricle SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
VENTRICLE_5TH_SUVR_Tau
|
|
|
5th-ventricle SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
WM_HYPOINTENSITIES_SUVR_Tau
|
|
|
wm-hypointensities SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
NON_WM_HYPOINTENSITIES_SUVR_Tau
|
|
|
non-wm-hypointensities SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_BANKSSTS_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-bankssts and ctx-rh-bankssts normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_CAUDALANTERIORCINGULATE_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-caudalanteriorcingulate and ctx-rh-caudalanteriorcingulate normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_CAUDALMIDDLEFRONTAL_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-caudalmiddlefrontal and ctx-rh-caudalmiddlefrontal normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_CUNEUS_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-cuneus and ctx-rh-cuneus normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_FRONTALPOLE_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-frontalpole and ctx-rh-frontalpole normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_FUSIFORM_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-fusiform and ctx-rh-fusiform normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_INFERIORPARIETAL_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-inferiorparietal and ctx-rh-inferiorparietal normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_INFERIORTEMPORAL_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-inferiortemporal and ctx-rh-inferiortemporal normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_INSULA_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-insula and ctx-rh-insula normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_ISTHMUSCINGULATE_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-isthmuscingulate and ctx-rh-isthmuscingulate normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LATERALOCCIPITAL_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-lateraloccipital and ctx-rh-lateraloccipital normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LATERALORBITOFRONTAL_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-lateralorbitofrontal and ctx-rh-lateralorbitofrontal normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LINGUAL_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-lingual and ctx-rh-lingual normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_MEDIALORBITOFRONTAL_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-medialorbitofrontal and ctx-rh-medialorbitofrontal normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_MIDDLETEMPORAL_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-middletemporal and ctx-rh-middletemporal normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_PARACENTRAL_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-paracentral and ctx-rh-paracentral normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_PARAHIPPOCAMPAL_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-parahippocampal and ctx-rh-parahippocampal normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_PARSOPERCULARIS_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-parsopercularis and ctx-rh-parsopercularis normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_PARSORBITALIS_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-parsorbitalis and ctx-rh-parsorbitalis normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_PARSTRIANGULARIS_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-parstriangularis and ctx-rh-parstriangularis normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_PERICALCARINE_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-pericalcarine and ctx-rh-pericalcarine normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_POSTCENTRAL_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-postcentral and ctx-rh-postcentral normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_POSTERIORCINGULATE_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-posteriorcingulate and ctx-rh-posteriorcingulate normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_PRECENTRAL_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-precentral and ctx-rh-precentral normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_PRECUNEUS_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-precuneus and ctx-rh-precuneus normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_ROSTRALANTERIORCINGULATE_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-rostralanteriorcingulate and ctx-rh-rostralanteriorcingulate normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_ROSTRALMIDDLEFRONTAL_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-rostralmiddlefrontal and ctx-rh-rostralmiddlefrontal normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_SUPERIORFRONTAL_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-superiorfrontal and ctx-rh-superiorfrontal normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_SUPERIORPARIETAL_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-superiorparietal and ctx-rh-superiorparietal normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_SUPERIORTEMPORAL_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-superiortemporal and ctx-rh-superiortemporal normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_SUPRAMARGINAL_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-supramarginal and ctx-rh-supramarginal normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_TEMPORALPOLE_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-temporalpole and ctx-rh-temporalpole normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_TRANSVERSETEMPORAL_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of ctx-lh-transversetemporal and ctx-rh-transversetemporal normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
ACCUMBENS_AREA_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of left-accumbens-area and right-accumbens-area normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
AMYGDALA_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of left-amygdala and right-amygdala normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CAUDATE_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of left-caudate and right-caudate normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CEREBELLUM_CORTEX_SUVR
|
|
|
Volume-weighted mean SUVR of left-cerebellum-cortex and right-cerebellum-cortex normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CEREBELLUM_WHITE_MATTER_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of left-cerebellum-white-matter and right-cerebellum-white-matter normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CEREBRAL_WHITE_MATTER_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of left-cerebral-white-matter and right-cerebral-white-matter normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CHOROID_PLEXUS_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of left-choroid-plexus and right-choroid-plexus normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
HIPPOCAMPUS_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of left-hippocampus and right-hippocampus normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
OPTIC_CHIASM_SUVR_Tau
|
|
|
optic-chiasm SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
INF_LAT_VENT_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of left-inf-lat-vent and right-inf-lat-vent normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
LATERAL_VENTRICLE_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of left-lateral-ventricle and right-lateral-ventricle normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
PALLIDUM_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of left-pallidum and right-pallidum normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
PUTAMEN_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of left-putamen and right-putamen normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
THALAMUS_PROPER_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of left-thalamus-proper and right-thalamus-proper normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
VENTRALDC_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of left-ventraldc and right-ventraldc normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
VESSEL_SUVR_Tau
|
|
|
Volume-weighted mean SUVR of left-vessel and right-vessel normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_BANKSSTS_SUVR_Tau
|
|
|
ctx-lh-bankssts SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_CAUDALANTERIORCINGULATE_SUVR_Tau
|
|
|
ctx-lh-caudalanteriorcingulate SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_CAUDALMIDDLEFRONTAL_SUVR_Tau
|
|
|
ctx-lh-caudalmiddlefrontal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_CUNEUS_SUVR_Tau
|
|
|
ctx-lh-cuneus SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_ENTORHINAL_SUVR_Tau
|
|
|
ctx-lh-entorhinal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_FRONTALPOLE_SUVR_Tau
|
|
|
ctx-lh-frontalpole SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_FUSIFORM_SUVR_Tau
|
|
|
ctx-lh-fusiform SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_INFERIORPARIETAL_SUVR_Tau
|
|
|
ctx-lh-inferiorparietal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_INFERIORTEMPORAL_SUVR_Tau
|
|
|
ctx-lh-inferiortemporal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_INSULA_SUVR_Tau
|
|
|
ctx-lh-insula SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_ISTHMUSCINGULATE_SUVR_Tau
|
|
|
ctx-lh-isthmuscingulate SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_LATERALOCCIPITAL_SUVR_Tau
|
|
|
ctx-lh-lateraloccipital SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_LATERALORBITOFRONTAL_SUVR_Tau
|
|
|
ctx-lh-lateralorbitofrontal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_LINGUAL_SUVR_Tau
|
|
|
ctx-lh-lingual SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_MEDIALORBITOFRONTAL_SUVR_Tau
|
|
|
ctx-lh-medialorbitofrontal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_MIDDLETEMPORAL_SUVR_Tau
|
|
|
ctx-lh-middletemporal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_PARACENTRAL_SUVR_Tau
|
|
|
ctx-lh-paracentral SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_PARAHIPPOCAMPAL_SUVR_Tau
|
|
|
ctx-lh-parahippocampal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_PARSOPERCULARIS_SUVR_Tau
|
|
|
ctx-lh-parsopercularis SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_PARSORBITALIS_SUVR_Tau
|
|
|
ctx-lh-parsorbitalis SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_PARSTRIANGULARIS_SUVR_Tau
|
|
|
ctx-lh-parstriangularis SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_PERICALCARINE_SUVR_Tau
|
|
|
ctx-lh-pericalcarine SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_POSTCENTRAL_SUVR_Tau
|
|
|
ctx-lh-postcentral SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_POSTERIORCINGULATE_SUVR_Tau
|
|
|
ctx-lh-posteriorcingulate SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_PRECENTRAL_SUVR_Tau
|
|
|
ctx-lh-precentral SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_PRECUNEUS_SUVR_Tau
|
|
|
ctx-lh-precuneus SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_ROSTRALANTERIORCINGULATE_SUVR_Tau
|
|
|
ctx-lh-rostralanteriorcingulate SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_ROSTRALMIDDLEFRONTAL_SUVR_Tau
|
|
|
ctx-lh-rostralmiddlefrontal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_SUPERIORFRONTAL_SUVR_Tau
|
|
|
ctx-lh-superiorfrontal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_SUPERIORPARIETAL_SUVR_Tau
|
|
|
ctx-lh-superiorparietal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_SUPERIORTEMPORAL_SUVR_Tau
|
|
|
ctx-lh-superiortemporal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_SUPRAMARGINAL_SUVR_Tau
|
|
|
ctx-lh-supramarginal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_TEMPORALPOLE_SUVR_Tau
|
|
|
ctx-lh-temporalpole SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_LH_TRANSVERSETEMPORAL_SUVR_Tau
|
|
|
ctx-lh-transversetemporal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_BANKSSTS_SUVR_Tau
|
|
|
ctx-rh-bankssts SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_CAUDALANTERIORCINGULATE_SUVR_Tau
|
|
|
ctx-rh-caudalanteriorcingulate SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_CAUDALMIDDLEFRONTAL_SUVR_Tau
|
|
|
ctx-rh-caudalmiddlefrontal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_CUNEUS_SUVR_Tau
|
|
|
ctx-rh-cuneus SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_ENTORHINAL_SUVR_Tau
|
|
|
ctx-rh-entorhinal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_FRONTALPOLE_SUVR_Tau
|
|
|
ctx-rh-frontalpole SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_FUSIFORM_SUVR_Tau
|
|
|
ctx-rh-fusiform SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_INFERIORPARIETAL_SUVR_Tau
|
|
|
ctx-rh-inferiorparietal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_INFERIORTEMPORAL_SUVR_Tau
|
|
|
ctx-rh-inferiortemporal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_INSULA_SUVR_Tau
|
|
|
ctx-rh-insula SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_ISTHMUSCINGULATE_SUVR_Tau
|
|
|
ctx-rh-isthmuscingulate SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_LATERALOCCIPITAL_SUVR_Tau
|
|
|
ctx-rh-lateraloccipital SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_LATERALORBITOFRONTAL_SUVR_Tau
|
|
|
ctx-rh-lateralorbitofrontal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_LINGUAL_SUVR_Tau
|
|
|
ctx-rh-lingual SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_MEDIALORBITOFRONTAL_SUVR_Tau
|
|
|
ctx-rh-medialorbitofrontal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_MIDDLETEMPORAL_SUVR_Tau
|
|
|
ctx-rh-middletemporal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_PARACENTRAL_SUVR_Tau
|
|
|
ctx-rh-paracentral SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_PARAHIPPOCAMPAL_SUVR_Tau
|
|
|
ctx-rh-parahippocampal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_PARSOPERCULARIS_SUVR_Tau
|
|
|
ctx-rh-parsopercularis SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_PARSORBITALIS_SUVR_Tau
|
|
|
ctx-rh-parsorbitalis SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_PARSTRIANGULARIS_SUVR_Tau
|
|
|
ctx-rh-parstriangularis SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_PERICALCARINE_SUVR_Tau
|
|
|
ctx-rh-pericalcarine SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_POSTCENTRAL_SUVR_Tau
|
|
|
ctx-rh-postcentral SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_POSTERIORCINGULATE_SUVR_Tau
|
|
|
ctx-rh-posteriorcingulate SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_PRECENTRAL_SUVR_Tau
|
|
|
ctx-rh-precentral SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_PRECUNEUS_SUVR_Tau
|
|
|
ctx-rh-precuneus SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_ROSTRALANTERIORCINGULATE_SUVR_Tau
|
|
|
ctx-rh-rostralanteriorcingulate SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_ROSTRALMIDDLEFRONTAL_SUVR_Tau
|
|
|
ctx-rh-rostralmiddlefrontal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_SUPERIORFRONTAL_SUVR_Tau
|
|
|
ctx-rh-superiorfrontal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_SUPERIORPARIETAL_SUVR_Tau
|
|
|
ctx-rh-superiorparietal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_SUPERIORTEMPORAL_SUVR_Tau
|
|
|
ctx-rh-superiortemporal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_SUPRAMARGINAL_SUVR_Tau
|
|
|
ctx-rh-supramarginal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_TEMPORALPOLE_SUVR_Tau
|
|
|
ctx-rh-temporalpole SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
CTX_RH_TRANSVERSETEMPORAL_SUVR_Tau
|
|
|
ctx-rh-transversetemporal SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
LEFT_ACCUMBENS_AREA_SUVR_Tau
|
|
|
left-accumbens-area SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
LEFT_AMYGDALA_SUVR_Tau
|
|
|
left-amygdala SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
LEFT_CAUDATE_SUVR_Tau
|
|
|
left-caudate SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
LEFT_CEREBELLUM_CORTEX_SUVR_Tau
|
|
|
left-cerebellum-cortex SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
LEFT_CEREBELLUM_WHITE_MATTER_SUVR_Tau
|
|
|
left-cerebellum-white-matter SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
LEFT_CEREBRAL_WHITE_MATTER_SUVR_Tau
|
|
|
left-cerebral-white-matter SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
LEFT_CHOROID_PLEXUS_SUVR_Tau
|
|
|
left-choroid-plexus SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
LEFT_HIPPOCAMPUS_SUVR_Tau
|
|
|
left-hippocampus SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
LEFT_INF_LAT_VENT_SUVR_Tau
|
|
|
left-inf-lat-vent SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
LEFT_LATERAL_VENTRICLE_SUVR_Tau
|
|
|
left-lateral-ventricle SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
LEFT_PALLIDUM_SUVR_Tau
|
|
|
left-pallidum SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
LEFT_PUTAMEN_SUVR_Tau
|
|
|
left-putamen SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
LEFT_THALAMUS_PROPER_SUVR_Tau
|
|
|
left-thalamus-proper SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
LEFT_VENTRALDC_SUVR_Tau
|
|
|
left-ventraldc SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
LEFT_VESSEL_SUVR_Tau
|
|
|
left-vessel SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
RIGHT_ACCUMBENS_AREA_SUVR_Tau
|
|
|
right-accumbens-area SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
RIGHT_AMYGDALA_SUVR_Tau
|
|
|
right-amygdala SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
RIGHT_CAUDATE_SUVR_Tau
|
|
|
right-caudate SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
RIGHT_CEREBELLUM_CORTEX_SUVR_Tau
|
|
|
right-cerebellum-cortex SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
RIGHT_CEREBELLUM_WHITE_MATTER_SUVR_Tau
|
|
|
right-cerebellum-white-matter SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
RIGHT_CEREBRAL_WHITE_MATTER_SUVR_Tau
|
|
|
right-cerebral-white-matter SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
RIGHT_CHOROID_PLEXUS_SUVR_Tau
|
|
|
right-choroid-plexus SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
RIGHT_HIPPOCAMPUS_SUVR_Tau
|
|
|
right-hippocampus SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
RIGHT_INF_LAT_VENT_SUVR_Tau
|
|
|
right-inf-lat-vent SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
RIGHT_LATERAL_VENTRICLE_SUVR_Tau
|
|
|
right-lateral-ventricle SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
RIGHT_PALLIDUM_SUVR_Tau
|
|
|
right-pallidum SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
RIGHT_PUTAMEN_SUVR_Tau
|
|
|
right-putamen SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
RIGHT_THALAMUS_PROPER_SUVR_Tau
|
|
|
right-thalamus-proper SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
RIGHT_VENTRALDC_SUVR_Tau
|
|
|
right-ventraldc SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
PET |
Tau |
RIGHT_VESSEL_SUVR_Tau
|
|
|
right-vessel SUVR normalized by inferior cerebellar grey matter; ROI volume is provided in MRI-Free NPDKA Appendix CSV on LONI |
|
Number |
|
|
|
MRI |
FLAIR |
CNR_WM
|
|
|
Contrast-to-noise ratio for total white matter |
|
Number |
|
|
|
MRI |
FLAIR |
SNR_WM
|
|
|
Signal-to-noise ratio for total white matter |
|
Number |
|
|
|
MRI |
FLAIR |
CNR_GM
|
|
|
Contrast-to-noise ratio for total gray matter |
|
Number |
|
|
|
MRI |
FLAIR |
SNR_GM
|
|
|
Signal-to-noise ratio for total gray matter |
|
Number |
|
|
|
MRI |
FLAIR |
Contrast_WM_GM
|
|
|
Measure of the contrast difference between white matter and gray matter in the MRI scan. |
|
Number |
|
|
|
MRI |
FLAIR |
PHC_WMHVOL_Harmonized
|
|
|
Total volume of white matter hyperintensities (WMH) in the brain, measured in cubic centimeters harmonized across studies using standard Combat method |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
X3rd_Ventricle_combat
|
|
|
3rd ventricle volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
X4th_Ventricle_combat
|
|
|
4th ventricle volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Brain_Stem_combat
|
|
|
Brainstem volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
BrainSegVol_to_eTIV_combat
|
|
|
Ratio of total brain segmentation volume to ICV harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
BrainSegVol_combat
|
|
|
Segmented brain volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
BrainSegVolNotVentSurf_combat
|
|
|
Surface size of the segmented brain volume excluding ventricles harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
CC_Anterior_combat
|
|
|
Anterior corpus collosum volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
CC_Central_combat
|
|
|
Central corpus collosum volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
CC_Mid_Anterior_combat
|
|
|
Mid-anterior corpus collosum volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
CC_Mid_Posterior_combat
|
|
|
Mid-posterior corpus collosum volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
CC_Posterior_combat
|
|
|
Posterior corpus collosum volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
CerebralWhiteMatterVol_combat
|
|
|
Total cerebral cortex white matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
CortexVol_combat
|
|
|
Total cerebral cortex grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
CSF_combat
|
|
|
CSF volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
EstimatedTotalIntraCranialVol_combat
|
|
|
Total intracranial volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Left_Accumbens_area_combat
|
|
|
Left accumbens volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Left_Amygdala_combat
|
|
|
Left amygdala volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Left_Caudate_combat
|
|
|
Left caudate volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Left_Cerebellum_Cortex_combat
|
|
|
Left cerebellar cortex volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Left_Cerebellum_White_Matter_combat
|
|
|
Left cerebellar white matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Left_choroid_plexus_combat
|
|
|
Left choroid plexus volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Left_Hippocampus_combat
|
|
|
Left hippocampus volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Left_Inf_Lat_Vent_combat
|
|
|
Left inferior lateral ventricle volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Left_Lateral_Ventricle_combat
|
|
|
Left lateral ventricle volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Left_Pallidum_combat
|
|
|
Left pallidum volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Left_Putamen_combat
|
|
|
Left putamen volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Left_Thalamus_Proper_combat
|
|
|
Left thalamus volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Left_VentralDC_combat
|
|
|
Left ventral DC volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_bankssts_thickness_combat
|
|
|
Left banks of the superior temporal sulcus thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_bankssts_volume_combat
|
|
|
Left banks of the superior temporal sulcus grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_caudalanteriorcingulate_thickness_combat
|
|
|
Left caudal anterior cingulate thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_caudalanteriorcingulate_volume_combat
|
|
|
Left caudal anterior cingulate grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_caudalmiddlefrontal_thickness_combat
|
|
|
Left caudal middle frontal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_caudalmiddlefrontal_volume_combat
|
|
|
Left caudal middle frontal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_cuneus_thickness_combat
|
|
|
Left cuneus thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_cuneus_volume_combat
|
|
|
Left cuneus grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_entorhinal_thickness_combat
|
|
|
Left entorhinal cortex thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_entorhinal_volume_combat
|
|
|
Left entorhinal cortex grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_frontalpole_thickness_combat
|
|
|
Left frontal pole thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_frontalpole_volume_combat
|
|
|
Left frontal pole grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_fusiform_thickness_combat
|
|
|
Left fusiform gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_fusiform_volume_combat
|
|
|
Left fusiform gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_inferiorparietal_thickness_combat
|
|
|
Left inferior parietal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_inferiorparietal_volume_combat
|
|
|
Left inferior parietal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_inferiortemporal_thickness_combat
|
|
|
Left inferior temporal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_inferiortemporal_volume_combat
|
|
|
Left inferior temporal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_insula_thickness_combat
|
|
|
Left insula thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_insula_volume_combat
|
|
|
Left insula grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_isthmuscingulate_thickness_combat
|
|
|
Left isthmus cingulate thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_isthmuscingulate_volume_combat
|
|
|
Left isthmus cingulate grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_lateraloccipital_thickness_combat
|
|
|
Left lateral occipital gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_lateraloccipital_volume_combat
|
|
|
Left lateral occipital gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_lateralorbitofrontal_thickness_combat
|
|
|
Left lateral orbitofrontal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_lateralorbitofrontal_volume_combat
|
|
|
Left lateral orbitofrontal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_lingual_thickness_combat
|
|
|
Left lingual gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_lingual_volume_combat
|
|
|
Left lingual gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_MeanThickness_thickness_combat
|
|
|
Left mean lobar thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_medialorbitofrontal_thickness_combat
|
|
|
Left medial orbitofrontal thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_medialorbitofrontal_volume_combat
|
|
|
Left medial orbitofrontal grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_middletemporal_thickness_combat
|
|
|
Left middle temporal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_middletemporal_volume_combat
|
|
|
Left middle temporal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_paracentral_thickness_combat
|
|
|
Left paracentral lobule thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_paracentral_volume_combat
|
|
|
Left paracentral lobule grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_parahippocampal_thickness_combat
|
|
|
Left parahippocampal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_parahippocampal_volume_combat
|
|
|
Left parahippocampal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_parsopercularis_thickness_combat
|
|
|
Left pars opercularis thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_parsopercularis_volume_combat
|
|
|
Left pars opercularis grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_parsorbitalis_thickness_combat
|
|
|
Left pars orbitalis thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_parsorbitalis_volume_combat
|
|
|
Left pars orbitalis grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_parstriangularis_thickness_combat
|
|
|
Left pars triangularis thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_parstriangularis_volume_combat
|
|
|
Left pars triangularis grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_pericalcarine_thickness_combat
|
|
|
Left pericalcarine gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_pericalcarine_volume_combat
|
|
|
Left pericalcarine gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_postcentral_thickness_combat
|
|
|
Left postcentral gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_postcentral_volume_combat
|
|
|
Left postcentral gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_posteriorcingulate_thickness_combat
|
|
|
Left posterior cingulate thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_posteriorcingulate_volume_combat
|
|
|
Left posterior cingulate grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_precentral_thickness_combat
|
|
|
Left precentral gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_precentral_volume_combat
|
|
|
Left precentral gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_precuneus_thickness_combat
|
|
|
Left precuneus thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_precuneus_volume_combat
|
|
|
Left precuneus grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_rostralanteriorcingulate_thickness_combat
|
|
|
Left rostral anterior cingulate thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_rostralanteriorcingulate_volume_combat
|
|
|
Left rostral anterior cingulate grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_rostralmiddlefrontal_thickness_combat
|
|
|
Left rostral middle frontal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_rostralmiddlefrontal_volume_combat
|
|
|
Left rostral middle frontal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_superiorfrontal_thickness_combat
|
|
|
Left superior frontal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_superiorfrontal_volume_combat
|
|
|
Left superior frontal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_superiorparietal_thickness_combat
|
|
|
Left superior parietal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_superiorparietal_volume_combat
|
|
|
Left superior parietal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_superiortemporal_thickness_combat
|
|
|
Left superior temporal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_superiortemporal_volume_combat
|
|
|
Left superior temporal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_supramarginal_thickness_combat
|
|
|
Left supramarginal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_supramarginal_volume_combat
|
|
|
Left supramarginal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_temporalpole_thickness_combat
|
|
|
Left temporal pole thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_temporalpole_volume_combat
|
|
|
Left temporal pole grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_transversetemporal_thickness_combat
|
|
|
Left transverse temporal pole thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lh_transversetemporal_volume_combat
|
|
|
Left transverse temporal pole grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lhCerebralWhiteMatterVol_combat
|
|
|
Left cerebral cortex white matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
lhCortexVol_combat
|
|
|
Left cerebral cortex grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
MaskVol_to_eTIV_combat
|
|
|
Ratio of mask segmentation volume to ICV harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
MaskVol_combat
|
|
|
Mask volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Optic_Chiasm_combat
|
|
|
Optic Chiasm volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_bankssts_thickness_combat
|
|
|
Right banks of the superior temporal sulcus thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_bankssts_volume_combat
|
|
|
Right banks of the superior temporal sulcus grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_caudalanteriorcingulate_thickness_combat
|
|
|
Right caudal anterior cingulate thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_caudalanteriorcingulate_volume_combat
|
|
|
Right caudal anterior cingulate grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_caudalmiddlefrontal_thickness_combat
|
|
|
Right caudal middle frontal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_caudalmiddlefrontal_volume_combat
|
|
|
Right caudal middle frontal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_cuneus_thickness_combat
|
|
|
Right cuneus thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_cuneus_volume_combat
|
|
|
Right cuneus grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_entorhinal_thickness_combat
|
|
|
Right entorhinal cortex thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_entorhinal_volume_combat
|
|
|
Right entorhinal cortex grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_frontalpole_thickness_combat
|
|
|
Right frontal pole thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_frontalpole_volume_combat
|
|
|
Right frontal pole grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_fusiform_thickness_combat
|
|
|
Right fusiform gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_fusiform_volume_combat
|
|
|
Right fusiform gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_inferiorparietal_thickness_combat
|
|
|
Right inferior parietal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_inferiorparietal_volume_combat
|
|
|
Right inferior parietal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_inferiortemporal_thickness_combat
|
|
|
Right inferior temporal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_inferiortemporal_volume_combat
|
|
|
Right inferior temporal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_insula_thickness_combat
|
|
|
Right insula thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_insula_volume_combat
|
|
|
Right insula grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_isthmuscingulate_thickness_combat
|
|
|
Right isthmus cingulate thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_isthmuscingulate_volume_combat
|
|
|
Right isthmus cingulate grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_lateraloccipital_thickness_combat
|
|
|
Right lateral occipital gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_lateraloccipital_volume_combat
|
|
|
Right lateral occipital gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_lateralorbitofrontal_thickness_combat
|
|
|
Right lateral orbitofrontal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_lateralorbitofrontal_volume_combat
|
|
|
Right lateral orbitofrontal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_lingual_thickness_combat
|
|
|
Right lingual gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_lingual_volume_combat
|
|
|
Right lingual gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_MeanThickness_thickness_combat
|
|
|
Right mean lobar thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_medialorbitofrontal_thickness_combat
|
|
|
Right medial orbitofrontal thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_medialorbitofrontal_volume_combat
|
|
|
Right medial orbitofrontal grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_middletemporal_thickness_combat
|
|
|
Right middle temporal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_middletemporal_volume_combat
|
|
|
Right middle temporal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_paracentral_thickness_combat
|
|
|
Right paracentral lobule thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_paracentral_volume_combat
|
|
|
Right paracentral lobule grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_parahippocampal_thickness_combat
|
|
|
Right parahippocampal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_parahippocampal_volume_combat
|
|
|
Right parahippocampal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_parsopercularis_thickness_combat
|
|
|
Right pars opercularis thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_parsopercularis_volume_combat
|
|
|
Right pars opercularis grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_parsorbitalis_thickness_combat
|
|
|
Right pars orbitalis thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_parsorbitalis_volume_combat
|
|
|
Right pars orbitalis grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_parstriangularis_thickness_combat
|
|
|
Right pars triangularis thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_parstriangularis_volume_combat
|
|
|
Right pars triangularis grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_pericalcarine_thickness_combat
|
|
|
Right pericalcarine gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_pericalcarine_volume_combat
|
|
|
Right pericalcarine gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_postcentral_thickness_combat
|
|
|
Right postcentral gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_postcentral_volume_combat
|
|
|
Right postcentral gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_posteriorcingulate_thickness_combat
|
|
|
Right posterior cingulate thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_posteriorcingulate_volume_combat
|
|
|
Right posterior cingulate grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_precentral_thickness_combat
|
|
|
Right precentral gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_precentral_volume_combat
|
|
|
Right precentral gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_precuneus_thickness_combat
|
|
|
Right precuneus thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_precuneus_volume_combat
|
|
|
Right precuneus grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_rostralanteriorcingulate_thickness_combat
|
|
|
Right rostral anterior cingulate thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_rostralanteriorcingulate_volume_combat
|
|
|
Right rostral anterior cingulate grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_rostralmiddlefrontal_thickness_combat
|
|
|
Right rostral middle frontal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_rostralmiddlefrontal_volume_combat
|
|
|
Right rostral middle frontal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_superiorfrontal_thickness_combat
|
|
|
Right superior frontal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_superiorfrontal_volume_combat
|
|
|
Right superior frontal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_superiorparietal_thickness_combat
|
|
|
Right superior parietal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_superiorparietal_volume_combat
|
|
|
Right superior parietal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_superiortemporal_thickness_combat
|
|
|
Right superior temporal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_superiortemporal_volume_combat
|
|
|
Right superior temporal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_supramarginal_thickness_combat
|
|
|
Right supramarginal gyri thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_supramarginal_volume_combat
|
|
|
Right supramarginal gyri grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_temporalpole_thickness_combat
|
|
|
Right temporal pole thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_temporalpole_volume_combat
|
|
|
Right temporal pole grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_transversetemporal_thickness_combat
|
|
|
Right transverse temporal pole thickness harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rh_transversetemporal_volume_combat
|
|
|
Right transverse temporal pole grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rhCerebralWhiteMatterVol_combat
|
|
|
Right cerebral cortex white matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
rhCortexVol_combat
|
|
|
Right cerebral cortex grey matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Right_Accumbens_area_combat
|
|
|
Right accumbens volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Right_Amygdala_combat
|
|
|
Right amygdala volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Right_Caudate_combat
|
|
|
Right caudate volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Right_Cerebellum_Cortex_combat
|
|
|
Right cerebellar cortex volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Right_Cerebellum_White_Matter_combat
|
|
|
Right cerebellar white matter volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Right_choroid_plexus_combat
|
|
|
Right choroid plexus volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Right_Hippocampus_combat
|
|
|
Right hippocampus volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Right_Inf_Lat_Vent_combat
|
|
|
Right inferior lateral ventricle volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Right_Lateral_Ventricle_combat
|
|
|
Right lateral ventricle volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Right_Pallidum_combat
|
|
|
Right pallidum volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Right_Putamen_combat
|
|
|
Right putamen volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Right_Thalamus_Proper_combat
|
|
|
Right thalamus volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
Right_VentralDC_combat
|
|
|
Right ventral DC volume harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
SubCortGrayVol_combat
|
|
|
Total volume of the subcortical grey matter harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
SupraTentorialVol_combat
|
|
|
Total volume of brain (minus the cerebellum) harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
SupraTentorialVolNotVent_combat
|
|
|
Total volume of brain without ventricles (minus the cerebellum) harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
SupraTentorialVolNotVentVox_combat
|
|
|
Number of voxels of brain without ventricles (minus the cerebellum) harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
TotalGrayVol_combat
|
|
|
Total volume of all grey matter (cortical and subcortical) harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - FreeSurfer |
WM_hypointensities_combat
|
|
|
White matter hypointensities harmonized with combat |
|
Number |
Harmonized metric |
|
|
MRI |
T1 - MUSE |
PHC_DLICV
|
|
|
Deep Learning Intra Cranial Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
SPARE_AD
|
|
|
SPARE Alzheimer's Disease Score |
|
Number |
|
|
|
MRI |
T1 - MUSE |
SPARE_BA
|
|
|
SPARE Brain Age Score |
years |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_4
|
|
|
3rd Ventricle (B Hemisphere) Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_11
|
|
|
4th Ventricle (B Hemisphere) Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_23
|
|
|
Right Accumbens Area Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_30
|
|
|
Left Accumbens Area Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_31
|
|
|
Right Amygdala Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_32
|
|
|
Left Amygdala Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_35
|
|
|
Brain Stem (B Hemisphere) Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_36
|
|
|
Right Caudate Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_37
|
|
|
Left Caudate Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_38
|
|
|
Right Cerebellum Exterior Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_39
|
|
|
Left Cerebellum Exterior Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_40
|
|
|
Right Cerebellum White Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_41
|
|
|
Left Cerebellum White Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_47
|
|
|
Right Hippocampus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_48
|
|
|
Left Hippocampus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_49
|
|
|
Right Inf Lat Vent Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_50
|
|
|
Left Inf Lat Vent Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_51
|
|
|
Right Lateral Ventricle Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_52
|
|
|
Left Lateral Ventricle Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_55
|
|
|
Right Pallidum Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_56
|
|
|
Left Pallidum Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_57
|
|
|
Right Putamen Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_58
|
|
|
Left Putamen Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_59
|
|
|
Right Thalamus Proper Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_60
|
|
|
Left Thalamus Proper Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_61
|
|
|
Right Ventral DC Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_62
|
|
|
Left Ventral DC Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_71
|
|
|
Cerebellar Vermal Lobules I-V (B Hemisphere) Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_72
|
|
|
Cerebellar Vermal Lobules VI-VII (B Hemisphere) Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_73
|
|
|
Cerebellar Vermal Lobules VIII-X (B Hemisphere) Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_75
|
|
|
Left Basal Forebrain Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_76
|
|
|
Right Basal Forebrain Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_81
|
|
|
Frontal lobe WM right Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_82
|
|
|
Frontal lobe WM left Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_83
|
|
|
Occipital lobe WM right Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_84
|
|
|
Occipital lobe WM left Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_85
|
|
|
Parietal lobe WM right Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_86
|
|
|
Parietal lobe WM left Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_87
|
|
|
Temporal lobe WM right Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_88
|
|
|
Temporal lobe WM left Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_89
|
|
|
Fornix right Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_90
|
|
|
Fornix left Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_91
|
|
|
Anterior limb of internal capsule right Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_92
|
|
|
Anterior limb of internal capsule left Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_93
|
|
|
Posterior limb of internal capsule inc. cerebral peduncle right Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_94
|
|
|
Posterior limb of internal capsule inc. cerebral peduncle left Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_95
|
|
|
Corpus callosum (B Hemisphere) Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_100
|
|
|
Right ACgG - anterior cingulate gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_101
|
|
|
Left ACgG - anterior cingulate gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_102
|
|
|
Right AIns - anterior insula Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_103
|
|
|
Left AIns - anterior insula Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_104
|
|
|
Right AOrG - anterior orbital gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_105
|
|
|
Left AOrG - anterior orbital gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_106
|
|
|
Right AnG - angular gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_107
|
|
|
Left AnG - angular gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_108
|
|
|
Right Calc - calcarine cortex Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_109
|
|
|
Left Calc - calcarine cortex Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_112
|
|
|
Right CO - central operculum Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_113
|
|
|
Left CO - central operculum Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_114
|
|
|
Right Cun - cuneus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_115
|
|
|
Left Cun - cuneus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_116
|
|
|
Right Ent - entorhinal area Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_117
|
|
|
Left Ent - entorhinal area Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_118
|
|
|
Right FO - frontal operculum Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_119
|
|
|
Left FO - frontal operculum Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_120
|
|
|
Right FRP - frontal pole Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_121
|
|
|
Left FRP - frontal pole Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_122
|
|
|
Right FuG - fusiform gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_123
|
|
|
Left FuG - fusiform gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_124
|
|
|
Right GRe - gyrus rectus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_125
|
|
|
Left GRe - gyrus rectus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_128
|
|
|
Right IOG - inferior occipital gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_129
|
|
|
Left IOG - inferior occipital gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_132
|
|
|
Right ITG - inferior temporal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_133
|
|
|
Left ITG - inferior temporal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_134
|
|
|
Right LiG - lingual gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_135
|
|
|
Left LiG - lingual gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_136
|
|
|
Right LOrG - lateral orbital gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_137
|
|
|
Left LOrG - lateral orbital gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_138
|
|
|
Right MCgG - middle cingulate gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_139
|
|
|
Left MCgG - middle cingulate gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_140
|
|
|
Right MFC - medial frontal cortex Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_141
|
|
|
Left MFC - medial frontal cortex Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_142
|
|
|
Right MFG - middle frontal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_143
|
|
|
Left MFG - middle frontal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_144
|
|
|
Right MOG - middle occipital gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_145
|
|
|
Left MOG - middle occipital gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_146
|
|
|
Right MOrG - medial orbital gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_147
|
|
|
Left MOrG - medial orbital gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_148
|
|
|
Right MPoG - postcentral gyrus medial segment Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_149
|
|
|
Left MPoG - postcentral gyrus medial segment Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_150
|
|
|
Right MPrG - precentral gyrus medial segment Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_151
|
|
|
Left MPrG - precentral gyrus medial segment Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_152
|
|
|
Right MSFG - superior frontal gyrus medial segment Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_153
|
|
|
Left MSFG - superior frontal gyrus medial segment Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_154
|
|
|
Right MTG - middle temporal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_155
|
|
|
Left MTG - middle temporal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_156
|
|
|
Right OCP - occipital pole Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_157
|
|
|
Left OCP - occipital pole Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_160
|
|
|
Right OFuG - occipital fusiform gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_161
|
|
|
Left OFuG - occipital fusiform gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_162
|
|
|
Right OpIFG opercular part of the inferior frontal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_163
|
|
|
Left OpIFG opercular part of the inferior frontal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_164
|
|
|
Right OrIFG orbital part of the inferior frontal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_165
|
|
|
Left OrIFG orbital part of the inferior frontal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_166
|
|
|
Right PCgG - posterior cingulate gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_167
|
|
|
Left PCgG - posterior cingulate gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_168
|
|
|
Right PCu - precuneus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_169
|
|
|
Left PCu - precuneus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_170
|
|
|
Right PHG - parahippocampal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_171
|
|
|
Left PHG - parahippocampal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_172
|
|
|
Right PIns - posterior insula Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_173
|
|
|
Left PIns - posterior insula Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_174
|
|
|
Right PO - parietal operculum Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_175
|
|
|
Left PO - parietal operculum Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_176
|
|
|
Right PoG - postcentral gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_177
|
|
|
Left PoG - postcentral gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_178
|
|
|
Right POrG - posterior orbital gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_179
|
|
|
Left POrG - posterior orbital gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_180
|
|
|
Right PP - planum polare Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_181
|
|
|
Left PP - planum polare Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_182
|
|
|
Right PrG - precentral gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_183
|
|
|
Left PrG - precentral gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_184
|
|
|
Right PT - planum temporale Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_185
|
|
|
Left PT - planum temporale Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_186
|
|
|
Right SCA - subcallosal area Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_187
|
|
|
Left SCA - subcallosal area Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_190
|
|
|
Right SFG - superior frontal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_191
|
|
|
Left SFG - superior frontal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_192
|
|
|
Right SMC - supplementary motor cortex Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_193
|
|
|
Left SMC - supplementary motor cortex Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_194
|
|
|
Right SMG - supramarginal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_195
|
|
|
Left SMG - supramarginal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_196
|
|
|
Right SOG - superior occipital gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_197
|
|
|
Left SOG - superior occipital gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_198
|
|
|
Right SPL - superior parietal lobule Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_199
|
|
|
Left SPL - superior parietal lobule Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_200
|
|
|
Right STG - superior temporal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_201
|
|
|
Left STG - superior temporal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_202
|
|
|
Right TMP - temporal pole Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_203
|
|
|
Left TMP - temporal pole Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_204
|
|
|
Right TrIFG triangular part of the inferior frontal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_205
|
|
|
Left TrIFG triangular part of the inferior frontal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_206
|
|
|
Right TTG - transverse temporal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_207
|
|
|
Left TTG - transverse temporal gyrus Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_301
|
|
|
Frontal Inferior Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_302
|
|
|
Frontal Insular Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_303
|
|
|
Frontal Lateral Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_304
|
|
|
Frontal Medial Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_305
|
|
|
Frontal Opercular Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_306
|
|
|
Limbic Cingulate Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_307
|
|
|
Limbic Medialtemporal Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_308
|
|
|
Occipital Inferior Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_309
|
|
|
Occipital Lateral Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_310
|
|
|
Occipital Medial Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_311
|
|
|
Parietal Lateral Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_312
|
|
|
Parietal Medial Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_313
|
|
|
Temporal Inferior Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_314
|
|
|
Temporal Lateral Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_315
|
|
|
Temporal Supratemporal Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_316
|
|
|
Left Frontal Inferior Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_317
|
|
|
Left Frontal Insular Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_318
|
|
|
Left Frontal Lateral Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_319
|
|
|
Left Frontal Medial Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_320
|
|
|
Left Frontal Opercular Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_321
|
|
|
Left Limbic Cingulate Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_322
|
|
|
Left Limbic Medialtemporal Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_323
|
|
|
Left Occipital Inferior Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_324
|
|
|
Left Occipital Lateral Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_325
|
|
|
Left Occipital Medial Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_326
|
|
|
Left Parietal Lateral Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_327
|
|
|
Left Parietal Medial Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_328
|
|
|
Left Temporal Inferior Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_329
|
|
|
Left Temporal Lateral Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_330
|
|
|
Left Temporal Supratemporal Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_331
|
|
|
Right Frontal Inferior Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_332
|
|
|
Right Frontal Insular Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_333
|
|
|
Right Frontal Lateral Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_334
|
|
|
Right Frontal Medial Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_335
|
|
|
Right Frontal Opercular Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_336
|
|
|
Right Limbic Cingulate Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_337
|
|
|
Right Limbic Medialtemporal Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_338
|
|
|
Right Occipital Inferior Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_339
|
|
|
Right Occipital Lateral Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_340
|
|
|
Right Occipital Medial Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_341
|
|
|
Right Parietal Lateral Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_342
|
|
|
Right Parietal Medial Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_343
|
|
|
Right Temporal Inferior Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_344
|
|
|
Right Temporal Lateral Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_345
|
|
|
Right Temporal Supratemporal Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_401
|
|
|
Basal Ganglia Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_402
|
|
|
Deep Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_403
|
|
|
Deep White Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_404
|
|
|
Frontal Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_405
|
|
|
Frontal White Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_406
|
|
|
Limbic Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_407
|
|
|
Occipital Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_408
|
|
|
Occipital White Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_409
|
|
|
Parietal Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_410
|
|
|
Parietal White Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_411
|
|
|
Temporal Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_412
|
|
|
Temporal White Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_413
|
|
|
Left Basal Ganglia Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_414
|
|
|
Left Deep Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_415
|
|
|
Left Deep White Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_416
|
|
|
Left Frontal Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_417
|
|
|
Left Frontal White Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_418
|
|
|
Left Limbic Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_419
|
|
|
Left Occipital Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_420
|
|
|
Left Occipital White Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_421
|
|
|
Left Parietal Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_422
|
|
|
Left Parietal White Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_423
|
|
|
Left Temporal Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_424
|
|
|
Left Temporal White Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_425
|
|
|
Right Basal Ganglia Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_426
|
|
|
Right Deep Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_427
|
|
|
Right Deep White Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_428
|
|
|
Right Frontal Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_429
|
|
|
Right Frontal White Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_430
|
|
|
Right Limbic Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_431
|
|
|
Right Occipital Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_432
|
|
|
Right Occipital White Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_433
|
|
|
Right Parietal Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_434
|
|
|
Right Parietal White Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_435
|
|
|
Right Temporal Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_436
|
|
|
Right Temporal White Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_501
|
|
|
Corpus Callosum Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_502
|
|
|
Cerebellum Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_503
|
|
|
Deep White Matter Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_504
|
|
|
Fronal Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_505
|
|
|
Limbic Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_506
|
|
|
Occipital Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_507
|
|
|
Parietal Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_508
|
|
|
Temporal Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_509
|
|
|
Ventricle Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_510
|
|
|
Left Cerebellum Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_511
|
|
|
Left Deep White Matter Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_512
|
|
|
Left Frontal Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_513
|
|
|
Left Limbic Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_514
|
|
|
Left Occipital Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_515
|
|
|
Left Parietal Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_516
|
|
|
Left Temporal Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_517
|
|
|
Left Ventricle Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_518
|
|
|
Right Cerebellum Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_519
|
|
|
Right Deep White Matter Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_520
|
|
|
Right Frontal Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_521
|
|
|
Right Limbic Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_522
|
|
|
Right Occipital Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_523
|
|
|
Right Parietal Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_524
|
|
|
Right Temporal Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_525
|
|
|
Right Ventricle Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_601
|
|
|
Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_604
|
|
|
White Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_606
|
|
|
Left Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_607
|
|
|
Left White Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_613
|
|
|
Right Gray Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_614
|
|
|
Right White Matter Volume |
cubic millimeter |
Number |
|
|
|
MRI |
T1 - MUSE |
H_MUSE_Volume_701
|
|
|
Total Brain Volume |
cubic millimeter |
Number |
|
|
|
MRI |
DTI |
PHC_jhu_superior_parietal_wm_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of superior_parietal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_parietal_wm_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of superior_parietal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_parietal_wm_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of superior_parietal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_parietal_wm_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of superior_parietal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_caudate_nucleus_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of caudate_nucleus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_caudate_nucleus_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of caudate_nucleus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_caudate_nucleus_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of caudate_nucleus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_caudate_nucleus_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of caudate_nucleus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_frontal_wm_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of superior_frontal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_frontal_wm_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of superior_frontal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_frontal_wm_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of superior_frontal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_frontal_wm_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of superior_frontal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_frontal_wm_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of middle_frontal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_frontal_wm_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of middle_frontal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_frontal_wm_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of middle_frontal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_frontal_wm_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of middle_frontal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_frontal_wm_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of inferior_frontal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_frontal_wm_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of inferior_frontal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_frontal_wm_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of inferior_frontal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_frontal_wm_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of inferior_frontal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_precentral_wm_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of precentral_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_precentral_wm_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of precentral_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_precentral_wm_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of precentral_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_precentral_wm_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of precentral_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_postcentral_wm_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of postcentral_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_postcentral_wm_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of postcentral_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_postcentral_wm_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of postcentral_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_postcentral_wm_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of postcentral_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_angular_wm_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of angular_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_angular_wm_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of angular_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_angular_wm_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of angular_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_angular_wm_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of angular_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_pre_cuneus_wm_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of pre_cuneus_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_pre_cuneus_wm_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of pre_cuneus_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_pre_cuneus_wm_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of pre_cuneus_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_pre_cuneus_wm_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of pre_cuneus_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cuneus_wm_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of cuneus_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cuneus_wm_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of cuneus_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cuneus_wm_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of cuneus_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cuneus_wm_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of cuneus_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_lingual_wm_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of lingual_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_lingual_wm_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of lingual_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_lingual_wm_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of lingual_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_lingual_wm_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of lingual_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_caudate_nucleus_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of caudate_nucleus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_caudate_nucleus_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of caudate_nucleus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_caudate_nucleus_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of caudate_nucleus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_caudate_nucleus_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of caudate_nucleus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_occipital_wm_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of superior_occipital_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_occipital_wm_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of superior_occipital_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_occipital_wm_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of superior_occipital_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_occipital_wm_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of superior_occipital_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_occipital_wm_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of inferior_occipital_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_occipital_wm_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of inferior_occipital_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_occipital_wm_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of inferior_occipital_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_occipital_wm_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of inferior_occipital_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_occipital_wm_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of middle_occipital_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_occipital_wm_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of middle_occipital_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_occipital_wm_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of middle_occipital_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_occipital_wm_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of middle_occipital_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_temporal_wm_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of superior_temporal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_temporal_wm_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of superior_temporal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_temporal_wm_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of superior_temporal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_temporal_wm_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of superior_temporal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_temporal_wm_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of middle_temporal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_temporal_wm_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of middle_temporal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_temporal_wm_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of middle_temporal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_temporal_wm_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of middle_temporal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_supramarginal_wm_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of supramarginal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_supramarginal_wm_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of supramarginal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_supramarginal_wm_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of supramarginal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_supramarginal_wm_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of supramarginal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_putamen_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of putamen_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_putamen_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of putamen_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_putamen_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of putamen_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_putamen_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of putamen_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_corticospinal_tract_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of corticospinal_tract_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_corticospinal_tract_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of corticospinal_tract_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_corticospinal_tract_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of corticospinal_tract_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_corticospinal_tract_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of corticospinal_tract_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_medial_lemniscus_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of medial_lemniscus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_medial_lemniscus_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of medial_lemniscus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_medial_lemniscus_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of medial_lemniscus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_medial_lemniscus_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of medial_lemniscus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_scp_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of superior_cerebellar_peduncle_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_scp_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of superior_cerebellar_peduncle_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_scp_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of superior_cerebellar_peduncle_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_scp_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of superior_cerebellar_peduncle_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cerebral_peduncle_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of cerebral_peduncle_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cerebral_peduncle_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of cerebral_peduncle_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cerebral_peduncle_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of cerebral_peduncle_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cerebral_peduncle_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of cerebral_peduncle_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_alic_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of anterior_limb_of_internal_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_alic_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of anterior_limb_of_internal_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_alic_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of anterior_limb_of_internal_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_alic_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of anterior_limb_of_internal_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_plic_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of posterior_limb_of_internal_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_plic_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of posterior_limb_of_internal_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_plic_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of posterior_limb_of_internal_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_plic_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of posterior_limb_of_internal_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ptr_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of posterior_thalamic_radiation_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ptr_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of posterior_thalamic_radiation_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ptr_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of posterior_thalamic_radiation_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ptr_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of posterior_thalamic_radiation_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_corona_radiata_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of superior_corona_radiata_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_corona_radiata_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of superior_corona_radiata_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_corona_radiata_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of superior_corona_radiata_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_corona_radiata_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of superior_corona_radiata_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_posterior_corona_radiata_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of posterior_corona_radiata_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_posterior_corona_radiata_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of posterior_corona_radiata_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_posterior_corona_radiata_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of posterior_corona_radiata_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_posterior_corona_radiata_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of posterior_corona_radiata_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cingulum_cingulate_gyrus_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of cingulum_(cingulate_gyrus)_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cingulum_cingulate_gyrus_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of cingulum_(cingulate_gyrus)_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cingulum_cingulate_gyrus_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of cingulum_(cingulate_gyrus)_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cingulum_cingulate_gyrus_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of cingulum_(cingulate_gyrus)_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cingulum_hippocampus_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of cingulum_(hippocampus)_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cingulum_hippocampus_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of cingulum_(hippocampus)_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cingulum_hippocampus_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of cingulum_(hippocampus)_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cingulum_hippocampus_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of cingulum_(hippocampus)_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_fornixcres_stria_terminalisleft_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of fornix(cres)_stria_terminalisleft in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_fornixcres_stria_terminalisleft_md_median
|
|
|
The median of Mean Diffusivity for the ROI of fornix(cres)_stria_terminalisleft in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_fornixcres_stria_terminalisleft_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of fornix(cres)_stria_terminalisleft in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_fornixcres_stria_terminalisleft_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of fornix(cres)_stria_terminalisleft in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_slf_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of superior_longitudinal_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_slf_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of superior_longitudinal_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_slf_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of superior_longitudinal_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_slf_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of superior_longitudinal_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sfof_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of superior_fronto_occipital_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sfof_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of superior_fronto_occipital_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sfof_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of superior_fronto_occipital_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sfof_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of superior_fronto_occipital_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ifof_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of inferior_fronto_occipital_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ifof_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of inferior_fronto_occipital_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ifof_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of inferior_fronto_occipital_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ifof_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of inferior_fronto_occipital_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sagittal_stratum_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of sagittal_stratum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sagittal_stratum_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of sagittal_stratum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sagittal_stratum_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of sagittal_stratum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sagittal_stratum_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of sagittal_stratum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_external_capsule_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of external_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_external_capsule_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of external_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_external_capsule_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of external_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_external_capsule_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of external_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_uncinate_fasciculus_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of uncinate_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_uncinate_fasciculus_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of uncinate_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_uncinate_fasciculus_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of uncinate_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_uncinate_fasciculus_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of uncinate_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_pontine_crossing_tract_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of pontine_crossing_tract_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_pontine_crossing_tract_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of pontine_crossing_tract_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_pontine_crossing_tract_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of pontine_crossing_tract_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_pontine_crossing_tract_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of pontine_crossing_tract_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_cerebellar_peduncle_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of middle_cerebellar_peduncle_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_cerebellar_peduncle_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of middle_cerebellar_peduncle_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_cerebellar_peduncle_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of middle_cerebellar_peduncle_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_cerebellar_peduncle_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of middle_cerebellar_peduncle_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_genu_of_corpus_callosum_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of genu_of_corpus_callosum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_genu_of_corpus_callosum_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of genu_of_corpus_callosum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_genu_of_corpus_callosum_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of genu_of_corpus_callosum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_genu_of_corpus_callosum_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of genu_of_corpus_callosum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_body_of_corpus_callosum_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of body_of_corpus_callosum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_body_of_corpus_callosum_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of body_of_corpus_callosum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_body_of_corpus_callosum_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of body_of_corpus_callosum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_body_of_corpus_callosum_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of body_of_corpus_callosum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_splenium_of_corpus_callosum_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of splenium_of_corpus_callosum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_splenium_of_corpus_callosum_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of splenium_of_corpus_callosum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_splenium_of_corpus_callosum_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of splenium_of_corpus_callosum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_splenium_of_corpus_callosum_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of splenium_of_corpus_callosum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ric_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of retrolenticular_part_of_internal_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ric_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of retrolenticular_part_of_internal_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ric_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of retrolenticular_part_of_internal_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ric_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of retrolenticular_part_of_internal_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_putamen_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of putamen_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_putamen_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of putamen_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_putamen_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of putamen_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_putamen_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of putamen_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_tapatum_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of tapatum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_tapatum_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of tapatum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_tapatum_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of tapatum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_tapatum_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of tapatum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_globus_pallidus_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of globus_pallidus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_globus_pallidus_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of globus_pallidus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_globus_pallidus_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of globus_pallidus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_globus_pallidus_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of globus_pallidus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_globus_pallidus_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of globus_pallidus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_globus_pallidus_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of globus_pallidus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_globus_pallidus_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of globus_pallidus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_globus_pallidus_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of globus_pallidus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_thalamus_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of thalamus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_thalamus_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of thalamus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_thalamus_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of thalamus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_thalamus_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of thalamus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_thalamus_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of thalamus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_thalamus_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of thalamus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_thalamus_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of thalamus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_thalamus_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of thalamus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_midbrain_left_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of midbrain_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_midbrain_left_md_median
|
|
|
The median of Mean Diffusivity for the ROI of midbrain_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_midbrain_left_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of midbrain_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_midbrain_left_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of midbrain_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_parietal_wm_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of superior_parietal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_parietal_wm_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of superior_parietal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_parietal_wm_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of superior_parietal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_parietal_wm_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of superior_parietal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_frontal_wm_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of superior_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_frontal_wm_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of superior_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_frontal_wm_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of superior_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_frontal_wm_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of superior_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_frontal_wm_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of middle_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_frontal_wm_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of middle_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_frontal_wm_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of middle_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_frontal_wm_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of middle_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_frontal_wm_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of inferior_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_frontal_wm_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of inferior_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_frontal_wm_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of inferior_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_frontal_wm_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of inferior_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_precentral_wm_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of precentral_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_precentral_wm_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of precentral_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_precentral_wm_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of precentral_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_precentral_wm_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of precentral_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_postcentral_wm_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of postcentral_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_postcentral_wm_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of postcentral_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_postcentral_wm_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of postcentral_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_postcentral_wm_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of postcentral_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_angular_wm_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of angular_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_angular_wm_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of angular_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_angular_wm_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of angular_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_angular_wm_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of angular_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_fusiform_wm_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of fusiform_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_fusiform_wm_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of fusiform_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_fusiform_wm_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of fusiform_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_fusiform_wm_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of fusiform_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_occipital_wm_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of superior_occipital_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_occipital_wm_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of superior_occipital_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_occipital_wm_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of superior_occipital_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_occipital_wm_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of superior_occipital_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_occipital_wm_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of inferior_occipital_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_occipital_wm_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of inferior_occipital_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_occipital_wm_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of inferior_occipital_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_occipital_wm_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of inferior_occipital_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_occipital_wm_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of middle_occipital_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_occipital_wm_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of middle_occipital_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_occipital_wm_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of middle_occipital_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_occipital_wm_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of middle_occipital_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_temporal_wm_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of superior_temporal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_temporal_wm_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of superior_temporal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_temporal_wm_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of superior_temporal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_temporal_wm_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of superior_temporal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_temporal_wm_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of middle_temporal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_temporal_wm_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of middle_temporal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_temporal_wm_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of middle_temporal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_temporal_wm_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of middle_temporal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_supramarginal_wm_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of supramarginal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_supramarginal_wm_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of supramarginal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_supramarginal_wm_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of supramarginal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_supramarginal_wm_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of supramarginal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_corticospinal_tract_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of corticospinal_tract_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_corticospinal_tract_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of corticospinal_tract_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_corticospinal_tract_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of corticospinal_tract_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_corticospinal_tract_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of corticospinal_tract_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_medial_lemniscus_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of medial_lemniscus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_medial_lemniscus_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of medial_lemniscus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_medial_lemniscus_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of medial_lemniscus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_medial_lemniscus_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of medial_lemniscus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_scp_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of superior_cerebellar_peduncle_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_scp_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of superior_cerebellar_peduncle_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_scp_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of superior_cerebellar_peduncle_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_scp_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of superior_cerebellar_peduncle_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cerebral_peduncle_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of cerebral_peduncle_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cerebral_peduncle_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of cerebral_peduncle_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cerebral_peduncle_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of cerebral_peduncle_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cerebral_peduncle_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of cerebral_peduncle_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_alic_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of anterior_limb_of_internal_capsule_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_alic_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of anterior_limb_of_internal_capsule_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_alic_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of anterior_limb_of_internal_capsule_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_alic_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of anterior_limb_of_internal_capsule_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_plic_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of posterior_limb_of_internal_capsule_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_plic_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of posterior_limb_of_internal_capsule_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_plic_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of posterior_limb_of_internal_capsule_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_plic_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of posterior_limb_of_internal_capsule_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ptr_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of posterior_thalamic_radiation_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ptr_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of posterior_thalamic_radiation_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ptr_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of posterior_thalamic_radiation_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ptr_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of posterior_thalamic_radiation_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_corona_radiata_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of superior_corona_radiata_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_corona_radiata_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of superior_corona_radiata_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_corona_radiata_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of superior_corona_radiata_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_corona_radiata_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of superior_corona_radiata_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_posterior_corona_radiata_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of posterior_corona_radiata_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_posterior_corona_radiata_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of posterior_corona_radiata_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_posterior_corona_radiata_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of posterior_corona_radiata_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_posterior_corona_radiata_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of posterior_corona_radiata_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cingulum_cingulate_gyrus_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of cingulum_(cingulate_gyrus)_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cingulum_cingulate_gyrus_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of cingulum_(cingulate_gyrus)_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cingulum_cingulate_gyrus_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of cingulum_(cingulate_gyrus)_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cingulum_cingulate_gyrus_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of cingulum_(cingulate_gyrus)_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cingulum_hippocampus_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of cingulum_(hippocampus)_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cingulum_hippocampus_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of cingulum_(hippocampus)_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cingulum_hippocampus_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of cingulum_(hippocampus)_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cingulum_hippocampus_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of cingulum_(hippocampus)_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_fornixcres_stria_terminalis_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of fornix(cres)_stria_terminalis_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_fornixcres_stria_terminalis_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of fornix(cres)_stria_terminalis_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_fornixcres_stria_terminalis_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of fornix(cres)_stria_terminalis_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_fornixcres_stria_terminalis_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of fornix(cres)_stria_terminalis_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_slf_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of superior_longitudinal_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_slf_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of superior_longitudinal_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_slf_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of superior_longitudinal_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_slf_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of superior_longitudinal_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sfof_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of superior_fronto_occipital_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sfof_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of superior_fronto_occipital_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sfof_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of superior_fronto_occipital_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sfof_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of superior_fronto_occipital_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ifof_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of inferior_fronto_occipital_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ifof_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of inferior_fronto_occipital_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ifof_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of inferior_fronto_occipital_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ifof_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of inferior_fronto_occipital_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sagittal_stratum_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of sagittal_stratum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sagittal_stratum_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of sagittal_stratum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sagittal_stratum_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of sagittal_stratum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sagittal_stratum_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of sagittal_stratum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_external_capsule_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of external_capsule_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_external_capsule_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of external_capsule_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_external_capsule_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of external_capsule_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_external_capsule_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of external_capsule_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_uncinate_fasciculus_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of uncinate_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_uncinate_fasciculus_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of uncinate_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_uncinate_fasciculus_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of uncinate_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_uncinate_fasciculus_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of uncinate_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_pontine_mcp_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of pontine_crossing_tract_(a_part_of_mcp)_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_pontine_mcp_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of pontine_crossing_tract_(a_part_of_mcp)_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_pontine_mcp_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of pontine_crossing_tract_(a_part_of_mcp)_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_pontine_mcp_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of pontine_crossing_tract_(a_part_of_mcp)_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_cerebellar_peduncle_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of middle_cerebellar_peduncle_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_cerebellar_peduncle_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of middle_cerebellar_peduncle_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_cerebellar_peduncle_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of middle_cerebellar_peduncle_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_cerebellar_peduncle_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of middle_cerebellar_peduncle_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_fornix_column_and_body_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of fornix_(column_and_body)_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_fornix_column_and_body_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of fornix_(column_and_body)_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_fornix_column_and_body_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of fornix_(column_and_body)_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_genu_of_corpus_callosum_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of genu_of_corpus_callosum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_genu_of_corpus_callosum_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of genu_of_corpus_callosum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_genu_of_corpus_callosum_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of genu_of_corpus_callosum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_genu_of_corpus_callosum_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of genu_of_corpus_callosum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_body_of_corpus_callosum_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of body_of_corpus_callosum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_body_of_corpus_callosum_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of body_of_corpus_callosum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_body_of_corpus_callosum_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of body_of_corpus_callosum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_body_of_corpus_callosum_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of body_of_corpus_callosum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_splenium_of_corpus_callosum_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of splenium_of_corpus_callosum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_splenium_of_corpus_callosum_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of splenium_of_corpus_callosum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_splenium_of_corpus_callosum_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of splenium_of_corpus_callosum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_splenium_of_corpus_callosum_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of splenium_of_corpus_callosum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ric_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of retrolenticular_part_of_internal_capsule_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ric_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of retrolenticular_part_of_internal_capsule_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ric_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of retrolenticular_part_of_internal_capsule_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ric_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of retrolenticular_part_of_internal_capsule_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_tapatum_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of tapatum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_tapatum_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of tapatum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_tapatum_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of tapatum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_tapatum_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of tapatum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_midbrain_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of midbrain_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_midbrain_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of midbrain_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_midbrain_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of midbrain_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_midbrain_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of midbrain_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_pons_right_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of pons_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_pons_right_md_median
|
|
|
The median of Mean Diffusivity for the ROI of pons_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_pons_right_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of pons_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_pons_right_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of pons_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_parietal_wm_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of superior_parietal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_caudate_nucleus_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of caudate_nucleus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_frontal_wm_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of superior_frontal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_frontal_wm_left_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of middle_frontal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_frontal_wm_left_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of middle_frontal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_frontal_wm_left_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of middle_frontal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_frontal_wm_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of middle_frontal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_frontal_wm_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of inferior_frontal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_precentral_wm_left_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of precentral_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_precentral_wm_left_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of precentral_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_precentral_wm_left_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of precentral_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_precentral_wm_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of precentral_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_postcentral_wm_left_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of postcentral_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_postcentral_wm_left_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of postcentral_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_postcentral_wm_left_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of postcentral_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_postcentral_wm_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of postcentral_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_angular_wm_left_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of angular_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_angular_wm_left_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of angular_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_angular_wm_left_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of angular_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_angular_wm_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of angular_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_pre_cuneus_wm_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of pre_cuneus_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cuneus_wm_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of cuneus_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_lingual_wm_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of lingual_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_caudate_nucleus_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of caudate_nucleus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_occipital_wm_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of superior_occipital_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_occipital_wm_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of inferior_occipital_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_occipital_wm_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of middle_occipital_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_entorhinal_area_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of entorhinal_area_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_temporal_wm_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of superior_temporal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_temporal_wm_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of inferior_temporal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_temporal_wm_left_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of middle_temporal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_temporal_wm_left_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of middle_temporal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_temporal_wm_left_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of middle_temporal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_temporal_wm_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of middle_temporal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_lateral_fronto_orbital_wm_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of lateral_fronto_orbital_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_fronto_orbital_wm_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of middle_fronto_orbital_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_supramarginal_wm_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of supramarginal_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_rectus_wm_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of rectus_wm_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_amygdala_freewater_median
|
|
|
The median of Free Water Metric for the ROI of amygdala in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_hippocampus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of hippocampus in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_putamen_left_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of putamen_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_putamen_left_fwcorrected_md_median
|
|
|
The median of Mean Diffusivity (Free Water Corrected) for the ROI of putamen_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_putamen_left_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of putamen_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_putamen_left_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of putamen_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_putamen_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of putamen_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_corticospinal_tract_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of corticospinal_tract_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_icp_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of inferior_cerebellar_peduncle_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_medial_lemniscus_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of medial_lemniscus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_scp_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of superior_cerebellar_peduncle_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cerebral_peduncle_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of cerebral_peduncle_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_alic_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of anterior_limb_of_internal_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_plic_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of posterior_limb_of_internal_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ptr_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of posterior_thalamic_radiation_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_anterior_corona_radiata_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of anterior_corona_radiata_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_corona_radiata_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of superior_corona_radiata_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_posterior_corona_radiata_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of posterior_corona_radiata_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cingulum_cingulate_gyrus_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of cingulum_(cingulate_gyrus)_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cingulum_hippocampus_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of cingulum_(hippocampus)_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_fornixcres_stria_terminalisleft_freewater_median
|
|
|
The median of Free Water Metric for the ROI of fornix(cres)_stria_terminalisleft in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_slf_left_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of superior_longitudinal_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_slf_left_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of superior_longitudinal_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_slf_left_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of superior_longitudinal_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_slf_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of superior_longitudinal_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sfof_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of superior_fronto_occipital_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ifof_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of inferior_fronto_occipital_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sagittal_stratum_left_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of sagittal_stratum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sagittal_stratum_left_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of sagittal_stratum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sagittal_stratum_left_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of sagittal_stratum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sagittal_stratum_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of sagittal_stratum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_external_capsule_left_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of external_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_external_capsule_left_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of external_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_external_capsule_left_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of external_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_external_capsule_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of external_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_uncinate_fasciculus_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of uncinate_fasciculus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_pontine_crossing_tract_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of pontine_crossing_tract_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_cerebellar_peduncle_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of middle_cerebellar_peduncle_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_genu_of_corpus_callosum_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of genu_of_corpus_callosum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_body_of_corpus_callosum_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of body_of_corpus_callosum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_splenium_of_corpus_callosum_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of splenium_of_corpus_callosum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ric_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of retrolenticular_part_of_internal_capsule_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_putamen_right_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of putamen_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_putamen_right_fwcorrected_md_median
|
|
|
The median of Mean Diffusivity (Free Water Corrected) for the ROI of putamen_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_putamen_right_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of putamen_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_putamen_right_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of putamen_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_putamen_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of putamen_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_tapatum_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of tapatum_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_globus_pallidus_left_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of globus_pallidus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_globus_pallidus_left_fwcorrected_md_median
|
|
|
The median of Mean Diffusivity (Free Water Corrected) for the ROI of globus_pallidus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_globus_pallidus_left_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of globus_pallidus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_globus_pallidus_left_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of globus_pallidus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_globus_pallidus_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of globus_pallidus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_globus_pallidus_right_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of globus_pallidus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_globus_pallidus_right_fwcorrected_md_median
|
|
|
The median of Mean Diffusivity (Free Water Corrected) for the ROI of globus_pallidus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_globus_pallidus_right_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of globus_pallidus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_globus_pallidus_right_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of globus_pallidus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_globus_pallidus_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of globus_pallidus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_thalamus_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of thalamus_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_thalamus_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of thalamus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_midbrain_left_freewater_median
|
|
|
The median of Free Water Metric for the ROI of midbrain_left in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_parietal_wm_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of superior_parietal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_frontal_wm_right_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of superior_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_frontal_wm_right_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of superior_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_frontal_wm_right_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of superior_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_frontal_wm_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of superior_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_frontal_wm_right_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of middle_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_frontal_wm_right_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of middle_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_frontal_wm_right_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of middle_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_frontal_wm_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of middle_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_frontal_wm_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of inferior_frontal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_precentral_wm_right_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of precentral_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_precentral_wm_right_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of precentral_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_precentral_wm_right_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of precentral_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_precentral_wm_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of precentral_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_postcentral_wm_right_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of postcentral_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_postcentral_wm_right_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of postcentral_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_postcentral_wm_right_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of postcentral_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_postcentral_wm_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of postcentral_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_angular_wm_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of angular_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_fusiform_wm_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of fusiform_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_occipital_wm_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of superior_occipital_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_occipital_wm_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of inferior_occipital_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_occipital_wm_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of middle_occipital_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_entorhinal_area_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of entorhinal_area_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_temporal_wm_right_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of superior_temporal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_temporal_wm_right_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of superior_temporal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_temporal_wm_right_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of superior_temporal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_temporal_wm_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of superior_temporal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_inferior_temporal_wm_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of inferior_temporal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_temporal_wm_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of middle_temporal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_lateral_fronto_orbital_wm_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of lateral_fronto_orbital_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_fronto_orbital_wm_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of middle_fronto_orbital_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_supramarginal_wm_right_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of supramarginal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_supramarginal_wm_right_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of supramarginal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_supramarginal_wm_right_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of supramarginal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_supramarginal_wm_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of supramarginal_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_rectus_wm_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of rectus_wm_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_amygdala_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of amygdala_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_hippocampus_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of hippocampus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_corticospinal_tract_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of corticospinal_tract_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_icp_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of inferior_cerebellar_peduncle_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_medial_lemniscus_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of medial_lemniscus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_scp_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of superior_cerebellar_peduncle_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cerebral_peduncle_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of cerebral_peduncle_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_alic_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of anterior_limb_of_internal_capsule_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_plic_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of posterior_limb_of_internal_capsule_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ptr_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of posterior_thalamic_radiation_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_anterior_corona_radiata_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of anterior_corona_radiata_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_corona_radiata_right_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of superior_corona_radiata_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_corona_radiata_right_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of superior_corona_radiata_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_corona_radiata_right_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of superior_corona_radiata_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_superior_corona_radiata_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of superior_corona_radiata_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_posterior_corona_radiata_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of posterior_corona_radiata_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cingulum_cingulate_gyrus_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of cingulum_(cingulate_gyrus)_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_cingulum_hippocampus_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of cingulum_(hippocampus)_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_fornixcres_stria_terminalis_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of fornix(cres)_stria_terminalis_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_slf_right_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of superior_longitudinal_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_slf_right_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of superior_longitudinal_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_slf_right_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of superior_longitudinal_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_slf_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of superior_longitudinal_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ifof_right_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of inferior_fronto_occipital_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ifof_right_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of inferior_fronto_occipital_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ifof_right_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of inferior_fronto_occipital_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ifof_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of inferior_fronto_occipital_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_sagittal_stratum_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of sagittal_stratum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_external_capsule_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of external_capsule_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_uncinate_fasciculus_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of uncinate_fasciculus_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_pontine_mcp_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of pontine_crossing_tract_(a_part_of_mcp)_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_middle_cerebellar_peduncle_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of middle_cerebellar_peduncle_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_fornix_column_and_body_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of fornix_(column_and_body)_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_genu_of_corpus_callosum_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of genu_of_corpus_callosum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_body_of_corpus_callosum_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of body_of_corpus_callosum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_splenium_of_corpus_callosum_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of splenium_of_corpus_callosum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_ric_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of retrolenticular_part_of_internal_capsule_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_tapatum_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of tapatum_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_midbrain_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of midbrain_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_jhu_pons_right_freewater_median
|
|
|
The median of Free Water Metric for the ROI of pons_right in the Johns Hopkins Eve Type 3 white matter atlas (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_3rd_ventricle_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of 3rd_ventricle in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_3rd_ventricle_md_median
|
|
|
The median of Mean Diffusivity for the ROI of 3rd_ventricle in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_3rd_ventricle_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of 3rd_ventricle in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_3rd_ventricle_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of 3rd_ventricle in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_brain_stem_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of brain_stem in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_brain_stem_md_median
|
|
|
The median of Mean Diffusivity for the ROI of brain_stem in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_brain_stem_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of brain_stem in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_brain_stem_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of brain_stem in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_caudate_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_caudate in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_caudate_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_caudate in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_caudate_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_caudate in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_caudate_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_caudate in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_caudate_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_caudate in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_caudate_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_caudate in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_caudate_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_caudate in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_caudate_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_caudate in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_cerebellum_exterior_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_cerebellum_exterior in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_cerebellum_exterior_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_cerebellum_exterior in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_cerebellum_exterior_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_cerebellum_exterior in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_cerebellum_exterior_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_cerebellum_exterior in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_cerebellum_exterior_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_cerebellum_exterior in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_cerebellum_exterior_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_cerebellum_exterior in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_cerebellum_exterior_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_cerebellum_exterior in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_cerebellum_exterior_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_cerebellum_exterior in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_cerebral_white_matter_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_cerebral_white_matter in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_cerebral_white_matter_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_cerebral_white_matter in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_cerebral_white_matter_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_cerebral_white_matter in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_cerebral_white_matter_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_cerebral_white_matter in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_cerebral_white_matter_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_cerebral_white_matter in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_cerebral_white_matter_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_cerebral_white_matter in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_cerebral_white_matter_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_cerebral_white_matter in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_cerebral_white_matter_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_cerebral_white_matter in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_hippocampus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_hippocampus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_hippocampus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_hippocampus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_hippocampus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_hippocampus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_hippocampus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_hippocampus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_hippocampus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_hippocampus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_hippocampus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_hippocampus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_hippocampus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_hippocampus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_hippocampus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_hippocampus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_inf_lat_vent_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_inf_lat_vent in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_inf_lat_vent_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_inf_lat_vent in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_inf_lat_vent_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_inf_lat_vent in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_inf_lat_vent_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_inf_lat_vent in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_inf_lat_vent_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_inf_lat_vent in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_inf_lat_vent_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_inf_lat_vent in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_inf_lat_vent_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_inf_lat_vent in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_inf_lat_vent_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_inf_lat_vent in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_lateral_ventricle_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_lateral_ventricle in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_lateral_ventricle_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_lateral_ventricle in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_lateral_ventricle_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_lateral_ventricle in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_lateral_ventricle_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_lateral_ventricle in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_lateral_ventricle_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_lateral_ventricle in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_lateral_ventricle_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_lateral_ventricle in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_lateral_ventricle_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_lateral_ventricle in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_lateral_ventricle_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_lateral_ventricle in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_putamen_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_putamen in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_putamen_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_putamen in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_putamen_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_putamen in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_putamen_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_putamen in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_putamen_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_putamen in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_putamen_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_putamen in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_putamen_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_putamen in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_putamen_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_putamen in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_thalamus_proper_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_thalamus_proper in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_thalamus_proper_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_thalamus_proper in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_thalamus_proper_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_thalamus_proper in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_thalamus_proper_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_thalamus_proper in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_thalamus_proper_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_thalamus_proper in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_thalamus_proper_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_thalamus_proper in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_thalamus_proper_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_thalamus_proper in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_thalamus_proper_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_thalamus_proper in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ventral_dc_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_ventral_dc in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ventral_dc_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_ventral_dc in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ventral_dc_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_ventral_dc in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ventral_dc_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_ventral_dc in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ventral_dc_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_ventral_dc in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ventral_dc_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_ventral_dc in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ventral_dc_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_ventral_dc in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ventral_dc_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_ventral_dc in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_cerebellar_vermal_lobules_i_v_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of cerebellar_vermal_lobules_i_v in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_cerebellar_vermal_lobules_i_v_md_median
|
|
|
The median of Mean Diffusivity for the ROI of cerebellar_vermal_lobules_i_v in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_cerebellar_vermal_lobules_i_v_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of cerebellar_vermal_lobules_i_v in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_cerebellar_vermal_lobules_i_v_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of cerebellar_vermal_lobules_i_v in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_acgg_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_acgg_anterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_acgg_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_acgg_anterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_acgg_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_acgg_anterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_acgg_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_acgg_anterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_acgg_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_acgg_anterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_acgg_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_acgg_anterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_acgg_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_acgg_anterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_acgg_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_acgg_anterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ains_anterior_insula_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_ains_anterior_insula in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ains_anterior_insula_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_ains_anterior_insula in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ains_anterior_insula_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_ains_anterior_insula in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ains_anterior_insula_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_ains_anterior_insula in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ains_anterior_insula_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_ains_anterior_insula in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ains_anterior_insula_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_ains_anterior_insula in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ains_anterior_insula_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_ains_anterior_insula in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ains_anterior_insula_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_ains_anterior_insula in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_aorg_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_aorg_anterior_orbital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_aorg_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_aorg_anterior_orbital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_aorg_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_aorg_anterior_orbital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_aorg_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_aorg_anterior_orbital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ang_angular_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_ang_angular_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ang_angular_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_ang_angular_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ang_angular_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_ang_angular_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ang_angular_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_ang_angular_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ang_angular_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_ang_angular_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ang_angular_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_ang_angular_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ang_angular_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_ang_angular_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ang_angular_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_ang_angular_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_calc_calcarine_cortex_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_calc_calcarine_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_calc_calcarine_cortex_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_calc_calcarine_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_calc_calcarine_cortex_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_calc_calcarine_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_calc_calcarine_cortex_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_calc_calcarine_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_calc_calcarine_cortex_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_calc_calcarine_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_calc_calcarine_cortex_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_calc_calcarine_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_calc_calcarine_cortex_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_calc_calcarine_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_calc_calcarine_cortex_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_calc_calcarine_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_co_central_operculum_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_co_central_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_co_central_operculum_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_co_central_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_co_central_operculum_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_co_central_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_co_central_operculum_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_co_central_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_co_central_operculum_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_co_central_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_co_central_operculum_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_co_central_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_co_central_operculum_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_co_central_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_co_central_operculum_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_co_central_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_cun_cuneus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_cun_cuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_cun_cuneus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_cun_cuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_cun_cuneus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_cun_cuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_cun_cuneus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_cun_cuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_cun_cuneus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_cun_cuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_cun_cuneus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_cun_cuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_cun_cuneus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_cun_cuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_cun_cuneus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_cun_cuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ent_entorhinal_area_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_ent_entorhinal_area in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ent_entorhinal_area_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_ent_entorhinal_area in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ent_entorhinal_area_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_ent_entorhinal_area in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ent_entorhinal_area_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_ent_entorhinal_area in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ent_entorhinal_area_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_ent_entorhinal_area in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ent_entorhinal_area_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_ent_entorhinal_area in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ent_entorhinal_area_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_ent_entorhinal_area in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ent_entorhinal_area_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_ent_entorhinal_area in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_fo_frontal_operculum_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_fo_frontal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_fo_frontal_operculum_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_fo_frontal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_fo_frontal_operculum_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_fo_frontal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_fo_frontal_operculum_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_fo_frontal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_fo_frontal_operculum_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_fo_frontal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_fo_frontal_operculum_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_fo_frontal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_fo_frontal_operculum_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_fo_frontal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_fo_frontal_operculum_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_fo_frontal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_fug_fusiform_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_fug_fusiform_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_fug_fusiform_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_fug_fusiform_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_fug_fusiform_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_fug_fusiform_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_fug_fusiform_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_fug_fusiform_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_fug_fusiform_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_fug_fusiform_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_fug_fusiform_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_fug_fusiform_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_fug_fusiform_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_fug_fusiform_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_fug_fusiform_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_fug_fusiform_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_gre_gyrus_rectus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_gre_gyrus_rectus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_gre_gyrus_rectus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_gre_gyrus_rectus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_gre_gyrus_rectus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_gre_gyrus_rectus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_gre_gyrus_rectus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_gre_gyrus_rectus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_iog_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_iog_inferior_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_iog_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_iog_inferior_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_iog_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_iog_inferior_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_iog_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_iog_inferior_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_iog_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_iog_inferior_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_iog_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_iog_inferior_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_iog_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_iog_inferior_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_iog_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_iog_inferior_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_itg_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_itg_inferior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_itg_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_itg_inferior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_itg_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_itg_inferior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_itg_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_itg_inferior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_itg_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_itg_inferior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_itg_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_itg_inferior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_itg_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_itg_inferior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_itg_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_itg_inferior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_lig_lingual_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_lig_lingual_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_lig_lingual_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_lig_lingual_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_lig_lingual_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_lig_lingual_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_lig_lingual_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_lig_lingual_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_lig_lingual_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_lig_lingual_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_lig_lingual_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_lig_lingual_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_lig_lingual_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_lig_lingual_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_lig_lingual_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_lig_lingual_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_lorg_lateral_orbital_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_lorg_lateral_orbital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_lorg_lateral_orbital_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_lorg_lateral_orbital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_lorg_lateral_orbital_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_lorg_lateral_orbital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_lorg_lateral_orbital_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_lorg_lateral_orbital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mcgg_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_mcgg_middle_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mcgg_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_mcgg_middle_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mcgg_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_mcgg_middle_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mcgg_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_mcgg_middle_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mcgg_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_mcgg_middle_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mcgg_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_mcgg_middle_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mcgg_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_mcgg_middle_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mcgg_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_mcgg_middle_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mfg_middle_frontal_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_mfg_middle_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mfg_middle_frontal_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_mfg_middle_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mfg_middle_frontal_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_mfg_middle_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mfg_middle_frontal_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_mfg_middle_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mfg_middle_frontal_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_mfg_middle_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mfg_middle_frontal_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_mfg_middle_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mfg_middle_frontal_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_mfg_middle_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mfg_middle_frontal_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_mfg_middle_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mog_middle_occipital_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_mog_middle_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mog_middle_occipital_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_mog_middle_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mog_middle_occipital_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_mog_middle_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mog_middle_occipital_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_mog_middle_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mog_middle_occipital_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_mog_middle_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mog_middle_occipital_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_mog_middle_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mog_middle_occipital_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_mog_middle_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mog_middle_occipital_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_mog_middle_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mpog_postcentral_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_mpog_postcentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mpog_postcentral_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_mpog_postcentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mpog_postcentral_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_mpog_postcentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mpog_postcentral_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_mpog_postcentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mpog_postcentral_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_mpog_postcentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mpog_postcentral_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_mpog_postcentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mpog_postcentral_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_mpog_postcentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mpog_postcentral_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_mpog_postcentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mprg_precentral_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_mprg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mprg_precentral_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_mprg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mprg_precentral_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_mprg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mprg_precentral_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_mprg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mprg_precentral_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_mprg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mprg_precentral_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_mprg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mprg_precentral_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_mprg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mprg_precentral_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_mprg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_msfg_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_msfg_superior_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_msfg_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_msfg_superior_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_msfg_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_msfg_superior_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_msfg_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_msfg_superior_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_msfg_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_msfg_superior_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_msfg_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_msfg_superior_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_msfg_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_msfg_superior_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_msfg_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_msfg_superior_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mtg_middle_temporal_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_mtg_middle_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mtg_middle_temporal_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_mtg_middle_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mtg_middle_temporal_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_mtg_middle_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mtg_middle_temporal_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_mtg_middle_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mtg_middle_temporal_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_mtg_middle_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mtg_middle_temporal_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_mtg_middle_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mtg_middle_temporal_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_mtg_middle_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mtg_middle_temporal_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_mtg_middle_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ocp_occipital_pole_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_ocp_occipital_pole in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ocp_occipital_pole_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_ocp_occipital_pole in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ocp_occipital_pole_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_ocp_occipital_pole in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ocp_occipital_pole_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_ocp_occipital_pole in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ocp_occipital_pole_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_ocp_occipital_pole in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ocp_occipital_pole_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_ocp_occipital_pole in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ocp_occipital_pole_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_ocp_occipital_pole in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ocp_occipital_pole_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_ocp_occipital_pole in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_opifg_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_opifg_opercular_part_of_the_ifg in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_opifg_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_opifg_opercular_part_of_the_ifg in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_opifg_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_opifg_opercular_part_of_the_ifg in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_opifg_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_opifg_opercular_part_of_the_ifg in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_opifg_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_opifg_opercular_part_of_the_ifg in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_opifg_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_opifg_opercular_part_of_the_ifg in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_opifg_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_opifg_opercular_part_of_the_ifg in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_opifg_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_opifg_opercular_part_of_the_ifg in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pcgg_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_pcgg_posterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pcgg_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_pcgg_posterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pcgg_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_pcgg_posterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pcgg_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_pcgg_posterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pcgg_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_pcgg_posterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pcgg_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_pcgg_posterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pcgg_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_pcgg_posterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pcgg_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_pcgg_posterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pcu_precuneus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_pcu_precuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pcu_precuneus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_pcu_precuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pcu_precuneus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_pcu_precuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pcu_precuneus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_pcu_precuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pcu_precuneus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_pcu_precuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pcu_precuneus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_pcu_precuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pcu_precuneus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_pcu_precuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pcu_precuneus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_pcu_precuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_phg_parahippocampal_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_phg_parahippocampal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_phg_parahippocampal_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_phg_parahippocampal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_phg_parahippocampal_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_phg_parahippocampal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_phg_parahippocampal_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_phg_parahippocampal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_phg_parahippocampal_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_phg_parahippocampal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_phg_parahippocampal_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_phg_parahippocampal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_phg_parahippocampal_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_phg_parahippocampal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_phg_parahippocampal_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_phg_parahippocampal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pins_posterior_insula_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_pins_posterior_insula in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pins_posterior_insula_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_pins_posterior_insula in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pins_posterior_insula_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_pins_posterior_insula in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pins_posterior_insula_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_pins_posterior_insula in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pins_posterior_insula_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_pins_posterior_insula in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pins_posterior_insula_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_pins_posterior_insula in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pins_posterior_insula_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_pins_posterior_insula in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pins_posterior_insula_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_pins_posterior_insula in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_po_parietal_operculum_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_po_parietal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_po_parietal_operculum_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_po_parietal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_po_parietal_operculum_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_po_parietal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_po_parietal_operculum_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_po_parietal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_po_parietal_operculum_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_po_parietal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_po_parietal_operculum_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_po_parietal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_po_parietal_operculum_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_po_parietal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_po_parietal_operculum_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_po_parietal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pog_postcentral_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_pog_postcentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pog_postcentral_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_pog_postcentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pog_postcentral_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_pog_postcentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pog_postcentral_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_pog_postcentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pog_postcentral_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_pog_postcentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pog_postcentral_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_pog_postcentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pog_postcentral_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_pog_postcentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pog_postcentral_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_pog_postcentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pp_planum_polare_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_pp_planum_polare in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pp_planum_polare_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_pp_planum_polare in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pp_planum_polare_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_pp_planum_polare in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pp_planum_polare_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_pp_planum_polare in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pp_planum_polare_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_pp_planum_polare in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pp_planum_polare_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_pp_planum_polare in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pp_planum_polare_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_pp_planum_polare in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pp_planum_polare_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_pp_planum_polare in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_prg_precentral_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_prg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_prg_precentral_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_prg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_prg_precentral_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_prg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_prg_precentral_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_prg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_prg_precentral_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_prg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_prg_precentral_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_prg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_prg_precentral_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_prg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_prg_precentral_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_prg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pt_planum_temporale_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_pt_planum_temporale in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pt_planum_temporale_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_pt_planum_temporale in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pt_planum_temporale_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_pt_planum_temporale in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pt_planum_temporale_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_pt_planum_temporale in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pt_planum_temporale_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_pt_planum_temporale in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pt_planum_temporale_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_pt_planum_temporale in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pt_planum_temporale_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_pt_planum_temporale in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pt_planum_temporale_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_pt_planum_temporale in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_sfg_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_sfg_superior_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_sfg_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_sfg_superior_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_sfg_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_sfg_superior_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_sfg_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_sfg_superior_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_sfg_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_sfg_superior_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_sfg_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_sfg_superior_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_sfg_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_sfg_superior_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_sfg_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_sfg_superior_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_smc_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_smc_supplementary_motor_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_smc_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_smc_supplementary_motor_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_smc_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_smc_supplementary_motor_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_smc_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_smc_supplementary_motor_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_smc_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_smc_supplementary_motor_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_smc_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_smc_supplementary_motor_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_smc_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_smc_supplementary_motor_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_smc_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_smc_supplementary_motor_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_smg_supramarginal_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_smg_supramarginal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_smg_supramarginal_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_smg_supramarginal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_smg_supramarginal_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_smg_supramarginal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_smg_supramarginal_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_smg_supramarginal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_smg_supramarginal_gyrus_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_smg_supramarginal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_smg_supramarginal_gyrus_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_smg_supramarginal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_smg_supramarginal_gyrus_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_smg_supramarginal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_smg_supramarginal_gyrus_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_smg_supramarginal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_sog_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_sog_superior_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_sog_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_sog_superior_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_sog_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_sog_superior_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_sog_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_sog_superior_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_spl_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_spl_superior_parietal_lobule in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_spl_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_spl_superior_parietal_lobule in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_spl_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_spl_superior_parietal_lobule in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_spl_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_spl_superior_parietal_lobule in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_spl_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_spl_superior_parietal_lobule in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_spl_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_spl_superior_parietal_lobule in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_spl_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_spl_superior_parietal_lobule in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_spl_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_spl_superior_parietal_lobule in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_stg_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_stg_superior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_stg_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_stg_superior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_stg_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_stg_superior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_stg_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_stg_superior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_stg_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_stg_superior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_stg_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_stg_superior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_stg_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_stg_superior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_stg_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_stg_superior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_tmp_temporal_pole_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_tmp_temporal_pole in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_tmp_temporal_pole_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_tmp_temporal_pole in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_tmp_temporal_pole_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_tmp_temporal_pole in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_tmp_temporal_pole_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_tmp_temporal_pole in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_tmp_temporal_pole_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_tmp_temporal_pole in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_tmp_temporal_pole_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_tmp_temporal_pole in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_tmp_temporal_pole_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_tmp_temporal_pole in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_tmp_temporal_pole_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_tmp_temporal_pole in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_trifg_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_trifg_triangular_part_of_the_ifg in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_trifg_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_trifg_triangular_part_of_the_ifg in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_trifg_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_trifg_triangular_part_of_the_ifg in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_trifg_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_trifg_triangular_part_of_the_ifg in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ttg_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of right_ttg_transverse_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ttg_md_median
|
|
|
The median of Mean Diffusivity for the ROI of right_ttg_transverse_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ttg_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of right_ttg_transverse_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ttg_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of right_ttg_transverse_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ttg_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of left_ttg_transverse_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ttg_md_median
|
|
|
The median of Mean Diffusivity for the ROI of left_ttg_transverse_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ttg_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of left_ttg_transverse_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ttg_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of left_ttg_transverse_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_ticv_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of ticv in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_ticv_md_median
|
|
|
The median of Mean Diffusivity for the ROI of ticv in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_ticv_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of ticv in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_ticv_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of ticv in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_posteriorfossa_fa_median
|
|
|
The median of Fractional Anisotropy for the ROI of posteriorfossa in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_posteriorfossa_md_median
|
|
|
The median of Mean Diffusivity for the ROI of posteriorfossa in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_posteriorfossa_ad_median
|
|
|
The median of Axial Diffusivity for the ROI of posteriorfossa in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_posteriorfossa_rd_median
|
|
|
The median of Radial Diffusivity for the ROI of posteriorfossa in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_3rd_ventricle_freewater_median
|
|
|
The median of Free Water Metric for the ROI of 3rd_ventricle in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_4th_ventricle_freewater_median
|
|
|
The median of Free Water Metric for the ROI of 4th_ventricle in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_brain_stem_freewater_median
|
|
|
The median of Free Water Metric for the ROI of brain_stem in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_caudate_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_caudate in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_caudate_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_caudate in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_cerebellum_exterior_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_cerebellum_exterior in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_cerebellum_exterior_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_cerebellum_exterior in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_cerebellum_white_matter_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_cerebellum_white_matter in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_cerebellum_white_matter_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_cerebellum_white_matter in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_cerebral_white_matter_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of right_cerebral_white_matter in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_cerebral_white_matter_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of right_cerebral_white_matter in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_cerebral_white_matter_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of right_cerebral_white_matter in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_cerebral_white_matter_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_cerebral_white_matter in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_cerebral_white_matter_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of left_cerebral_white_matter in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_cerebral_white_matter_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of left_cerebral_white_matter in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_cerebral_white_matter_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of left_cerebral_white_matter in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_cerebral_white_matter_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_cerebral_white_matter in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_hippocampus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_hippocampus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_hippocampus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_hippocampus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_inf_lat_vent_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_inf_lat_vent in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_inf_lat_vent_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_inf_lat_vent in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_lateral_ventricle_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_lateral_ventricle in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_lateral_ventricle_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_lateral_ventricle in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_putamen_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of right_putamen in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_putamen_fwcorrected_md_median
|
|
|
The median of Mean Diffusivity (Free Water Corrected) for the ROI of right_putamen in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_putamen_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of right_putamen in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_putamen_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of right_putamen in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_putamen_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_putamen in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_putamen_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of left_putamen in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_putamen_fwcorrected_md_median
|
|
|
The median of Mean Diffusivity (Free Water Corrected) for the ROI of left_putamen in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_putamen_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of left_putamen in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_putamen_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of left_putamen in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_putamen_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_putamen in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_thalamus_proper_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_thalamus_proper in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_thalamus_proper_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_thalamus_proper in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ventral_dc_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_ventral_dc in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ventral_dc_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_ventral_dc in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_cerebellar_vermal_lobules_i_v_freewater_median
|
|
|
The median of Free Water Metric for the ROI of cerebellar_vermal_lobules_i_v in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_acgg_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_acgg_anterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_acgg_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_acgg_anterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ains_anterior_insula_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_ains_anterior_insula in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ains_anterior_insula_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_ains_anterior_insula in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_aorg_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_aorg_anterior_orbital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ang_angular_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_ang_angular_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ang_angular_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_ang_angular_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_calc_calcarine_cortex_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of right_calc_calcarine_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_calc_calcarine_cortex_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of right_calc_calcarine_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_calc_calcarine_cortex_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of right_calc_calcarine_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_calc_calcarine_cortex_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_calc_calcarine_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_calc_calcarine_cortex_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of left_calc_calcarine_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_calc_calcarine_cortex_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of left_calc_calcarine_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_calc_calcarine_cortex_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of left_calc_calcarine_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_calc_calcarine_cortex_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_calc_calcarine_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_co_central_operculum_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_co_central_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_co_central_operculum_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_co_central_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_cun_cuneus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_cun_cuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_cun_cuneus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_cun_cuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ent_entorhinal_area_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_ent_entorhinal_area in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ent_entorhinal_area_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_ent_entorhinal_area in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_fo_frontal_operculum_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_fo_frontal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_fo_frontal_operculum_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_fo_frontal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_fug_fusiform_gyrus_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of right_fug_fusiform_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_fug_fusiform_gyrus_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of right_fug_fusiform_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_fug_fusiform_gyrus_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of right_fug_fusiform_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_fug_fusiform_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_fug_fusiform_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_fug_fusiform_gyrus_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of left_fug_fusiform_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_fug_fusiform_gyrus_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of left_fug_fusiform_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_fug_fusiform_gyrus_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of left_fug_fusiform_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_fug_fusiform_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_fug_fusiform_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_gre_gyrus_rectus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_gre_gyrus_rectus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_iog_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_iog_inferior_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_iog_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_iog_inferior_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_itg_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of right_itg_inferior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_itg_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of right_itg_inferior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_itg_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of right_itg_inferior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_itg_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_itg_inferior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_itg_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_itg_inferior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_lig_lingual_gyrus_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of right_lig_lingual_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_lig_lingual_gyrus_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of right_lig_lingual_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_lig_lingual_gyrus_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of right_lig_lingual_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_lig_lingual_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_lig_lingual_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_lig_lingual_gyrus_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of left_lig_lingual_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_lig_lingual_gyrus_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of left_lig_lingual_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_lig_lingual_gyrus_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of left_lig_lingual_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_lig_lingual_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_lig_lingual_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_lorg_lateral_orbital_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_lorg_lateral_orbital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mcgg_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of right_mcgg_middle_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mcgg_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of right_mcgg_middle_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mcgg_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of right_mcgg_middle_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mcgg_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_mcgg_middle_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mcgg_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_mcgg_middle_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mfg_middle_frontal_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_mfg_middle_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mfg_middle_frontal_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_mfg_middle_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mog_middle_occipital_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_mog_middle_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mog_middle_occipital_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_mog_middle_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mpog_postcentral_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_mpog_postcentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mpog_postcentral_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_mpog_postcentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mprg_precentral_gyrus_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of right_mprg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mprg_precentral_gyrus_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of right_mprg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mprg_precentral_gyrus_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of right_mprg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mprg_precentral_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_mprg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mprg_precentral_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_mprg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_msfg_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_msfg_superior_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_msfg_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_msfg_superior_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mtg_middle_temporal_gyrus_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of right_mtg_middle_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mtg_middle_temporal_gyrus_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of right_mtg_middle_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_mtg_middle_temporal_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_mtg_middle_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mtg_middle_temporal_gyrus_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of left_mtg_middle_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mtg_middle_temporal_gyrus_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of left_mtg_middle_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_mtg_middle_temporal_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_mtg_middle_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ocp_occipital_pole_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_ocp_occipital_pole in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ofug_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_ofug_occipital_fusiform_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ofug_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_ofug_occipital_fusiform_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_opifg_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_opifg_opercular_part_of_the_ifg in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_opifg_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_opifg_opercular_part_of_the_ifg in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pcgg_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of right_pcgg_posterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pcgg_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of right_pcgg_posterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pcgg_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of right_pcgg_posterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pcgg_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_pcgg_posterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pcgg_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of left_pcgg_posterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pcgg_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of left_pcgg_posterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pcgg_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of left_pcgg_posterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pcgg_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_pcgg_posterior_cingulate_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pcu_precuneus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_pcu_precuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pcu_precuneus_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of left_pcu_precuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pcu_precuneus_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of left_pcu_precuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pcu_precuneus_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of left_pcu_precuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pcu_precuneus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_pcu_precuneus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_phg_parahippocampal_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_phg_parahippocampal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_phg_parahippocampal_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_phg_parahippocampal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pins_posterior_insula_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_pins_posterior_insula in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pins_posterior_insula_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_pins_posterior_insula in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_po_parietal_operculum_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of right_po_parietal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_po_parietal_operculum_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of right_po_parietal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_po_parietal_operculum_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of right_po_parietal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_po_parietal_operculum_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_po_parietal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_po_parietal_operculum_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_po_parietal_operculum in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pog_postcentral_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_pog_postcentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pog_postcentral_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_pog_postcentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pp_planum_polare_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_pp_planum_polare in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pp_planum_polare_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_pp_planum_polare in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_prg_precentral_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_prg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_prg_precentral_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_prg_precentral_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_pt_planum_temporale_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_pt_planum_temporale in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_pt_planum_temporale_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_pt_planum_temporale in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_sfg_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_sfg_superior_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_sfg_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_sfg_superior_frontal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_smc_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_smc_supplementary_motor_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_smc_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_smc_supplementary_motor_cortex in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_smg_supramarginal_gyrus_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of right_smg_supramarginal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_smg_supramarginal_gyrus_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of right_smg_supramarginal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_smg_supramarginal_gyrus_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of right_smg_supramarginal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_smg_supramarginal_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_smg_supramarginal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_smg_supramarginal_gyrus_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_smg_supramarginal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_sog_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_sog_superior_occipital_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_spl_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_spl_superior_parietal_lobule in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_spl_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_spl_superior_parietal_lobule in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_stg_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of right_stg_superior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_stg_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of right_stg_superior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_stg_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of right_stg_superior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_stg_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_stg_superior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_stg_fwcorrected_fa_median
|
|
|
The median of Fractional Anisotropy (Free Water Corrected) for the ROI of left_stg_superior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_stg_fwcorrected_ad_median
|
|
|
The median of Axial Diffusivity (Free Water Corrected) for the ROI of left_stg_superior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_stg_fwcorrected_rd_median
|
|
|
The median of Radial Diffusivity (Free Water Corrected) for the ROI of left_stg_superior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_stg_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_stg_superior_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_tmp_temporal_pole_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_tmp_temporal_pole in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_tmp_temporal_pole_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_tmp_temporal_pole in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_trifg_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_trifg_triangular_part_of_the_ifg in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_right_ttg_freewater_median
|
|
|
The median of Free Water Metric for the ROI of right_ttg_transverse_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_left_ttg_freewater_median
|
|
|
The median of Free Water Metric for the ROI of left_ttg_transverse_temporal_gyrus in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_ticv_freewater_median
|
|
|
The median of Free Water Metric for the ROI of ticv in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_t1seg_posteriorfossa_freewater_median
|
|
|
The median of Free Water Metric for the ROI of posteriorfossa in the SLANT-TICV segmentation maps (Liu, Yue, et al. Generalizing deep learning brain segmentation for skull removal and intracranial measurements. Magnetic resonance imaging 88 (2022) (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_nodal_strength
|
|
|
Average node strength is computed over all nodes in the SLANT atlas. Node strength is the number of streamlines connecting a node (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_density
|
|
|
Density is the number of present connections to the total number of connections possible (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|
MRI |
DTI |
PHC_rich_club
|
|
|
Rich club networks have subgroups of central nodes that tend to interact with one another (PHC Harmonized) |
|
Number |
PHC Harmonized with Cross-Sectional ComBat |
|
|