ID

46148

Description

Principal Investigator: Rebecca C. Knickmeyer, PhD, University of North Carolina at Chapel Hill, Chapel Hill, NC, USA MeSH: Brain,Magnetic Resonance Imaging,White Matter,Gray Matter,Cerebrospinal Fluid https://www.ncbi.nlm.nih.gov/projects/gap/cgi-bin/study.cgi?study_id=phs001122 This is a genome-wide association study (GWAS) of global brain tissue volumes in human infants. The published study for this project includes 561 infants, and 239 parents gave consent for data sharing through dbGaP. An intronic single-nucleotide polymorphism (SNP) in IGFBP7 (rs114518130; GeneID: 3490) met genome-wide significance for gray matter volume (P=4.15x10sup-10/sup). An intronic SNP in WWOX (rs10514437; GeneID: 51741) neared genome-wide significance for white matter volume (P=1.56x10sup-8/sup). Additional loci with small P-values include psychiatric GWAS associations and transcription factors expressed in the developing brain. Genetic risk scores for schizophrenia and ASD, and the number of genes affected by rare copy number variants (CNV burden) did not predict global brain tissue volumes. Integrating these results with large-scale GWAS in adolescents [Philadelphia Neurodevelopmental Cohort (PNC)] and adults [Enhancing Neuro Imaging Genetics through Meta-Analysis version 2 (ENIGMA2)] suggested minimal overlap between common variants impacting brain volumes at different ages.

Link

https://www.ncbi.nlm.nih.gov/projects/gap/cgi-bin/study.cgi?study_id=phs001122

Keywords

  1. 9/6/23 9/6/23 - Arman Ghanaat
  2. 1/29/25 1/29/25 - Akane Nishihara
Copyright Holder

Rebecca C. Knickmeyer, PhD, University of North Carolina at Chapel Hill, Chapel Hill, NC, USA

Uploaded on

January 29, 2025

DOI

To request one please log in.

License

Creative Commons BY 4.0

Model comments :

You can comment on the data model here. Via the speech bubbles at the itemgroups and items you can add comments to those specificially.

Itemgroup comments for :

Item comments for :


No comments

In order to download data models you must be logged in. Please log in or register for free.

dbGaP phs001122 Genome-wide Identification of Variants Affecting Early Human Brain Development

This sample attribute table contains sample ID, SNP call rate, plate number, group, container ID, micronic position, tube ID, trinean concentration, dish QC value, body site, array type, analyte type, tumor status, and name of the center which conducted genotyping.

pht008641
Description

pht008641

Alias
UMLS CUI [1,1]
C3846158
Sample ID
Description

SAMPLE_ID

Data type

text

Alias
UMLS CUI [1,1]
C1299222
The percentage of the genotype SNP call
Description

CallRate

Data type

text

Alias
UMLS CUI [1,1]
C1549488
UMLS CUI [1,2]
C4035952
UMLS CUI [1,3]
C0017431
UMLS CUI [1,4]
C0752046
Plate number in the array
Description

Plate

Data type

integer

Alias
UMLS CUI [1,1]
C0184054
UMLS CUI [1,2]
C0237753
UMLS CUI [1,3]
C1510941
Subject Group
Description

Group

Data type

text

Alias
UMLS CUI [1,1]
C0681850
UMLS CUI [1,2]
C1512277
Container ID
Description

Container.ID

Data type

text

Alias
UMLS CUI [1,1]
C0180098
UMLS CUI [1,2]
C0600091
Micronic position
Description

Micronic.Position

Data type

text

Alias
UMLS CUI [1,1]
C0475264
UMLS CUI [1,2]
C0332285
UMLS CUI [1,3]
C1709016
Tube ID
Description

Tube.ID

Data type

text

Alias
UMLS CUI [1,1]
C0175730
UMLS CUI [1,2]
C0600091
Trinean concentration
Description

Trinean.Concentration

Data type

text

Measurement units
  • ng/ul
Alias
UMLS CUI [1,1]
C1446561
ng/ul
DishQC value in the genotype array
Description

DishQC

Data type

text

Alias
UMLS CUI [1,1]
C1522609
UMLS CUI [1,2]
C1322960
UMLS CUI [1,3]
C0034378
UMLS CUI [1,4]
C5239481
Body site where sample was collected
Description

BODY_SITE

Data type

text

Alias
UMLS CUI [1,1]
C0449705
Type of array
Description

Array_type

Data type

text

Alias
UMLS CUI [1,1]
C1510941
UMLS CUI [1,2]
C0332307
Analyte type
Description

ANALYTE_TYPE

Data type

text

Alias
UMLS CUI [1,1]
C4744818
Is the sample a tumor sample?
Description

IS_TUMOR

Data type

float

Alias
UMLS CUI [1,1]
C0027651
Genotyping center
Description

GENOTYPING_CENTER

Data type

text

Alias
UMLS CUI [1,1]
C5667250

Similar models

This sample attribute table contains sample ID, SNP call rate, plate number, group, container ID, micronic position, tube ID, trinean concentration, dish QC value, body site, array type, analyte type, tumor status, and name of the center which conducted genotyping.

Name
Type
Description | Question | Decode (Coded Value)
Data type
Alias
Item Group
pht008641
C3846158 (UMLS CUI [1,1])
SAMPLE_ID
Item
Sample ID
text
C1299222 (UMLS CUI [1,1])
CallRate
Item
The percentage of the genotype SNP call
text
C1549488 (UMLS CUI [1,1])
C4035952 (UMLS CUI [1,2])
C0017431 (UMLS CUI [1,3])
C0752046 (UMLS CUI [1,4])
Plate
Item
Plate number in the array
integer
C0184054 (UMLS CUI [1,1])
C0237753 (UMLS CUI [1,2])
C1510941 (UMLS CUI [1,3])
Group
Item
Subject Group
text
C0681850 (UMLS CUI [1,1])
C1512277 (UMLS CUI [1,2])
Container.ID
Item
Container ID
text
C0180098 (UMLS CUI [1,1])
C0600091 (UMLS CUI [1,2])
Micronic.Position
Item
Micronic position
text
C0475264 (UMLS CUI [1,1])
C0332285 (UMLS CUI [1,2])
C1709016 (UMLS CUI [1,3])
Tube.ID
Item
Tube ID
text
C0175730 (UMLS CUI [1,1])
C0600091 (UMLS CUI [1,2])
Trinean.Concentration
Item
Trinean concentration
text
C1446561 (UMLS CUI [1,1])
DishQC
Item
DishQC value in the genotype array
text
C1522609 (UMLS CUI [1,1])
C1322960 (UMLS CUI [1,2])
C0034378 (UMLS CUI [1,3])
C5239481 (UMLS CUI [1,4])
BODY_SITE
Item
Body site where sample was collected
text
C0449705 (UMLS CUI [1,1])
Array_type
Item
Type of array
text
C1510941 (UMLS CUI [1,1])
C0332307 (UMLS CUI [1,2])
ANALYTE_TYPE
Item
Analyte type
text
C4744818 (UMLS CUI [1,1])
Item
Is the sample a tumor sample?
float
C0027651 (UMLS CUI [1,1])
Code List
Is the sample a tumor sample?
CL Item
yes (1)
CL Item
no (0)
GENOTYPING_CENTER
Item
Genotyping center
text
C5667250 (UMLS CUI [1,1])

Do you need help on how to use the search function? Please watch the corresponding tutorial video for more details and learn how to use the search function most efficiently.

Watch Tutorial