Multivariate genomic architecture of cortical thickness and surface area at multiple levels of analysis

The current study identifies five genomic subclusters of brain regions for cortical thickness and surface area characterized by high levels of shared genetic signal. These subclusters map onto biological and functional parcellations of the cortex.

Bibliographic Details
Main Authors: Andrew D. Grotzinger, Travis T. Mallard, Zhaowen Liu, Jakob Seidlitz, Tian Ge, Jordan W. Smoller
Format: Article
Language:English
Published: Nature Portfolio 2023-02-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-023-36605-x
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author Andrew D. Grotzinger
Travis T. Mallard
Zhaowen Liu
Jakob Seidlitz
Tian Ge
Jordan W. Smoller
author_facet Andrew D. Grotzinger
Travis T. Mallard
Zhaowen Liu
Jakob Seidlitz
Tian Ge
Jordan W. Smoller
author_sort Andrew D. Grotzinger
collection DOAJ
description The current study identifies five genomic subclusters of brain regions for cortical thickness and surface area characterized by high levels of shared genetic signal. These subclusters map onto biological and functional parcellations of the cortex.
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spelling doaj.art-558351e4e4a34c35ad3e76b038aa18762023-03-22T11:42:28ZengNature PortfolioNature Communications2041-17232023-02-0114111310.1038/s41467-023-36605-xMultivariate genomic architecture of cortical thickness and surface area at multiple levels of analysisAndrew D. Grotzinger0Travis T. Mallard1Zhaowen Liu2Jakob Seidlitz3Tian Ge4Jordan W. Smoller5Institute for Behavioral Genetics, University of Colorado BoulderPsychiatric and Neurodevelopmental Genetics Unit, Massachusetts General HospitalPsychiatric and Neurodevelopmental Genetics Unit, Massachusetts General HospitalDepartment of Psychiatry, University of PennsylvaniaPsychiatric and Neurodevelopmental Genetics Unit, Massachusetts General HospitalPsychiatric and Neurodevelopmental Genetics Unit, Massachusetts General HospitalThe current study identifies five genomic subclusters of brain regions for cortical thickness and surface area characterized by high levels of shared genetic signal. These subclusters map onto biological and functional parcellations of the cortex.https://doi.org/10.1038/s41467-023-36605-x
spellingShingle Andrew D. Grotzinger
Travis T. Mallard
Zhaowen Liu
Jakob Seidlitz
Tian Ge
Jordan W. Smoller
Multivariate genomic architecture of cortical thickness and surface area at multiple levels of analysis
Nature Communications
title Multivariate genomic architecture of cortical thickness and surface area at multiple levels of analysis
title_full Multivariate genomic architecture of cortical thickness and surface area at multiple levels of analysis
title_fullStr Multivariate genomic architecture of cortical thickness and surface area at multiple levels of analysis
title_full_unstemmed Multivariate genomic architecture of cortical thickness and surface area at multiple levels of analysis
title_short Multivariate genomic architecture of cortical thickness and surface area at multiple levels of analysis
title_sort multivariate genomic architecture of cortical thickness and surface area at multiple levels of analysis
url https://doi.org/10.1038/s41467-023-36605-x
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