Literature DB >> 24082094

Genetic topography of brain morphology.

Chi-Hua Chen1, Mark Fiecas, E D Gutiérrez, Matthew S Panizzon, Lisa T Eyler, Eero Vuoksimaa, Wesley K Thompson, Christine Fennema-Notestine, Donald J Hagler, Terry L Jernigan, Michael C Neale, Carol E Franz, Michael J Lyons, Bruce Fischl, Ming T Tsuang, Anders M Dale, William S Kremen.   

Abstract

Animal data show that cortical development is initially patterned by genetic gradients largely along three orthogonal axes. We previously reported differences in genetic influences on cortical surface area along an anterior-posterior axis using neuroimaging data of adult human twins. Here, we demonstrate differences in genetic influences on cortical thickness along a dorsal-ventral axis in the same cohort. The phenomenon of orthogonal gradations in cortical organization evident in different structural and functional properties may originate from genetic gradients. Another emerging theme of cortical patterning is that patterns of genetic influences recapitulate the spatial topography of the cortex within hemispheres. The genetic patterning of both cortical thickness and surface area corresponds to cortical functional specializations. Intriguingly, in contrast to broad similarities in genetic patterning, two sets of analyses distinguish cortical thickness and surface area genetically. First, genetic contributions to cortical thickness and surface area are largely distinct; there is very little genetic correlation (i.e., shared genetic influences) between them. Second, organizing principles among genetically defined regions differ between thickness and surface area. Examining the structure of the genetic similarity matrix among clusters revealed that, whereas surface area clusters showed great genetic proximity with clusters from the same lobe, thickness clusters appear to have close genetic relatedness with clusters that have similar maturational timing. The discrepancies are in line with evidence that the two traits follow different mechanisms in neurodevelopment. Our findings highlight the complexity of genetic influences on cortical morphology and provide a glimpse into emerging principles of genetic organization of the cortex.

Entities:  

Keywords:  MRI; genetics; regionalization

Mesh:

Year:  2013        PMID: 24082094      PMCID: PMC3801007          DOI: 10.1073/pnas.1308091110

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  46 in total

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Review 5.  Genes and signaling events that establish regional patterning of the mammalian forebrain.

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Authors:  Diarmuid J Cahalane; Christine J Charvet; Barbara L Finlay
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  93 in total

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Review 6.  Neural Noise Hypothesis of Developmental Dyslexia.

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7.  Developmental Trajectories of the Orbitofrontal Cortex and Anhedonia in Middle Childhood and Risk for Substance Use in Adolescence in a Longitudinal Sample of Depressed and Healthy Preschoolers.

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9.  Finding imaging patterns of structural covariance via Non-Negative Matrix Factorization.

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10.  Genetic influences on neonatal cortical thickness and surface area.

Authors:  Shaili C Jha; Kai Xia; James Eric Schmitt; Mihye Ahn; Jessica B Girault; Veronica A Murphy; Gang Li; Li Wang; Dinggang Shen; Fei Zou; Hongtu Zhu; Martin Styner; Rebecca C Knickmeyer; John H Gilmore
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