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March 9, 20261 citationsOpen Access

Genetic insights on the mechanisms of human cortical folding

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WSWilliam SnyderUniversity of CambridgeRSRebecca ShafeeNational Institute of Mental HealthSLSiyuan LiuNational Institute of Mental Health

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Abstract

Abstract The unique and intricate pattern of human cortical folding is rooted in fetal neurodevelopmental processes and can now be comprehensively quantified by new neuroimaging-derived measures of sulcal complexity. Here, we provide the first genetic maps of human sulcal complexity. Beginning with large effects of rare variants, we survey nine different neurogenetic syndromes ( n =615), detecting visible changes in sulcal complexity on a shared axis of sulcal change coupled to the prenatal timing of sulcation. Turning to common genetic variants, we use genome-wide association studies of complexity scores for 40 sulci in the UK Biobank ( n ∼29,000) to (i) resolve variable heritability across sulci, (ii) reveal both local and remote shared genetic effects with cortical morphology, and (iii) identify complexity-associated genes and their embedding in brain maps of prenatal gene expression. These reference genetic maps uncover multiple new mechanistic pathways for cortical morphogenesis in health and disease.

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Cite This Study

Snyder et al. (2026) studied this question.

synapsesocial.com/papers/6a0f031c218372ada647e78bhttps://doi.org/10.64898/2026.03.06.709690
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