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An expanding manifold in transmodal regions characterizes adolescent reconfiguration of structural connectome organization.


ABSTRACT: Adolescence is a critical time for the continued maturation of brain networks. Here, we assessed structural connectome development in a large longitudinal sample ranging from childhood to young adulthood. By projecting high-dimensional connectomes into compact manifold spaces, we identified a marked expansion of structural connectomes, with strongest effects in transmodal regions during adolescence. Findings reflected increased within-module connectivity together with increased segregation, indicating increasing differentiation of higher-order association networks from the rest of the brain. Projection of subcortico-cortical connectivity patterns into these manifolds showed parallel alterations in pathways centered on the caudate and thalamus. Connectome findings were contextualized via spatial transcriptome association analysis, highlighting genes enriched in cortex, thalamus, and striatum. Statistical learning of cortical and subcortical manifold features at baseline and their maturational change predicted measures of intelligence at follow-up. Our findings demonstrate that connectome manifold learning can bridge the conceptual and empirical gaps between macroscale network reconfigurations, microscale processes, and cognitive outcomes in adolescent development.

SUBMITTER: Park BY 

PROVIDER: S-EPMC8087442 | biostudies-literature | 2021 Mar

REPOSITORIES: biostudies-literature

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An expanding manifold in transmodal regions characterizes adolescent reconfiguration of structural connectome organization.

Park Bo-Yong BY   Bethlehem Richard Ai RA   Paquola Casey C   Larivière Sara S   Rodríguez-Cruces Raul R   Vos de Wael Reinder R   Bullmore Edward T ET   Bernhardt Boris C BC  

eLife 20210331


Adolescence is a critical time for the continued maturation of brain networks. Here, we assessed structural connectome development in a large longitudinal sample ranging from childhood to young adulthood. By projecting high-dimensional connectomes into compact manifold spaces, we identified a marked expansion of structural connectomes, with strongest effects in transmodal regions during adolescence. Findings reflected increased within-module connectivity together with increased segregation, indi  ...[more]

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