功能(生物学)
认知科学
大脑结构与功能
联轴节(管道)
神经科学
心理学
物理
工程类
生物
细胞生物学
神经影像学
机械工程
作者
Graham L. Baum,Zaixu Cui,David R. Roalf,Rastko Ćirić,Richard F. Betzel,Bart Larsen,Matthew Cieslak,Philip A. Cook,Cedric Huchuan Xia,Tyler M. Moore,Kosha Ruparel,Desmond J. Oathes,Aaron Alexander‐Bloch,Russell T. Shinohara,Armin Raznahan,Raquel E. Gur,Ruben C. Gur,Danielle S. Bassett,Theodore D. Satterthwaite
标识
DOI:10.1073/pnas.1912034117
摘要
The protracted development of structural and functional brain connectivity within distributed association networks coincides with improvements in higher-order cognitive processes such as executive function. However, it remains unclear how white-matter architecture develops during youth to directly support coordinated neural activity. Here, we characterize the development of structure–function coupling using diffusion-weighted imaging and n -back functional MRI data in a sample of 727 individuals (ages 8 to 23 y). We found that spatial variability in structure–function coupling aligned with cortical hierarchies of functional specialization and evolutionary expansion. Furthermore, hierarchy-dependent age effects on structure–function coupling localized to transmodal cortex in both cross-sectional data and a subset of participants with longitudinal data ( n = 294). Moreover, structure–function coupling in rostrolateral prefrontal cortex was associated with executive performance and partially mediated age-related improvements in executive function. Together, these findings delineate a critical dimension of adolescent brain development, whereby the coupling between structural and functional connectivity remodels to support functional specialization and cognition.
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