连接体
模块化设计
功能多样性
计算机科学
功能集成
层级组织
模块化(生物学)
神经科学
功能连接
连接组学
生物
数学
进化生物学
操作系统
管理
经济
数学分析
生态学
积分方程
作者
Rong Wang,Pan Lin,Mianxin Liu,Ying Wu,Tao Zhou,Changsong Zhou
标识
DOI:10.1103/physrevlett.123.038301
摘要
The brain requires diverse segregated and integrated processing to perform normal functions in terms of anatomical structure and self-organized dynamics with critical features, but the fundamental relationships between the complex structural connectome, critical state, and functional diversity remain unknown. Herein, we extend the eigenmode analysis to investigate the joint contribution of hierarchical modular structural organization and critical state to brain functional diversity. We show that the structural modes inherent to the hierarchical modular structural connectome allow a nested functional segregation and integration across multiple spatiotemporal scales. The real brain hierarchical modular organization provides large structural capacity for diverse functional interactions, which are generated by sequentially activating and recruiting the hierarchical connectome modes, and the critical state can best explore the capacity to maximize the functional diversity. Our results reveal structural and dynamical mechanisms that jointly support a balanced segregated and integrated brain processing with diverse functional interactions, and they also shed light on dysfunctional segregation and integration in neurodegenerative diseases and neuropsychiatric disorders.
科研通智能强力驱动
Strongly Powered by AbleSci AI