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Structure-function relationships during segregated and integrated network states of human brain functional connectivity

机译:人脑功能连接的隔离和集成网络状态期间的结构功能关系

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摘要

Structural white matter connections are thought to facilitate integration of neural information across functionally segregated systems. Recent studies have demonstrated that changes in the balance between segregation and integration in brain networks can be tracked by time-resolved functional connectivity derived from resting-state functional magnetic resonance imaging (rs-fMRI) data and that fluctuations between segregated and integrated network states are related to human behavior. However, how these network states relate to structural connectivity is largely unknown. To obtain a better understanding of structural substrates for these network states, we investigated how the relationship between structural connectivity, derived from diffusion tractography, and functional connectivity, as measured by rs-fMRI, changes with fluctuations between segregated and integrated states in the human brain. We found that the similarity of edge weights between structural and functional connectivity was greater in the integrated state, especially at edges connecting the default mode and the dorsal attention networks. We also demonstrated that the similarity of network partitions, evaluated between structural and functional connectivity, increased and the density of direct structural connections within modules in functional networks was elevated during the integrated state. These results suggest that, when functional connectivity exhibited an integrated network topology, structural connectivity and functional connectivity were more closely linked to each other and direct structural connections mediated a larger proportion of neural communication within functional modules. Our findings point out the possibility of significant contributions of structural connections to integrative neural processes underlying human behavior.
机译:结构白质连接被认为可以促进功能隔离系统中神经信息的整合。最近的研究表明,从静止状态功能磁共振成像(rs-fMRI)数据得出的时间分辨功能连通性可以跟踪大脑网络中分离和整合之间的平衡变化,并且分离和整合的网络状态之间的波动是与人类行为有关。但是,这些网络状态与结构连接性之间的关系在很大程度上是未知的。为了更好地了解这些网络状态的结构底物,我们研究了由扩散束线图得出的结构连通性与通过rs-fMRI测量的功能连通性之间的关系如何随着人脑中分离状态和集成状态之间的波动而变化。我们发现,在集成状态下,结构和功能连接之间边缘权重的相似性更大,尤其是在连接默认模式和背侧注意力网络的边缘。我们还证明,在集成状态下,在结构连接和功能连接之间评估的网络分区的相似性增加,功能网络中模块内直接结构连接的密度提高。这些结果表明,当功能连通性表现出集成的网络拓扑时,结构连通性和功能连通性彼此更紧密地联系在一起,直接结构连接在功能模块内介导了较大比例的神经沟通。我们的发现指出了结构连接对人类行为背后的整合神经过程的重大贡献的可能性。

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