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大脑半球间连接在功能脑网络中的作用。

Role of inter-hemispheric connections in functional brain networks.

机构信息

INSERM-Institute du Cerveau et de la Moelle Épinière, Paris, France.

Grupo Interdisciplinar de Sistemas Complejos (GISC), Madrid, Spain.

出版信息

Sci Rep. 2018 Jul 6;8(1):10246. doi: 10.1038/s41598-018-28467-x.

Abstract

Today the human brain can be modeled as a graph where nodes represent different regions and links stand for statistical interactions between their activities as recorded by different neuroimaging techniques. Empirical studies have lead to the hypothesis that brain functions rely on the coordination of a scattered mosaic of functionally specialized brain regions (modules or sub-networks), forming a web-like structure of coordinated assemblies (a network of networks. NoN). The study of brain dynamics would therefore benefit from an inspection of how functional sub-networks interact between them. In this paper, we model the brain as an interconnected system composed of two specific sub-networks, the left (L) and right (R) hemispheres, which compete with each other for centrality, a topological measure of importance in a networked system. Specifically, we considered functional scalp EEG networks (SEN) derived from high-density electroencephalographic (EEG) recordings and investigated how node centrality is shaped by interhemispheric connections. Our results show that the distribution of centrality strongly depends on the number of functional connections between hemispheres and the way these connections are distributed. Additionally, we investigated the consequences of node failure on hemispherical centrality, and showed how the abundance of inter-hemispheric links favors the functional balance of centrality distribution between the hemispheres.

摘要

今天,人类大脑可以被建模为一个图,其中节点代表不同的区域,而链接则代表不同神经影像学技术记录的活动之间的统计相互作用。实证研究提出了这样的假设,即大脑功能依赖于功能专门化的大脑区域(模块或子网)的分散镶嵌的协调,形成协调组件的网络状结构(网络的网络,NoN)。因此,对大脑动态的研究将受益于检查功能子网络之间的相互作用。在本文中,我们将大脑建模为一个由两个特定的子网络(左(L)和右(R)半球)组成的互联系统,它们相互竞争中心性,这是网络系统中重要性的拓扑度量。具体而言,我们考虑了源自高密度脑电图(EEG)记录的功能头皮 EEG 网络(SEN),并研究了节点中心性如何受到半球间连接的影响。我们的研究结果表明,中心性的分布强烈依赖于半球之间的功能连接数量及其分布方式。此外,我们还研究了节点故障对半球中心性的影响,并展示了半球间连接的丰富程度如何有利于半球之间的中心性分布的功能平衡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aff0/6035280/4e2fcaf30e4b/41598_2018_28467_Fig1_HTML.jpg

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