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大脑网络的模块化和层次模块化组织。

Modular and hierarchically modular organization of brain networks.

作者信息

Meunier David, Lambiotte Renaud, Bullmore Edward T

机构信息

Centre for Speech, Language and the Brain, Department of Experimental Psychology, University of Cambridge Cambridge, UK.

出版信息

Front Neurosci. 2010 Dec 8;4:200. doi: 10.3389/fnins.2010.00200. eCollection 2010.

Abstract

Brain networks are increasingly understood as one of a large class of information processing systems that share important organizational principles in common, including the property of a modular community structure. A module is topologically defined as a subset of highly inter-connected nodes which are relatively sparsely connected to nodes in other modules. In brain networks, topological modules are often made up of anatomically neighboring and/or functionally related cortical regions, and inter-modular connections tend to be relatively long distance. Moreover, brain networks and many other complex systems demonstrate the property of hierarchical modularity, or modularity on several topological scales: within each module there will be a set of sub-modules, and within each sub-module a set of sub-sub-modules, etc. There are several general advantages to modular and hierarchically modular network organization, including greater robustness, adaptivity, and evolvability of network function. In this context, we review some of the mathematical concepts available for quantitative analysis of (hierarchical) modularity in brain networks and we summarize some of the recent work investigating modularity of structural and functional brain networks derived from analysis of human neuroimaging data.

摘要

脑网络越来越被理解为一大类信息处理系统之一,这些系统具有共同的重要组织原则,包括模块化社区结构的特性。模块在拓扑学上被定义为高度相互连接的节点的子集,这些节点与其他模块中的节点相对稀疏地连接。在脑网络中,拓扑模块通常由解剖学上相邻和/或功能相关的皮质区域组成,并且模块间连接往往是相对长距离的。此外,脑网络和许多其他复杂系统表现出层次模块化的特性,即在几个拓扑尺度上的模块化:在每个模块内会有一组子模块,在每个子模块内会有一组子子模块等等。模块化和层次模块化网络组织有几个普遍的优点,包括网络功能具有更高的稳健性、适应性和可进化性。在这种背景下,我们回顾一些可用于脑网络(层次)模块化定量分析的数学概念,并总结一些最近通过对人类神经影像数据进行分析来研究脑结构和功能网络模块化的工作。

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