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人类大脑静息时的动态功能核心网络。

The dynamic functional core network of the human brain at rest.

机构信息

INSERM, U1099, F-35000, Rennes, France.

University of Rennes 1, LTSI, F-35000, Rennes, France.

出版信息

Sci Rep. 2017 Jun 7;7(1):2936. doi: 10.1038/s41598-017-03420-6.

Abstract

The human brain is an inherently complex and dynamic system. Even at rest, functional brain networks dynamically reconfigure in a well-organized way to warrant an efficient communication between brain regions. However, a precise characterization of this reconfiguration at very fast time-scale (hundreds of millisecond) during rest remains elusive. In this study, we used dense electroencephalography data recorded during task-free paradigm to track the fast temporal dynamics of spontaneous brain networks. Results obtained from network-based analysis methods revealed the existence of a functional dynamic core network formed of a set of key brain regions that ensure segregation and integration functions. Brain regions within this functional core share high betweenness centrality, strength and vulnerability (high impact on the network global efficiency) and low clustering coefficient. These regions are mainly located in the cingulate and the medial frontal cortex. In particular, most of the identified hubs were found to belong to the Default Mode Network. Results also revealed that the same central regions may dynamically alternate and play the role of either provincial (local) or connector (global) hubs.

摘要

人脑是一个固有复杂且动态的系统。即使在休息时,功能大脑网络也会以一种组织良好的方式动态重新配置,以保证大脑区域之间的有效通信。然而,在休息时非常快速的时间尺度(数百毫秒)内对这种重新配置进行精确描述仍然难以捉摸。在这项研究中,我们使用任务无关范式期间记录的密集脑电图数据来跟踪自发脑网络的快速时间动态。基于网络的分析方法的结果揭示了存在一个由一组关键大脑区域组成的功能动态核心网络,这些区域确保了大脑的分离和整合功能。该功能核心内的大脑区域具有较高的介数中心性、强度和脆弱性(对网络全局效率的影响较大)以及较低的聚类系数。这些区域主要位于扣带和内侧额皮质。特别是,大多数确定的枢纽都被发现属于默认模式网络。结果还表明,相同的中枢区域可能会动态交替并充当局部或全局枢纽。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d9b/5462789/df145b91acf9/41598_2017_3420_Fig1_HTML.jpg

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