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静息态下脑子网间和子网内的功能连接。

Functional connections between and within brain subnetworks under resting-state.

机构信息

Dept. of Anatomy, Histology, Forensic Medicine and Orthopedics Sapienza, University of Rome, Via Borelli 50, 00100, Roma, Italy.

出版信息

Sci Rep. 2020 Feb 26;10(1):3438. doi: 10.1038/s41598-020-60406-7.

Abstract

The focus of this paper is on the functional role of brain regions focusing on their modular architecture and individual variability. Our main assumption is that the more variable anti-correlation patterns reflect random connections, while the more conserved ones play a functional role. Within this framework, we expanded on previous results using a different database and a different methodological approach. Aiming to identify the role of specific functional connections within a global network organization which includes subnetworks, we found that the fronto-parietal module acts as the main source of anti-correlations. In addition, the pre-frontal regions (namely: frontal middle, frontal middle orbital, frontal inferior triangular) and the parietal inferior region are highly conserved and, at the same time, act as highly connected nodes, thus confirming their importance in functional modulation.

摘要

本文的重点是关注大脑区域的功能作用,特别关注它们的模块化结构和个体变异性。我们的主要假设是,更可变的反相关模式反映了随机连接,而更保守的模式则起着功能作用。在这个框架内,我们使用不同的数据库和方法扩展了之前的结果。我们的目的是在包括子网的全局网络组织中确定特定功能连接的作用,我们发现额顶模块作为反相关的主要来源。此外,额前区域(即:额中、额眶中、额下三角)和顶下区域高度保守,同时作为高度连接的节点,从而证实了它们在功能调节中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4b4/7044315/6ab7a02ebb1a/41598_2020_60406_Fig1_HTML.jpg

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