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联络和联合连接的大脑皮层网络的组织原则。

Organizing principles for the cerebral cortex network of commissural and association connections.

机构信息

Department of Biological Sciences, University of Southern California, Los Angeles, CA 90089;

Department of Biological Sciences, University of Southern California, Los Angeles, CA 90089.

出版信息

Proc Natl Acad Sci U S A. 2017 Nov 7;114(45):E9692-E9701. doi: 10.1073/pnas.1712928114. Epub 2017 Oct 23.

Abstract

Cognition is supported by a network of axonal connections between gray matter regions within and between right and left cerebral cortex. Global organizing principles of this circuitry were examined with network analysis tools applied to monosynaptic association (within one side) and commissural (between sides) connections between all 77 cortical gray matter regions in each hemisphere of the rat brain. The analysis used 32,350 connection reports expertly collated from published pathway tracing experiments, and 5,394 connections of a possible 23,562 were identified, for a connection density of 23%-of which 20% (1,084) were commissural. Network community detection yielded a stable bihemispheric six-module solution, with an identical set in each hemisphere of three modules topographically forming a lateral core and medial shell arrangement of cortical regions. Functional correlations suggest the lateral module deals preferentially with environmental sensory-motor interactions and the ventromedial module deals preferentially with visceral control, affect, and short-term memory, whereas the dorsomedial module resembles the default mode network. Analysis of commissural connections revealed a set of unexpected rules to help generate hypotheses. Most notably, there is an order of magnitude more heterotopic than homotopic projections; all cortical regions send more association than commissural connections, and for each region, the latter are always a subset of the former; the number of association connections from each cortical region strongly correlates with the number of its commissural connections; and the module (dorsomedial) lying closest to the corpus callosum has the most complete set of commissural connections-and apparently the most complex function.

摘要

认知是由大脑皮层内和左右半球之间的轴突连接网络支持的。本研究应用网络分析工具,检查了该电路的全局组织原则,这些工具应用于大鼠大脑每个半球的 77 个皮质灰质区域之间的单突触(同侧)和连合(对侧)连接。该分析使用了 32350 个连接报告,这些报告是从已发表的路径追踪实验中精心整理的,其中 5394 个连接是可能的 23562 个连接中的一部分,连接密度为 23%,其中 20%(1084 个)为连合性连接。网络社区检测产生了一个稳定的双侧六模块解决方案,每个半球都有一个相同的模块,三个模块在拓扑上形成了皮质区域的外侧核心和内侧壳排列。功能相关性表明,外侧模块优先处理环境感觉运动相互作用,而腹侧模块优先处理内脏控制、情感和短期记忆,而背侧模块类似于默认模式网络。对连合性连接的分析揭示了一系列出乎意料的规则,有助于产生假设。最值得注意的是,异源性投射比同源性投射多一个数量级;所有皮质区域的关联投射比连合性投射多,对于每个区域,后者总是前者的子集;每个皮质区域的关联连接数量与连合连接数量强烈相关;并且最接近胼胝体的模块(背侧)具有最完整的连合性连接组-显然具有最复杂的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e66/5692583/dcd65bdb2cc7/pnas.1712928114fig01.jpg

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