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从解剖学连接性探索脑功能。

Exploring brain function from anatomical connectivity.

作者信息

Zamora-López Gorka, Zhou Changsong, Kurths Jürgen

机构信息

Bernstein Center for Computational Neuroscience Berlin, Germany.

出版信息

Front Neurosci. 2011 Jun 21;5:83. doi: 10.3389/fnins.2011.00083. eCollection 2011.

Abstract

The intrinsic relationship between the architecture of the brain and the range of sensory and behavioral phenomena it produces is a relevant question in neuroscience. Here, we review recent knowledge gained on the architecture of the anatomical connectivity by means of complex network analysis. It has been found that cortico-cortical networks display a few prominent characteristics: (i) modular organization, (ii) abundant alternative processing paths, and (iii) the presence of highly connected hubs. Additionally, we present a novel classification of cortical areas of the cat according to the role they play in multisensory connectivity. All these properties represent an ideal anatomical substrate supporting rich dynamical behaviors, facilitating the capacity of the brain to process sensory information of different modalities segregated and to integrate them toward a comprehensive perception of the real world. The results here exposed are mainly based on anatomical data of cats' brain, but further observations suggest that, from worms to humans, the nervous system of all animals might share these fundamental principles of organization.

摘要

大脑结构与其所产生的感觉和行为现象范围之间的内在关系是神经科学中的一个相关问题。在此,我们回顾通过复杂网络分析在解剖学连接结构方面获得的最新知识。已发现皮质 - 皮质网络呈现出一些显著特征:(i)模块化组织,(ii)丰富的替代处理路径,以及(iii)高度连接的枢纽的存在。此外,我们根据猫的皮质区域在多感觉连接中所起的作用提出了一种新颖的分类。所有这些特性代表了一个支持丰富动态行为的理想解剖学基础,有助于大脑处理分离的不同模态的感觉信息并将它们整合为对现实世界的全面感知。这里呈现的结果主要基于猫脑的解剖学数据,但进一步的观察表明,从蠕虫到人类,所有动物的神经系统可能都共享这些基本的组织原则。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9dc3/3124130/0b37b875c595/fnins-05-00083-g001.jpg

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