Information Exchange between Cortical Areas: The Visual System as a Model.

IF 3.5 3区 医学 Q1 CLINICAL NEUROLOGY Neuroscientist Pub Date : 2023-06-01 DOI:10.1177/10738584211069061
Hang Zeng, Siyi Chen, Gereon R Fink, Ralph Weidner
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Abstract

As nearly all brain functions, perception, motion, and higher-order cognitive functions require coordinated neural information processing within distributed cortical networks. Over the past decades, new theories and techniques emerged that advanced our understanding of how information is transferred between cortical areas. This review surveys critical aspects of interareal information exchange. We begin by examining the brain's structural connectivity, which provides the basic framework for interareal communication. We then illustrate information exchange between cortical areas using the visual system as an example. Next, well-studied and newly proposed theories that may underlie principles of neural communication are reviewed, highlighting recent work that offers new perspectives on interareal information exchange. We finally discuss open questions in the study of the neural mechanisms underlying interareal information exchange.

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皮质区域间的信息交换:视觉系统模型。
几乎所有的大脑功能,感知、运动和高阶认知功能都需要在分布式皮质网络中协调神经信息处理。在过去的几十年里,新的理论和技术的出现,提高了我们对信息如何在皮层区域之间传递的理解。本综述调查了区域间信息交流的关键方面。我们从检查大脑的结构连接开始,它为区域间交流提供了基本框架。然后,我们以视觉系统为例说明皮层区域之间的信息交换。接下来,我们将回顾一些已经得到充分研究的新提出的理论,这些理论可能是神经通讯原理的基础,重点介绍最近为区域间信息交换提供新视角的工作。最后,我们讨论了区域间信息交换的神经机制研究中的开放性问题。
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来源期刊
Neuroscientist
Neuroscientist 医学-临床神经学
CiteScore
11.50
自引率
0.00%
发文量
68
期刊介绍: Edited by Stephen G. Waxman, The Neuroscientist (NRO) reviews and evaluates the noteworthy advances and key trends in molecular, cellular, developmental, behavioral systems, and cognitive neuroscience in a unique disease-relevant format. Aimed at basic neuroscientists, neurologists, neurosurgeons, and psychiatrists in research, academic, and clinical settings, The Neuroscientist reviews and updates the most important new and emerging basic and clinical neuroscience research.
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