UCL Institute of Neurology and UCL Department of Neuroscience, Physiology, and Pharmacology, University College London, London, UK.
Department of Physiology, Feinberg School of Medicine, Northwestern University, Chicago, Illinois, USA.
Nat Neurosci. 2015 Feb;18(2):170-81. doi: 10.1038/nn.3917. Epub 2015 Jan 27.
Similarities in neocortical circuit organization across areas and species suggest a common strategy to process diverse types of information, including sensation from diverse modalities, motor control and higher cognitive processes. Cortical neurons belong to a small number of main classes. The properties of these classes, including their local and long-range connectivity, developmental history, gene expression, intrinsic physiology and in vivo activity patterns, are remarkably similar across areas. Each class contains subclasses; for a rapidly growing number of these, conserved patterns of input and output connections are also becoming evident. The ensemble of circuit connections constitutes a basic circuit pattern that appears to be repeated across neocortical areas, with area- and species-specific modifications. Such 'serially homologous' organization may adapt individual neocortical regions to the type of information each must process.
不同脑区和物种的新皮层回路组织具有相似性,这表明存在一种处理多种类型信息的共同策略,包括来自不同感觉模态的感觉、运动控制和高级认知过程。皮层神经元属于少数几个主要类别。这些类别的特性,包括它们的局部和长程连接、发育史、基因表达、内在生理学和体内活动模式,在不同脑区之间非常相似。每个类别都包含子类;对于其中越来越多的子类,其输入和输出连接的保守模式也变得明显。回路连接的集合构成了一个基本的回路模式,似乎在整个新皮层区域中重复出现,同时存在区域和物种特异性的修饰。这种“系列同源”的组织可能使每个新皮层区域适应其必须处理的信息类型。