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灵长类动物大脑中社会认知的专门网络。

Specialized Networks for Social Cognition in the Primate Brain.

机构信息

Psychology Department & Tulane Brain Institute, Tulane University, New Orleans, Louisiana, USA.

Neural Circuits and Cognition Lab, European Neuroscience Institute Göttingen, A Joint Initiative of the University Medical Center Göttingen and the Max Planck Society; Perception and Plasticity Group, German Primate Center, Leibniz Institute for Primate Research; and Leibniz-Science Campus Primate Cognition, Göttingen, Germany.

出版信息

Annu Rev Neurosci. 2023 Jul 10;46:381-401. doi: 10.1146/annurev-neuro-102522-121410.

Abstract

Primates have evolved diverse cognitive capabilities to navigate their complex social world. To understand how the brain implements critical social cognitive abilities, we describe functional specialization in the domains of face processing, social interaction understanding, and mental state attribution. Systems for face processing are specialized from the level of single cells to populations of neurons within brain regions to hierarchically organized networks that extract and represent abstract social information. Such functional specialization is not confined to the sensorimotor periphery but appears to be a pervasive theme of primate brain organization all the way to the apex regions of cortical hierarchies. Circuits processing social information are juxtaposed with parallel systems involved in processing nonsocial information, suggesting common computations applied to different domains. The emerging picture of the neural basis of social cognition is a set of distinct but interacting subnetworks involved in component processes such as face perception and social reasoning, traversing large parts of the primate brain.

摘要

灵长类动物进化出了多种多样的认知能力,以适应其复杂的社会世界。为了理解大脑如何实现关键的社会认知能力,我们描述了在面部处理、社会互动理解和心理状态归因等领域的功能专业化。从单个细胞到大脑区域内神经元群体再到层次化组织的网络,面部处理系统都具有专业化功能,这些系统提取和表示抽象的社会信息。这种功能专业化不仅局限于感觉运动外围,而且似乎是灵长类动物大脑组织的一个普遍主题,一直延伸到皮质层次结构的顶点区域。处理社会信息的回路与涉及非社会信息处理的平行系统并列,这表明共同的计算适用于不同的领域。社交认知的神经基础的新兴图景是一组不同但相互作用的子网,涉及到面部感知和社交推理等组成过程,这些子网贯穿了灵长类动物大脑的大部分区域。

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