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猕猴腹侧顶内区已扩展为人类顶叶的三个同源区域。

The macaque ventral intraparietal area has expanded into three homologue human parietal areas.

作者信息

Foster Celia, Sheng Wei-An, Heed Tobias, Ben Hamed Suliann

机构信息

Biopsychology & Cognitive Neuroscience, Faculty of Psychology & Sports Science, Bielefeld University, Bielefeld, Germany; Center of Cognitive Interaction Technology (CITEC), Bielefeld University, Bielefeld, Germany.

Institut des Sciences Cognitives Marc Jeannerod, UMR5229, CNRS-University of Lyon 1, France.

出版信息

Prog Neurobiol. 2022 Feb;209:102185. doi: 10.1016/j.pneurobio.2021.102185. Epub 2021 Nov 11.

Abstract

The macaque ventral intraparietal area (VIP) in the fundus of the intraparietal sulcus has been implicated in a diverse range of sensorimotor and cognitive functions such as motion processing, multisensory integration, processing of head peripersonal space, defensive behavior, and numerosity coding. Here, we exhaustively review macaque VIP function, cytoarchitectonics, and anatomical connectivity and integrate it with human studies that have attempted to identify a potential human VIP homologue. We show that human VIP research has consistently identified three, rather than one, bilateral parietal areas that each appear to subsume some, but not all, of the macaque area's functionality. Available evidence suggests that this human "VIP complex" has evolved as an expansion of the macaque area, but that some precursory specialization within macaque VIP has been previously overlooked. The three human areas are dominated, roughly, by coding the head or self in the environment, visual heading direction, and the peripersonal environment around the head, respectively. A unifying functional principle may be best described as prediction in space and time, linking VIP to state estimation as a key parietal sensorimotor function. VIP's expansive differentiation of head and self-related processing may have been key in the emergence of human bodily self-consciousness.

摘要

猕猴顶内沟底部的腹侧顶内区(VIP)参与了多种感觉运动和认知功能,如运动处理、多感觉整合、头部周围空间处理、防御行为和数量编码。在这里,我们详尽地综述了猕猴VIP的功能、细胞结构和解剖连接,并将其与试图识别潜在人类VIP同源物的人体研究相结合。我们发现,人体VIP研究始终确定了三个而非一个双侧顶叶区域,每个区域似乎都包含了猕猴区域部分而非全部的功能。现有证据表明,这个人类“VIP复合体”是作为猕猴区域的扩展而进化的,但猕猴VIP内一些先前的初步特化被忽视了。这三个人类区域大致分别以编码环境中的头部或自我、视觉前进方向以及头部周围的个人空间为主。一个统一的功能原则可能最好被描述为在空间和时间上的预测,将VIP与作为关键顶叶感觉运动功能的状态估计联系起来。VIP在与头部和自我相关处理方面的广泛分化可能是人类身体自我意识出现的关键。

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