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重新思考小鼠视皮层与后顶叶皮层的边界

Reconsidering the Border between the Visual and Posterior Parietal Cortex of Mice.

机构信息

KU Leuven, Department of Biology & Leuven Brain Institute, 3000 Leuven, Belgium.

Neuro-Electronics Research Flanders, 3001 Leuven, Belgium.

出版信息

Cereb Cortex. 2021 Feb 5;31(3):1675-1692. doi: 10.1093/cercor/bhaa318.

DOI:10.1093/cercor/bhaa318
PMID:33159207
Abstract

The posterior parietal cortex (PPC) contributes to multisensory and sensory-motor integration, as well as spatial navigation. Based on primate studies, the PPC is composed of several subdivisions with differing connection patterns, including areas that exhibit retinotopy. In mice the composition of the PPC is still under debate. We propose a revised anatomical delineation in which we classify the higher order visual areas rostrolateral area (RL), anteromedial area (AM), and Medio-Medial-Anterior cortex (MMA) as subregions of the mouse PPC. Retrograde and anterograde tracing revealed connectivity, characteristic for primate PPC, with sensory, retrosplenial, orbitofrontal, cingulate and motor cortex, as well as with several thalamic nuclei and the superior colliculus in the mouse. Regarding cortical input, RL receives major input from the somatosensory barrel field, while AM receives more input from the trunk, whereas MMA receives strong inputs from retrosplenial, cingulate, and orbitofrontal cortices. These input differences suggest that each posterior PPC subregion may have a distinct function. Summarized, we put forward a refined cortical map, including a mouse PPC that contains at least 6 subregions, RL, AM, MMA and PtP, MPta, LPta/A. These anatomical results set the stage for a more detailed understanding about the role that the PPC and its subdivisions play in multisensory integration-based behavior in mice.

摘要

顶后皮质(PPC)参与多感觉和感觉运动整合,以及空间导航。基于灵长类动物的研究,PPC 由具有不同连接模式的几个亚区组成,包括表现出视网膜投射的区域。在小鼠中,PPC 的组成仍存在争议。我们提出了一个经过修订的解剖学划分,将更高阶的视觉区域,包括外侧顶区(RL)、前内侧区(AM)和中-中-前皮质(MMA),分类为小鼠 PPC 的亚区。逆行和顺行示踪显示了与感觉、后穹窿、眶额、扣带回和运动皮质,以及几个丘脑核和上丘的连接,这与灵长类动物的 PPC 特征一致。关于皮质输入,RL 主要接收来自体感桶状皮质的输入,而 AM 则更多地接收来自躯干的输入,而 MMA 则接收来自后穹窿、扣带回和眶额皮质的强烈输入。这些输入差异表明,每个后顶叶 PPC 亚区可能具有不同的功能。综上所述,我们提出了一个更精细的皮质图谱,包括至少 6 个亚区的小鼠 PPC,即 RL、AM、MMA 和 PtP、MPta、LPta/A。这些解剖学结果为更详细地了解 PPC 及其细分在基于多感觉整合的小鼠行为中的作用奠定了基础。

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