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模块化策略用于开发小鼠的分层视觉网络。

Modular strategy for development of the hierarchical visual network in mice.

机构信息

Department of Physiology, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.

Department of Molecular Physiology, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan.

出版信息

Nature. 2022 Aug;608(7923):578-585. doi: 10.1038/s41586-022-05045-w. Epub 2022 Aug 3.

Abstract

Hierarchical and parallel networks are fundamental structures of the mammalian brain. During development, lower- and higher-order thalamic nuclei and many cortical areas in the visual system form interareal connections and build hierarchical dorsal and ventral streams. One hypothesis for the development of visual network wiring involves a sequential strategy wherein neural connections are sequentially formed alongside hierarchical structures from lower to higher areas. However, this sequential strategy would be inefficient for building the entire visual network comprising numerous interareal connections. We show that neural pathways from the mouse retina to primary visual cortex (V1) or dorsal/ventral higher visual areas (HVAs) through lower- or higher-order thalamic nuclei form as parallel modules before corticocortical connections. Subsequently, corticocortical connections among V1 and HVAs emerge to combine these modules. Retina-derived activity propagating the initial parallel modules is necessary to establish retinotopic inter-module connections. Thus, the visual network develops in a modular manner involving initial establishment of parallel modules and their subsequent concatenation. Findings in this study raise the possibility that parallel modules from higher-order thalamic nuclei to HVAs act as templates for cortical ventral and dorsal streams and suggest that the brain has an efficient strategy for the development of a hierarchical network comprising numerous areas.

摘要

层次化和并行网络是哺乳动物大脑的基本结构。在发育过程中,较低和较高阶的丘脑核以及视觉系统中的许多皮质区域形成区域间连接,并构建了分层的背侧和腹侧流。视觉网络布线的发展的一个假设涉及一种顺序策略,其中神经连接沿着从低到高的区域的分层结构顺序形成。然而,对于构建包含众多区域间连接的整个视觉网络,这种顺序策略效率不高。我们表明,来自小鼠视网膜到初级视觉皮层(V1)或背/腹侧高级视觉区域(HVAs)的神经通路通过较低阶或较高阶的丘脑核形成平行模块,然后是皮质内连接。随后,V1 和 HVAs 之间的皮质内连接出现,将这些模块组合在一起。传播初始平行模块的视网膜衍生活动对于建立视网膜模块间连接是必要的。因此,视觉网络以模块化的方式发展,涉及初始平行模块的建立及其随后的连接。本研究中的发现提出了这样一种可能性,即来自较高阶丘脑核的平行模块作为皮质腹侧和背侧流的模板,并表明大脑具有一种有效的策略来发展包含众多区域的分层网络。

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