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屏状核中拓扑组织的网络反映了功能模块化。

Topologically Organized Networks in the Claustrum Reflect Functional Modularization.

作者信息

Ham Gao Xiang, Augustine George J

机构信息

Lee Kong Chian School of Medicine, Nanyang Technological University, Singapore, Singapore.

出版信息

Front Neuroanat. 2022 Jun 23;16:901807. doi: 10.3389/fnana.2022.901807. eCollection 2022.

Abstract

Using genetic strategies and viral-based directional tracers, we investigated the topological location and output networks of claustrum (CLA) neuron populations projecting to either the retrosplenial cortex, primary motor cortex, or basolateral amygdala. We found that all three CLA neuron populations clearly reside in distinct topological locations within the CLA complex and project broadly to multiple downstream targets. Each neuron population projects to different targets, suggesting that each CLA subzone coordinates a unique set of brain-wide functions. Our findings establish that the claustrum complex encompasses at least three minimally overlapping networks that are compartmentalized into different topological subzones. Such modularity is likely to be important for CLA function.

摘要

利用遗传策略和基于病毒的定向示踪剂,我们研究了投射到 retrosplenial 皮质、初级运动皮质或基底外侧杏仁核的屏状核(CLA)神经元群体的拓扑位置和输出网络。我们发现,所有这三个 CLA 神经元群体明显位于 CLA 复合体中不同的拓扑位置,并广泛投射到多个下游靶点。每个神经元群体投射到不同的靶点,这表明每个 CLA 子区域协调一组独特的全脑功能。我们的研究结果表明,屏状核复合体包含至少三个最小重叠的网络,这些网络被分隔成不同的拓扑子区域。这种模块化可能对 CLA 的功能很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe65/9259979/c6df2bad57a3/fnana-16-901807-g0001.jpg

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