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小鼠大脑中运动皮质投射的三维连接组比较图谱。

Comparative three-dimensional connectome map of motor cortical projections in the mouse brain.

作者信息

Jeong Minju, Kim Yongsoo, Kim Jeongjin, Ferrante Daniel D, Mitra Partha P, Osten Pavel, Kim Daesoo

机构信息

Department of Biological Sciences, Korea Advanced Institute of Science &Technology, Daejeon, Korea, 305-338.

Cold Spring Harbor Laboratory, Cold Spring Harbor, New York, USA.

出版信息

Sci Rep. 2016 Feb 2;6:20072. doi: 10.1038/srep20072.

Abstract

The motor cortex orchestrates simple to complex motor behaviors through its output projections to target areas. The primary (MOp) and secondary (MOs) motor cortices are known to produce specific output projections that are targeted to both similar and different target areas. These projections are further divided into layer 5 and 6 neuronal outputs, thereby producing four cortical outputs that may target other areas in a combinatorial manner. However, the precise network structure that integrates these four projections remains poorly understood. Here, we constructed a whole-brain, three-dimensional (3D) map showing the tract pathways and targeting locations of these four motor cortical outputs in mice. Remarkably, these motor cortical projections showed unique and separate tract pathways despite targeting similar areas. Within target areas, various combinations of these four projections were defined based on specific 3D spatial patterns, reflecting anterior-posterior, dorsal-ventral, and core-capsular relationships. This 3D topographic map ultimately provides evidence for the relevance of comparative connectomics: motor cortical projections known to be convergent are actually segregated in many target areas with unique targeting patterns, a finding that has anatomical value for revealing functional subdomains that have not been classified by conventional methods.

摘要

运动皮层通过其向目标区域的输出投射来协调简单到复杂的运动行为。已知初级运动皮层(MOp)和次级运动皮层(MOs)会产生特定的输出投射,这些投射针对相似和不同的目标区域。这些投射进一步分为第5层和第6层神经元输出,从而产生四种皮层输出,它们可能以组合的方式靶向其他区域。然而,整合这四种投射的精确网络结构仍知之甚少。在这里,我们构建了一个全脑三维(3D)图谱,展示了小鼠中这四种运动皮层输出的神经束通路和靶向位置。值得注意的是,尽管这些运动皮层投射靶向相似区域,但它们显示出独特且分开的神经束通路。在目标区域内,基于特定的3D空间模式定义了这四种投射的各种组合,反映了前后、背腹和核心-被膜关系。这个3D地形图最终为比较连接组学的相关性提供了证据:已知趋同的运动皮层投射实际上在许多具有独特靶向模式的目标区域中是分离的,这一发现对于揭示传统方法未分类的功能亚域具有解剖学价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/187a/4735720/e900e65bb205/srep20072-f1.jpg

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