小鼠皮质-纹状体投射图谱。

The mouse cortico-striatal projectome.

作者信息

Hintiryan Houri, Foster Nicholas N, Bowman Ian, Bay Maxwell, Song Monica Y, Gou Lin, Yamashita Seita, Bienkowski Michael S, Zingg Brian, Zhu Muye, Yang X William, Shih Jean C, Toga Arthur W, Dong Hong-Wei

机构信息

USC Stevens Neuroimaging and Informatics Institute, Laboratory of Neuro Imaging (LONI), Keck School of Medicine of University of Southern California, Los Angeles, California, USA.

Zilkha Neurogenetic Institute, Keck School of Medicine of University of Southern California, Los Angeles, California, USA.

出版信息

Nat Neurosci. 2016 Aug;19(8):1100-14. doi: 10.1038/nn.4332. Epub 2016 Jun 20.

Abstract

Different cortical areas are organized into distinct intracortical subnetworks. The manner in which descending pathways from the entire cortex interact subcortically as a network remains unclear. We developed an open-access comprehensive mesoscale mouse cortico-striatal projectome: a detailed connectivity projection map from the entire cerebral cortex to the dorsal striatum or caudoputamen (CP) in rodents. On the basis of these projections, we used new computational neuroanatomical tools to identify 29 distinct functional striatal domains. Furthermore, we characterized different cortico-striatal networks and how they reconfigure across the rostral-caudal extent of the CP. The workflow was also applied to select cortico-striatal connections in two different mouse models of disconnection syndromes to demonstrate its utility for characterizing circuitry-specific connectopathies. Together, our results provide the structural basis for studying the functional diversity of the dorsal striatum and disruptions of cortico-basal ganglia networks across a broad range of disorders.

摘要

不同的皮质区域被组织成不同的皮质内子网。整个皮质的下行通路作为一个网络在皮质下相互作用的方式仍不清楚。我们开发了一个开放获取的全面中尺度小鼠皮质-纹状体投射图谱:一个从整个大脑皮质到啮齿动物背侧纹状体或尾壳核(CP)的详细连接投射图。基于这些投射,我们使用新的计算神经解剖学工具来识别29个不同的功能性纹状体区域。此外,我们还描述了不同的皮质-纹状体网络以及它们如何在CP的头-尾范围内重新配置。该工作流程还被应用于在两种不同的断连综合征小鼠模型中选择皮质-纹状体连接,以证明其在表征特定电路连接病变方面的效用。总之,我们的结果为研究背侧纹状体的功能多样性以及广泛疾病中皮质-基底神经节网络的破坏提供了结构基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0df/5564682/15048c56e6b1/nihms789157f1.jpg

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