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灵长类动物的皮质纹状体回路的同源物。

Primate homologs of mouse cortico-striatal circuits.

机构信息

Department of Psychology, Royal Holloway University of London, Egham, United Kingdom.

Neural Control of Movement Laboratory, Department of Health Sciences and Technology, ETH Zurich, Switzerland.

出版信息

Elife. 2020 Apr 16;9:e53680. doi: 10.7554/eLife.53680.

Abstract

With the increasing necessity of animal models in biomedical research, there is a vital need to harmonise findings across species by establishing similarities and differences in rodent and primate neuroanatomy. Using connectivity fingerprint matching, we compared cortico-striatal circuits across humans, non-human primates, and mice using resting-state fMRI data in all species. Our results suggest that the connectivity patterns for the nucleus accumbens and cortico-striatal motor circuits (posterior/lateral putamen) were conserved across species, making them reliable targets for cross-species comparisons. However, a large number of human and macaque striatal voxels were not matched to any mouse cortico-striatal circuit (mouse->human: 85% unassigned; mouse->macaque 69% unassigned; macaque->human; 31% unassigned). These unassigned voxels were localised to the caudate nucleus and anterior putamen, overlapping with executive function and social/language regions of the striatum and connected to prefrontal-projecting cerebellar lobules and anterior prefrontal cortex, forming circuits that seem to be unique for non-human primates and humans.

摘要

随着生物医学研究中对动物模型的需求不断增加,通过建立啮齿动物和灵长类动物神经解剖学的相似性和差异性,对物种间的研究结果进行协调变得至关重要。我们使用连接指纹匹配,比较了人类、非人类灵长类动物和小鼠在所有物种的静息状态 fMRI 数据中的皮质纹状体回路。我们的研究结果表明,伏隔核和皮质纹状体运动回路(后/外侧苍白球)的连接模式在物种间是保守的,使其成为跨物种比较的可靠目标。然而,大量的人类和猕猴纹状体体素与任何小鼠皮质纹状体回路都不匹配(小鼠到人类:85%未分配;小鼠到猕猴:69%未分配;猕猴到人类:31%未分配)。这些未分配的体素位于尾状核和前苍白球,与纹状体的执行功能和社会/语言区域重叠,并与投射到前额叶的小脑小叶和前额叶前皮质相连,形成似乎仅存在于非人类灵长类动物和人类中的回路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86da/7162658/2d98b3385b4b/elife-53680-fig1.jpg

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