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人类认知小脑的个体内部组织:紧密相邻、功能特化区域的证据。

Within-Individual Organization of the Human Cognitive Cerebellum: Evidence for Closely Juxtaposed, Functionally Specialized Regions.

作者信息

Saadon-Grosman Noam, Du Jingnan, Kosakowski Heather L, Angeli Peter A, DiNicola Lauren M, Eldaief Mark C, Buckner Randy L

机构信息

Department of Psychology, Center for Brain Science, Harvard University, Cambridge, MA 02138, USA.

Department of Psychiatry, Massachusetts General Hospital, Charlestown, MA 02129, USA.

出版信息

bioRxiv. 2023 Dec 18:2023.12.18.572062. doi: 10.1101/2023.12.18.572062.

Abstract

The human cerebellum possesses multiple regions linked to cerebral association cortex. Here we mapped the cerebellum using precision functional MRI within individual participants (N=15), first estimating regions using connectivity and then prospectively testing functional properties using independent task data. Network estimates in all participants revealed a Crus I / II cerebellar megacluster of five higher-order association networks often with multiple, discontinuous regions for the same network. Seed regions placed within the megaclusters, including the disjointed regions, yielded spatially selective networks in the cerebral cortex. Compelling evidence for functional specialization within the cerebellar megaclusters emerged from the task responses. Reflecting functional distinctions found in the cerebrum, domain-flexible cerebellar regions involved in cognitive control dissociated from distinct domain-specialized regions with differential responses to language, social, and spatial / episodic task demands. These findings provide a clear demonstration that the cerebellum encompasses multiple zones dedicated to cognition, featuring juxtaposed regions specialized for distinct processing domains.

摘要

人类小脑拥有多个与大脑联合皮质相连的区域。在这里,我们在个体参与者(N = 15)中使用精准功能磁共振成像对小脑进行映射,首先利用连通性估计区域,然后使用独立任务数据前瞻性地测试功能特性。所有参与者的网络估计显示,小脑 Crus I / II 存在一个由五个高阶联合网络组成的巨型簇,同一网络通常有多个不连续区域。置于巨型簇内的种子区域,包括不连续区域,在大脑皮质中产生了空间选择性网络。任务反应为小脑巨型簇内的功能特化提供了有力证据。反映在大脑中发现的功能差异,参与认知控制的领域灵活的小脑区域与对语言、社交和空间/情景任务需求有不同反应的不同领域专门区域相分离。这些发现清楚地表明,小脑包含多个专门用于认知的区域,其特点是并列存在专门用于不同处理领域的区域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4519/10769291/2412b514d609/nihpp-2023.12.18.572062v1-f0004.jpg

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