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小脑讲座:小脑核-小脑的核心。

Cerebellum Lecture: the Cerebellar Nuclei-Core of the Cerebellum.

机构信息

Department of Biomedical Engineering, Johns Hopkins University, Baltimore, MD, 21205, USA.

Division of Neuroscience, San Raffaele Scientific Institute, and San Raffaele University, Milan, Italy.

出版信息

Cerebellum. 2024 Apr;23(2):620-677. doi: 10.1007/s12311-022-01506-0. Epub 2023 Feb 13.

Abstract

The cerebellum is a key player in many brain functions and a major topic of neuroscience research. However, the cerebellar nuclei (CN), the main output structures of the cerebellum, are often overlooked. This neglect is because research on the cerebellum typically focuses on the cortex and tends to treat the CN as relatively simple output nuclei conveying an inverted signal from the cerebellar cortex to the rest of the brain. In this review, by adopting a nucleocentric perspective we aim to rectify this impression. First, we describe CN anatomy and modularity and comprehensively integrate CN architecture with its highly organized but complex afferent and efferent connectivity. This is followed by a novel classification of the specific neuronal classes the CN comprise and speculate on the implications of CN structure and physiology for our understanding of adult cerebellar function. Based on this thorough review of the adult literature we provide a comprehensive overview of CN embryonic development and, by comparing cerebellar structures in various chordate clades, propose an interpretation of CN evolution. Despite their critical importance in cerebellar function, from a clinical perspective intriguingly few, if any, neurological disorders appear to primarily affect the CN. To highlight this curious anomaly, and encourage future nucleocentric interpretations, we build on our review to provide a brief overview of the various syndromes in which the CN are currently implicated. Finally, we summarize the specific perspectives that a nucleocentric view of the cerebellum brings, move major outstanding issues in CN biology to the limelight, and provide a roadmap to the key questions that need to be answered in order to create a comprehensive integrated model of CN structure, function, development, and evolution.

摘要

小脑是许多大脑功能的关键参与者,也是神经科学研究的主要课题。然而,小脑核(CN)作为小脑的主要输出结构,往往被忽视。这种忽视是因为对小脑的研究通常集中在皮层上,倾向于将 CN 视为相对简单的输出核,将小脑皮层的信号反转传递到大脑的其他部分。在这篇综述中,我们采用以核为中心的观点来纠正这种印象。首先,我们描述了 CN 的解剖结构和模块化,并全面整合了 CN 的结构与高度组织但复杂的传入和传出连接。接着,我们对 CN 所包含的特定神经元类进行了新的分类,并推测了 CN 的结构和生理学对我们理解成年小脑功能的影响。基于对成人文献的全面回顾,我们提供了 CN 胚胎发育的全面概述,并通过比较各种脊索动物类群的小脑结构,提出了对 CN 进化的解释。尽管 CN 在小脑功能中具有至关重要的作用,但从临床角度来看,令人好奇的是,很少有(如果有的话)神经紊乱似乎主要影响 CN。为了突出这一奇特的异常,并鼓励未来以核为中心的解释,我们在综述的基础上,简要概述了目前与 CN 有关的各种综合征。最后,我们总结了以核为中心的小脑观点带来的具体视角,将 CN 生物学中的主要问题突显出来,并提供了一个路线图,以确定需要回答哪些关键问题,从而创建一个全面的 CN 结构、功能、发育和进化的综合模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d373/10951048/07ce60fd5d7d/12311_2022_1506_Fig1_HTML.jpg

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