Cerebellar dysfunction in rodent models with dystonia, tremor, and ataxia

Dystonia Pub Date : 2023-12-08 DOI:10.3389/dyst.2023.11515
Meike E. van der Heijden, R. Sillitoe
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Abstract

Dystonia is a movement disorder characterized by involuntary co- or over-contractions of the muscles, which results in abnormal postures and movements. These symptoms arise from the pathophysiology of a brain-wide dystonia network. There is mounting evidence suggesting that the cerebellum is a central node in this network. For example, manipulations that target the cerebellum cause dystonic symptoms in mice, and cerebellar neuromodulation reduces these symptoms. Although numerous findings provide insight into dystonia pathophysiology, they also raise further questions. Namely, how does cerebellar pathophysiology cause the diverse motor abnormalities in dystonia, tremor, and ataxia? Here, we describe recent work in rodents showing that distinct cerebellar circuit abnormalities could define different disorders and we discuss potential mechanisms that determine the behavioral presentation of cerebellar diseases.
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肌张力障碍、震颤和共济失调啮齿动物模型的小脑功能障碍
肌张力障碍是一种运动障碍,其特征是肌肉不自主的共同收缩或过度收缩,导致异常的姿势和运动。这些症状是由全脑肌张力障碍网络的病理生理学引起的。越来越多的证据表明,小脑是这个网络的中心节点。例如,针对小脑的操作会引起小鼠的张力障碍症状,而小脑神经调节可以减轻这些症状。尽管许多研究结果为肌张力障碍的病理生理学提供了见解,但它们也提出了进一步的问题。也就是说,小脑病理生理是如何引起肌张力障碍、震颤和共济失调的各种运动异常的?在这里,我们描述了最近在啮齿动物中的工作,表明不同的小脑回路异常可以定义不同的疾病,我们讨论了决定小脑疾病行为表现的潜在机制。
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