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肌张力障碍与小脑:运动障碍领域的新关注点?

Dystonia and the cerebellum: a new field of interest in movement disorders?

机构信息

Central European Institute of Technology, CEITEC MU, Behavioral and Social Neuroscience Research Group, Masaryk University, Brno, Czech Republic.

出版信息

Clin Neurophysiol. 2013 Jul;124(7):1269-76. doi: 10.1016/j.clinph.2013.01.003. Epub 2013 Feb 17.

Abstract

Although dystonia has traditionally been regarded as a basal ganglia dysfunction, recent provocative evidence has emerged of cerebellar involvement in the pathophysiology of this enigmatic disease. This review synthesizes the data suggesting that the cerebellum plays an important role in dystonia etiology, from neuroanatomical research of complex networks showing that the cerebellum is connected to a wide range of other central nervous system structures involved in movement control to animal models indicating that signs of dystonia are due to cerebellum dysfunction and completely disappear after cerebellectomy, and finally to clinical observations in secondary dystonia patients with various types of cerebellar lesions. We propose that dystonia is a large-scale dysfunction, involving not only cortico-basal ganglia-thalamo-cortical pathways, but the cortico-ponto-cerebello-thalamo-cortical loop as well. Even in the absence of traditional "cerebellar signs" in most dystonia patients, there are more subtle indications of cerebellar dysfunction. It is clear that as long as the cerebellum's role in dystonia genesis remains unexamined, it will be difficult to significantly improve the current standards of dystonia treatment or to provide curative treatment.

摘要

虽然特发性震颤传统上被认为是基底节功能障碍,但最近出现了一些挑衅性的证据表明小脑参与了这种神秘疾病的病理生理学。这篇综述综合了一些数据,表明小脑在特发性震颤的发病机制中起着重要作用,从显示小脑与涉及运动控制的其他广泛的中枢神经系统结构相连的复杂网络的神经解剖学研究,到表明特发性震颤迹象是由于小脑功能障碍的动物模型,以及小脑切除术后这些迹象完全消失,最后到伴有各种类型小脑病变的继发性特发性震颤患者的临床观察。我们提出特发性震颤是一种大规模的功能障碍,不仅涉及皮质基底节-丘脑-皮质回路,还涉及皮质-桥脑-小脑-丘脑-皮质回路。即使在大多数特发性震颤患者中没有传统的“小脑体征”,也存在更微妙的小脑功能障碍迹象。很明显,只要小脑在特发性震颤发病机制中的作用仍未得到检验,就很难显著提高特发性震颤的当前治疗标准或提供治愈性治疗。

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