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震颤的临床与电生理研究

The clinical and electrophysiological investigation of tremor.

作者信息

Deuschl Günther, Becktepe Jos S, Dirkx Michiel, Haubenberger Dietrich, Hassan Anhar, Helmich Rick C, Muthuraman Muthuraman, Panyakaew Pattamon, Schwingenschuh Petra, Zeuner Kirsten E, Elble Rodger J

机构信息

Department of Neurology, Christian-Albrechts-University, Kiel, Germany.

Department of Neurology, Christian-Albrechts-University, Kiel, Germany.

出版信息

Clin Neurophysiol. 2022 Apr;136:93-129. doi: 10.1016/j.clinph.2022.01.004. Epub 2022 Jan 25.

Abstract

The various forms of tremor are now classified in two axes: clinical characteristics (axis 1) and etiology (axis 2). Electrophysiology is an extension of the clinical exam. Electrophysiologic tests are diagnostic of physiologic tremor, primary orthostatic tremor, and functional tremor, but they are valuable in the clinical characterization of all forms of tremor. Electrophysiology will likely play an increasing role in axis 1 tremor classification because many features of tremor are not reliably assessed by clinical examination alone. In particular, electrophysiology may be needed to distinguish tremor from tremor mimics, assess tremor frequency, assess tremor rhythmicity or regularity, distinguish mechanical-reflex oscillation from central neurogenic oscillation, determine if tremors in different body parts, muscles, or brain regions are strongly correlated, document tremor suppression or entrainment by voluntary movements of contralateral body parts, and document the effects of voluntary movement on rest tremor. In addition, electrophysiologic brain mapping has been crucial in our understanding of tremor pathophysiology. The electrophysiologic methods of tremor analysis are reviewed in the context of physiologic tremor and pathologic tremors, with a focus on clinical characterization and pathophysiology. Electrophysiology is instrumental in elucidating tremor mechanisms, and the pathophysiology of the different forms of tremor is summarized in this review.

摘要

目前,各种形式的震颤根据两个轴进行分类:临床特征(轴1)和病因(轴2)。电生理学是临床检查的延伸。电生理测试可诊断生理性震颤、原发性直立性震颤和功能性震颤,但它们在所有形式震颤的临床特征描述中都很有价值。电生理学在轴1震颤分类中可能会发挥越来越大的作用,因为许多震颤特征仅通过临床检查无法可靠评估。特别是,可能需要电生理学来区分震颤与震颤模仿,评估震颤频率,评估震颤节律性或规律性,区分机械反射振荡与中枢神经源性振荡,确定不同身体部位、肌肉或脑区的震颤是否高度相关,记录对侧身体部位的自主运动对震颤的抑制或夹带作用,以及记录自主运动对静止性震颤的影响。此外,电生理脑图谱在我们对震颤病理生理学的理解中至关重要。本文结合生理性震颤和病理性震颤对震颤分析的电生理方法进行综述,重点关注临床特征和病理生理学。电生理学有助于阐明震颤机制,本综述总结了不同形式震颤的病理生理学。

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