Facultad de Medicina, Clínica Alemana Universidad del Desarrollo, Santiago, Chile.
Department of Neurology, BIDMC/Harvard Medical School, Boston, Massachusetts, U.S.A. and.
J Clin Neurophysiol. 2023 Feb 1;40(2):93-99. doi: 10.1097/WNP.0000000000000885. Epub 2022 Jun 30.
Diagnosing and characterizing myoclonus can be challenging. Many authors agree on the need to complement the clinical findings with an electrophysiological study to characterize the movements. Besides helping to rule out other movements that may look like myoclonus, electrophysiology can help localize the source of the movement. This article aims to serve as a practical manual on how to do a myoclonus study. For this purpose, the authors combine their experience with available evidence. The authors provide detailed descriptions of recording poly-electromyography, combining electroencephalography and electromyography, Bereitschaftspotentials, somatosensory evoked potentials, and startle techniques. The authors discuss analysis considerations for these data and provide a simplified algorithm for their interpretation. Finally, the authors discuss some factors that they believe have hindered the broader use of these useful techniques.
诊断和描述肌阵挛具有一定挑战性。许多作者都认为,需要将临床发现与电生理研究相结合,以对运动进行特征描述。除了有助于排除其他可能看起来像肌阵挛的运动外,电生理学还可以帮助定位运动的来源。本文旨在为如何进行肌阵挛研究提供实用手册。为此,作者结合了他们的经验和现有证据。作者详细描述了记录多导肌电图、结合脑电图和肌电图、准备电位、体感诱发电位和惊跳技术。作者讨论了对这些数据的分析注意事项,并提供了一种简化的算法来解释这些数据。最后,作者讨论了一些他们认为阻碍这些有用技术更广泛应用的因素。