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经颅直流电刺激作为一种运动神经康复工具:实证综述。

Transcranial direct current stimulation as a motor neurorehabilitation tool: an empirical review.

作者信息

Sánchez-Kuhn Ana, Pérez-Fernández Cristian, Cánovas Rosa, Flores Pilar, Sánchez-Santed Fernando

机构信息

University of Almería, Almería, Spain.

Instituto de Neurorehabilitación Infantil InPaula, Almería, Spain.

出版信息

Biomed Eng Online. 2017 Aug 18;16(Suppl 1):76. doi: 10.1186/s12938-017-0361-8.

Abstract

The present review collects the most relevant empirical evidence available in the literature until date regarding the effects of transcranial direct current stimulation (tDCS) on the human motor function. tDCS in a non-invasive neurostimulation technique that delivers a weak current through the brain scalp altering the cortical excitability on the target brain area. The electrical current modulates the resting membrane potential of a variety of neuronal population (as pyramidal and gabaergic neurons); raising or dropping the firing rate up or down, depending on the nature of the electrode and the applied intensity. These local changes additionally have shown long-lasting effects, evidenced by its promotion of the brain-derived neurotrophic factor. Due to its easy and safe application and its neuromodulatory effects, tDCS has attracted a big attention in the motor neurorehabilitation field among the last years. Therefore, the present manuscript updates the knowledge available about the main concept of tDCS, its practical use, safety considerations, and its underlying mechanisms of action. Moreover, we will focus on the empirical data obtained by studies regarding the application of tDCS on the motor function of healthy and clinical population, comprising motor deficiencies of a variety of pathologies as Parkinson's disease, stroke, multiple sclerosis and cerebral palsy, among others. Finally, we will discuss the main current issues and future directions of tDCS as a motor neurorehabilitation tool.

摘要

本综述收集了迄今为止文献中关于经颅直流电刺激(tDCS)对人类运动功能影响的最相关实证证据。tDCS是一种非侵入性神经刺激技术,通过头皮向大脑输送微弱电流,改变目标脑区的皮质兴奋性。电流调节多种神经元群体(如锥体神经元和γ-氨基丁酸能神经元)的静息膜电位;根据电极的性质和施加的强度,提高或降低放电频率。这些局部变化还显示出持久的影响,脑源性神经营养因子的增加证明了这一点。由于其应用简便、安全及其神经调节作用,tDCS在过去几年中在运动神经康复领域引起了广泛关注。因此,本手稿更新了关于tDCS的主要概念、实际应用、安全考虑及其潜在作用机制的现有知识。此外,我们将重点关注关于tDCS应用于健康人群和临床人群运动功能的研究获得的实证数据,这些人群包括帕金森病、中风、多发性硬化症和脑瘫等多种疾病引起的运动缺陷。最后,我们将讨论tDCS作为运动神经康复工具当前的主要问题和未来方向。

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