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中风后步态障碍的非侵入性神经调节:原理、可行性及现状

Noninvasive Neuromodulation in Poststroke Gait Disorders: Rationale, Feasibility, and State of the Art.

作者信息

Chieffo Raffaella, Comi Giancarlo, Leocani Letizia

机构信息

Scientific Institute Vita-Salute University San Raffaele, Milan, Italy

Scientific Institute Vita-Salute University San Raffaele, Milan, Italy.

出版信息

Neurorehabil Neural Repair. 2016 Jan;30(1):71-82. doi: 10.1177/1545968315586464. Epub 2015 May 12.

Abstract

Walking rehabilitation is one of the primary goals in stroke survivors because of its great potential for recovery and its functional relevance in daily living activities. Although 70% to 80% of people in the chronic poststroke phases are able to walk, impairment of gait often persists, involving speed, endurance, and stability. Walking involves several brain regions, such as the sensorimotor cortex, supplementary motor area, cerebellum, and brainstem, which are approachable by the application of noninvasive brain stimulation (NIBS). NIBS techniques, such as repetitive transcranial magnetic stimulation and transcranial direct current stimulation, have been reported to modulate neural activity beyond the period of stimulation, facilitating neuroplasticity. NIBS methods have been largely applied for improving paretic hand motor function and stroke-associated cognitive deficits. Recent studies suggest a possible effectiveness of these techniques also in the recovery of poststroke gait disturbance. This article is a selective review about functional investigations addressing the mechanisms of lower-limb motor system reorganization after stroke and the application of NIBS for neurorehabilitation.

摘要

步行康复是中风幸存者的主要目标之一,因为它具有巨大的恢复潜力以及在日常生活活动中的功能相关性。尽管70%至80%的中风慢性期患者能够行走,但步态障碍往往持续存在,涉及速度、耐力和稳定性。步行涉及多个脑区,如感觉运动皮层、辅助运动区、小脑和脑干,这些脑区可通过无创脑刺激(NIBS)来进行干预。据报道,重复经颅磁刺激和经颅直流电刺激等NIBS技术可在刺激期之外调节神经活动,促进神经可塑性。NIBS方法已广泛应用于改善偏瘫手运动功能和中风相关的认知缺陷。最近的研究表明,这些技术在中风后步态障碍的恢复中也可能有效。本文是一篇选择性综述,内容涉及针对中风后下肢运动系统重组机制的功能研究以及NIBS在神经康复中的应用。

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