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经颅直流电刺激初级运动皮层增强姿势控制的运动想象获益:一项初步研究。

Anodal tDCS over the primary motor cortex improves motor imagery benefits on postural control: A pilot study.

机构信息

Univ Lyon, Université Claude Bernard Lyon 1, Laboratoire Interuniversitaire de Biologie de la Motricité (EA 7424, LIBM), F-69622, Villeurbanne, France.

Universidad de Alcalá, Unidad de Fisioterapia. Campus Universitario, Ctra. Madrid Barcelona, 28801, Alcalá de Henares, Madrid, Spain.

出版信息

Sci Rep. 2017 Mar 28;7(1):480. doi: 10.1038/s41598-017-00509-w.

Abstract

Performing everyday actions requires fine postural control, which is a major focus of functional rehabilitation programs. Among the various range of training methods likely to improve balance and postural stability, motor imagery practice (MIP) yielded promising results. Transcranial direct current stimulation (tDCS) applied over the primary motor cortex was also found to potentiate the benefits of MIP on upper-limb motor tasks. Yet, combining both techniques has not been tested for tasks requiring fine postural control. To determine the impact of MIP and the additional effects of tDCS, 14 participants performed a postural control task before and after two experimental (MIP + anodal or sham tDCS over the primary motor cortex) and one control (control task + sham tDCS) conditions, in a double blind randomized study. Data revealed a significant decrease of the time required to perform the postural task. Greater performance gains were recorded when MIP was paired with anodal tDCS and when the task involved the most complex postural adjustments. Altogether, findings highlight short-term effects of MIP on postural control and suggest that combining MIP with tDCS might also be effective in rehabilitation programs for regaining postural skills in easily fatigable persons and neurologic populations.

摘要

进行日常活动需要精细的姿势控制,这是功能康复计划的主要重点。在各种可能改善平衡和姿势稳定性的训练方法中,运动意象练习(MIP)产生了有希望的结果。经颅直流电刺激(tDCS)施加于初级运动皮层也被发现可以增强 MIP 对上肢运动任务的益处。然而,对于需要精细姿势控制的任务,尚未对这两种技术的结合进行测试。为了确定 MIP 的影响以及 tDCS 的额外影响,14 名参与者在一项双盲随机研究中,在两个实验条件(MIP+初级运动皮层上的阳极或假 tDCS)和一个对照条件(对照任务+假 tDCS)之前和之后执行了一项姿势控制任务。数据显示,执行姿势任务所需的时间明显减少。当 MIP 与阳极 tDCS 结合使用并且任务涉及最复杂的姿势调整时,记录到更大的性能增益。总之,这些发现强调了 MIP 对姿势控制的短期影响,并表明将 MIP 与 tDCS 结合使用也可能对容易疲劳的人和神经人群中恢复姿势技能的康复计划有效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0963/5428691/928de59ceee2/41598_2017_509_Fig1_HTML.jpg

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