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熟练的骑行训练可诱导健康人下肢运动皮层区域的皮质可塑性。

Skillful Cycling Training Induces Cortical Plasticity in the Lower Extremity Motor Cortex Area in Healthy Persons.

作者信息

Tatemoto Tsuyoshi, Tanaka Satoshi, Maeda Kazuhei, Tanabe Shigeo, Kondo Kunitsugu, Yamaguchi Tomofumi

机构信息

Graduate School of Health Sciences, Fujita Health University, Aichi, Japan.

Laboratory of Psychology, Hamamatsu University School of Medicine, Shizuoka, Japan.

出版信息

Front Neurosci. 2019 Sep 3;13:927. doi: 10.3389/fnins.2019.00927. eCollection 2019.

Abstract

Cycling exercise is commonly used in rehabilitation to improve lower extremity (LE) motor function and gait performance after stroke. Motor learning is important for regaining motor skills, suggesting that training of motor skills influences cortical plasticity. However, the effects of motor skill learning in dynamic alternating movements of both legs on cortical plasticity remain unclear. Here, we examined the effects of skillful cycling training on cortical plasticity of the LE motor area in healthy adults. Eleven healthy volunteers participated in the following three sessions on different days: skillful cycling training, constant-speed cycling training, and rest condition. Skillful cycling training required the navigation of a marker up and down curves by controlling the rotation speed of the pedals. Participants were instructed to fit the marker to the target curves as accurately as possible. Amplitudes of motor evoked potentials (MEPs) and short-interval intracortical inhibition (SICI) evoked using transcranial magnetic stimulation (TMS) were assessed at baseline, after every 10 min of the task (a total of 30 min), and 30 min after the third and final trial. A decrease in tracking errors was representative of the formation of motor learning following skillful cycling training. Compared to baseline, SICI was significantly decreased after skillful cycling training in the tibialis anterior (TA) muscle. The task-induced alterations of SICI were more prominent and lasted longer with skillful cycling training than with the other conditions. The changes in SICI were negatively correlated with a change in tracking error ratio at 20 min the task. MEP amplitudes were not significantly altered with any condition. In conclusion, skillful cycling training induced long-lasting plastic changes of intracortical inhibition, which corresponded to the learning process in the LE motor cortex. These findings suggest that skillful cycling training would be an effective LE rehabilitation method after stroke.

摘要

骑自行车运动常用于康复治疗,以改善中风后下肢(LE)的运动功能和步态表现。运动学习对于恢复运动技能很重要,这表明运动技能训练会影响皮质可塑性。然而,双腿动态交替运动中的运动技能学习对皮质可塑性的影响仍不清楚。在此,我们研究了熟练的骑自行车训练对健康成年人LE运动区皮质可塑性的影响。11名健康志愿者在不同日期参加了以下三个阶段的实验:熟练的骑自行车训练、恒速骑自行车训练和休息状态。熟练的骑自行车训练要求通过控制踏板的转速使一个标记物在上下曲线上移动。参与者被要求尽可能准确地使标记物与目标曲线对齐。在基线时、任务进行每10分钟后(共30分钟)以及第三次也是最后一次试验后30分钟,使用经颅磁刺激(TMS)评估运动诱发电位(MEP)的幅度和短间隔皮质内抑制(SICI)。跟踪误差的减少代表了熟练的骑自行车训练后运动学习的形成。与基线相比,熟练的骑自行车训练后胫骨前肌(TA)的SICI显著降低。与其他条件相比,熟练的骑自行车训练使任务诱导的SICI变化更显著且持续时间更长。在任务进行20分钟时,SICI的变化与跟踪误差率的变化呈负相关。在任何条件下,MEP幅度均无显著改变。总之,熟练的骑自行车训练诱导了皮质内抑制的持久可塑性变化,这与LE运动皮层的学习过程相对应。这些发现表明,熟练的骑自行车训练将是中风后一种有效的LE康复方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/121d/6733988/e7078cc97f74/fnins-13-00927-g001.jpg

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