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经颅磁刺激对运动技能学习中初级运动皮层和辅助运动区的影响比较(随机交叉研究)

Comparison of effects of transcranial magnetic stimulation on primary motor cortex and supplementary motor area in motor skill learning (randomized, cross over study).

作者信息

Kim Yong Kyun, Shin Sung Hun

机构信息

Department of Physical Medicine and Rehabilitation, Myongji Hospital, Kwandong University College of Medicine Kyunggi, South Korea.

Department of Physical Medicine and Rehabilitation, Kyung Hee University College of Medicine Seoul, South Korea.

出版信息

Front Hum Neurosci. 2014 Nov 20;8:937. doi: 10.3389/fnhum.2014.00937. eCollection 2014.

Abstract

Motor skills require quick visuomotor reaction time, fast movement time, and accurate performance. Primary motor cortex (M1) and supplementary motor area (SMA) are closely related in learning motor skills. Also, it is well known that high frequency repeated transcranial magnetic stimulation (rTMS) on these sites has a facilitating effect. The aim of this study was to compare the effects of high frequency rTMS activation of these two brain sites on learning of motor skills. Twenty three normal volunteers participated. Subjects were randomly stimulated on either brain area, SMA or M1. The motor task required the learning of sequential finger movements, explicitly or implicitly. It consisted of pressing the keyboard sequentially with their right hand on seeing 7 digits on the monitor explicitly, and then tapping the 7 digits by memorization, implicitly. Subjects were instructed to hit the keyboard as fast and accurately as possible. Using Musical Instrument Digital Interface (MIDI), the keyboard pressing task was measured before and after high frequency rTMS for motor performance, which was measured by response time (RT), movement time, and accuracy (AC). A week later, the same task was repeated by cross-over study design. At this time, rTMS was applied on the other brain area. Two-way ANOVA was used to assess the carry over time effect and stimulation sites (M1 and SMA), as factors. Results indicated that no carry-over effect was observed. The AC and RT were not different between the two stimulating sites (M1 and SMA). But movement time was significantly decreased after rTMS on both SMA and M1. The amount of shortened movement time after rTMS on SMA was significantly increased as compared to the movement time after rTMS on M1 (p < 0.05), especially for implicit learning of motor tasks. The coefficient of variation was lower in implicit trial than in explicit trial. In conclusion, this finding indicated an important role of SMA compared to M1, in implicit motor learning.

摘要

运动技能需要快速的视觉运动反应时间、快速的动作时间和准确的表现。初级运动皮层(M1)和辅助运动区(SMA)在运动技能学习中密切相关。此外,众所周知,在这些部位进行高频重复经颅磁刺激(rTMS)具有促进作用。本研究的目的是比较高频rTMS激活这两个脑区对运动技能学习的影响。23名正常志愿者参与了研究。受试者被随机刺激两个脑区中的一个,即SMA或M1。运动任务要求明确或隐含地学习连续的手指动作。它包括在显示器上明确看到7个数字时用右手依次按下键盘,然后隐含地通过记忆敲击这7个数字。受试者被要求尽可能快速准确地敲击键盘。使用乐器数字接口(MIDI),在高频rTMS前后测量键盘按压任务的运动表现,通过反应时间(RT)、动作时间和准确性(AC)来衡量。一周后,通过交叉研究设计重复相同的任务。此时,rTMS应用于另一个脑区。采用双向方差分析来评估作为因素的残留时间效应和刺激部位(M1和SMA)。结果表明未观察到残留效应。两个刺激部位(M1和SMA)之间的AC和RT没有差异。但在SMA和M1上进行rTMS后动作时间均显著缩短。与在M1上进行rTMS后的动作时间相比,在SMA上进行rTMS后动作时间缩短的幅度显著增加(p < 0.05),尤其是在运动任务的隐含学习方面。隐含试验中的变异系数低于明确试验。总之,这一发现表明,与M1相比,SMA在隐含运动学习中起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbdd/4238326/b1af2b842708/fnhum-08-00937-g0001.jpg

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