Faculty of Medical Technology, Niigata University of Health and Welfare, Niigata, Japan.
Brain Res. 2012 Sep 14;1473:114-23. doi: 10.1016/j.brainres.2012.07.043. Epub 2012 Jul 31.
Reciprocal inhibition of antagonist muscles is crucial for motor skill learning in humans. However, the changes in reciprocal inhibition function during the motor learning process are unknown. The aim of this study was to systematically observe the changes in reciprocal inhibition function. We investigated the optimal coil position for simultaneously eliciting motor evoked potentials (MEPs) of reciprocal muscles, and the reciprocal changes in input-output (IO) curves during motor skill training. From ten healthy volunteers, the IO curves of MEPs were measured for the midpoint between the center of gravity (CoG) of the extensor carpi radialis (ECR) and the flexor carpi radialis (FCR) muscles, for the CoG of ECR, and for the FCR muscles using transcranial magnetic stimulation (TMS). In addition, the IO curves of the ECR and the FCR muscles were measured before and after the motor skill training of rapid wrist extension. The IO curves measured at the midpoint between the CoGs of the ECR and the FCR muscles and the CoG of each muscle were homogenous. However, after training to perform rapid wrist extension, the IO curve of the agonist (ECR) muscle was increased, while the antagonist (FCR) muscle was decreased. The present findings validate the IO curves simultaneously measured for reciprocal muscles, and suggest that motor skill training could induce reciprocal change in corticospinal excitability.
在人类运动技能学习中,拮抗肌的相互抑制至关重要。然而,运动学习过程中相互抑制功能的变化尚不清楚。本研究旨在系统观察相互抑制功能的变化。我们研究了同时诱发拮抗肌运动诱发电位(MEP)的最佳线圈位置,以及运动技能训练过程中输入-输出(IO)曲线的相互变化。我们从 10 名健康志愿者中,使用经颅磁刺激(TMS),分别在桡侧伸腕肌(ECR)和桡侧屈腕肌(FCR)的重力中心(CoG)之间中点、ECR 的 CoG 和 FCR 肌肉处测量 MEPs 的 IO 曲线。此外,我们还在快速腕伸运动技能训练前后测量了 ECR 和 FCR 肌肉的 IO 曲线。在 ECR 和 FCR 肌肉 CoG 之间中点以及每个肌肉的 CoG 处测量的 IO 曲线具有同质性。然而,在进行快速腕伸训练后,激动剂(ECR)肌肉的 IO 曲线增加,而拮抗剂(FCR)肌肉的 IO 曲线减少。本研究结果验证了同时测量拮抗肌的 IO 曲线,并表明运动技能训练可能会引起皮质脊髓兴奋性的相互变化。