Ohta Yoichi, Nakamoto Hiroki, Ishii Yasumitsu, Ikudome Sachi, Takahashi Kyohei, Shima Norihiro
Faculty of Health and Medical Sciences, Department of Sports and Health Sciences, Aichi Shukutoku University, Aichi, Japan.
Faculty of Sports Humanities and Applied Social Science, Department of Physical Education, National Institute of Fitness and Sports in Kanoya, Kagoshima, Japan.
PLoS One. 2015 Apr 28;10(4):e0124113. doi: 10.1371/journal.pone.0124113. eCollection 2014.
This study aimed to clarify the activation characteristics of the vastus lateralis muscle in the front leg during timing correction for a sudden decrease in the velocity of a target during baseball swings. Eleven male collegiate baseball players performed coincident timing tasks that comprised constant velocity of 8 m/s (unchanged) and a sudden decrease in velocity from 8 to 4 m/s (decreased velocity). Electromyography (EMG) revealed that the muscle activation was typically monophasic when responding unchanged conditions. The type of muscle activation during swings in response to decreased velocity condition was both monophasic and biphasic. When biphasic activation appeared in response to decreased velocity, the impact time and the time to peak EMG amplitude were significantly prolonged and the timing error was significantly smaller than that of monophasic activation. However, the EMG onset from the target start was consistent both monophasic and biphasic activation in response to conditions of decreased velocity. In addition, batters with small timing errors in response to decreased velocity were more likely to generate biphasic EMG activation. These findings indicated that timing correction for a sudden decrease in the velocity of an oncoming target is achieved by modifying the muscle activation characteristics of the vastus lateralis muscle of front leg from monophasic to biphasic to delay reaching peak muscle activation and thus prolong impact time. Therefore, the present findings suggests that the extent of timing errors in response to decreased velocity is influenced by the ability to correct muscle activation after its initiation rather than by delaying the initiation timing of muscle activation during baseball swings.
本研究旨在阐明在棒球挥棒过程中,当目标速度突然下降进行时机校正时,前腿股外侧肌的激活特征。11名男性大学棒球运动员执行了同步时机任务,包括8米/秒的恒定速度(不变)以及从8米/秒突然降至4米/秒的速度下降(速度降低)。肌电图(EMG)显示,在应对不变条件时,肌肉激活通常为单相。在速度降低条件下挥棒时的肌肉激活类型既有单相也有双相。当因速度降低出现双相激活时,击球时间和肌电图振幅峰值时间显著延长,且时机误差显著小于单相激活时。然而,在速度降低条件下,从目标开始到肌电图起始,单相和双相激活的情况都是一致的。此外,在速度降低时时机误差较小的击球手更有可能产生双相肌电图激活。这些发现表明,通过将前腿股外侧肌的肌肉激活特征从单相改变为双相,以延迟达到肌肉激活峰值,从而延长击球时间,来实现对迎面而来目标速度突然下降的时机校正。因此,目前的研究结果表明,对速度降低的时机误差程度受肌肉激活启动后校正能力的影响,而不是受棒球挥棒过程中肌肉激活启动时间延迟的影响。