Higashihara Ayako, Nagano Yasuharu, Ono Takashi, Fukubayashi Toru
a The Japan Society for the Promotion of Science , Tokyo , Japan.
b Department of Health and Sports , Niigata University of Health and Welfare , Niigata , Japan.
Eur J Sport Sci. 2016;16(1):36-41. doi: 10.1080/17461391.2014.973913. Epub 2014 Oct 31.
The purpose of this study was to investigate the time series relationships between the peak musculotendon length and electromyography (EMG) activation during overground sprinting to clarify the risk of muscle strain injury incidence in each hamstring muscle. Full-body kinematics and EMG of the right biceps femoris long head (BFlh) and semitendinosus (ST) muscles were recorded in 13 male sprinters during overground sprinting at maximum effort. The hamstring musculotendon lengths during sprinting were computed using a three-dimensional musculoskeletal model. The time of the peak musculotendon length, in terms of the percentage of the running gait cycle, was measured and compared with that of the peak EMG activity. The maximum length of the hamstring muscles was noted during the late swing phase of sprinting. The peak musculotendon length was synchronous with the peak EMG activation in the BFlh muscle, while the time of peak musculotendon length in the ST muscle occurred significantly later than the peak level of EMG activation (p < 0.05). These results suggest that the BFlh muscle is exposed to an instantaneous high tensile force during the late swing phase of sprinting, indicating a higher risk for muscle strain injury.
本研究的目的是调查在地面冲刺过程中,肌肉肌腱长度峰值与肌电图(EMG)激活之间的时间序列关系,以阐明每块腘绳肌发生肌肉拉伤损伤的风险。在13名男性短跑运动员全力进行地面冲刺时,记录了右侧股二头肌长头(BFlh)和半腱肌(ST)的全身运动学和肌电图。使用三维肌肉骨骼模型计算冲刺过程中腘绳肌的肌肉肌腱长度。测量了肌肉肌腱长度峰值出现的时间(以跑步步态周期的百分比表示),并与肌电图活动峰值的时间进行比较。观察到腘绳肌在冲刺的摆动后期达到最大长度。BFlh肌肉的肌肉肌腱长度峰值与肌电图激活峰值同步,而ST肌肉的肌肉肌腱长度峰值出现的时间明显晚于肌电图激活峰值水平(p < 0.05)。这些结果表明,在冲刺的摆动后期,BFlh肌肉会受到瞬时高拉力,这表明其发生肌肉拉伤损伤的风险更高。