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随着跑步速度的增加,腘绳肌活动的功能差异。

Functional differences in the activity of the hamstring muscles with increasing running speed.

机构信息

Department of Orthopaedic Sports Medicine, Graduate School of Sport Sciences, Waseda University, Tokorozawa-shi, Saitama, Japan.

出版信息

J Sports Sci. 2010 Aug;28(10):1085-92. doi: 10.1080/02640414.2010.494308.

Abstract

In this study, we examined hamstring muscle activation at different running speeds to help better understand the functional characteristics of each hamstring muscle. Eight healthy male track and field athletes (20.1 +/- 1.1 years) performed treadmill running at 50%, 75%, 85%, and 95% of their maximum velocity. Lower extremity kinematics of the hip and knee joint were calculated. The surface electromyographic activities of the biceps femoris and semitendinosus muscles were also recorded. Increasing the running speed from 85% to 95% significantly increased the activation of the hamstring muscles during the late swing phase, while lower extremity kinematics did not change significantly. During the middle swing phase, the activity of the semitendinosus muscle was significantly greater than that of the biceps femoris muscle at 75%, 85%, and 95% of running speed. Statistically significant differences in peak activation time were observed between the biceps femoris and semitendinosus during 95%max running (P < 0.05 for stance phase, P < 0.01 for late swing phase). Significant differences in the activation patterns between the biceps femoris and semitendinosus muscles were observed as running speed was increased, indicating that complex neuromuscular coordination patterns occurred during the running cycle at near maximum sprinting speeds.

摘要

在这项研究中,我们检查了不同跑步速度下的腘绳肌激活情况,以更好地了解每个腘绳肌的功能特征。8 名健康的男性田径运动员(20.1 +/- 1.1 岁)在跑步机上以 50%、75%、85%和 95%的最大速度进行跑步。计算了髋关节和膝关节的下肢运动学。还记录了股二头肌和半腱肌的表面肌电图活动。从 85%增加到 95%的跑步速度显着增加了后期摆动阶段的腘绳肌激活,而下肢运动学没有显着变化。在中间摆动阶段,在 75%、85%和 95%的跑步速度下,半腱肌的活性明显大于股二头肌。在 95%最大跑步时(站立阶段 P <0.05,后期摆动阶段 P <0.01)观察到股二头肌和半腱肌的峰值激活时间存在显着差异。随着跑步速度的增加,观察到股二头肌和半腱肌之间的激活模式存在显着差异,这表明在接近最大冲刺速度的跑步周期中发生了复杂的神经肌肉协调模式。

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