跆拳道后横踢动作运动员膝关节肌肉用力特征研究
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1.武汉体育学院 运动健康智能装备湖北省工程研究中心,湖北 武汉,430079;2.武汉体育学院 竞技体育学院,湖北 武汉,430079;3.武汉体育学院 国家体育总局体育工程重点实验室,湖北 武汉,430079;4.西北工业大学体育部 智能体育工程研究中心,陕西 西安,710072;5.武汉体育学院 湖北省运动装备工程技术研究中心,湖北 武汉,430079

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Investigation on the Muscle Force Characteristics of Knee Joints in Taekwondo Back Kick
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1.Engineering Research Center of Sports Health Intelligent Equipment of Hubei Province, Wuhan Sports University, Wuhan, China;2.School of Competitive Sports, Wuhan Sports University, Wuhan, China;3.Key Laboratory of Sports Engineering of General Administration of Sports of China, Wuhan Sports University, Wuhan, China;4.Department of Physical Education, Northwest Polytechnical University, Xi’an, China;5.Research Center of Sports Equipment Engineering Technology of Hubei Province, Wuhan Sports University, Wuhan, China

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    摘要:

    目的 探索跆拳道后横踢动作膝关节的肌肉发力特征。方法 通过DaeDo电子打分系统并配合Vicon光学动作捕捉系统、Kistler三维测力台,采集12名高水平竞技跆拳道运动员后横踢动作运动学和动力学数据,通过OpenSim软件进行模拟,计算膝关节的肌肉力、关节力矩、关节刚度及肌肉协同工作模式。结果 进攻腿在提膝时刻的膝关节冠状轴力矩和回收时刻的冠状轴力矩相似,而矢状轴力矩在击打时刻达到峰值。垂直轴力矩在击打时刻相较准备时刻增加较小,显示出平稳的趋势。支撑腿在提膝时刻的冠状轴力矩最大,矢状轴力矩在击打时刻最大,而垂直轴力矩在准备时刻最大。进攻腿和支撑腿的膝关节在提膝时刻出现了较高的关节刚度,这可能会导致十字韧带等关节结构损伤。肌肉力方面,进攻腿的半膜肌、半腱肌等肌群在击打时刻表现出力峰值,支撑腿则在回收时段力峰值较大。此外,本研究发现四类肌肉协同模式,表明在后横踢动作中存在复杂的神经肌肉协调机制。结论 进攻腿在提膝和击打时刻膝关节冠状轴力矩较大,矢状轴力矩在击打时刻达到峰值;支撑腿在提膝时刻膝关节冠状轴力矩最高,矢状轴力矩在击打时刻达峰值。进攻腿半膜肌和股二头肌长头在击打时段力量较大,支撑腿半膜肌和腓肠肌内侧头则在回收时段力更大,跆拳道后横踢动作中存在四种肌肉协同模式。

    Abstract:

    Objective The muscle force characteristics of the knee joint during the roundhouse kick in Taekwondo is explored. Methods Using the DaeDo electronic scoring system, Vicon optical motion capture system, and Kistler three-dimensional force plates, we collected kinematic and dynamic data from 12 elite Taekwondo athletes. The OpenSim software was used to simulate these movements and calculate muscle forces, joint torques, joint stiffness, and muscle coordination patterns of the knee joints. Results For the attacking leg, the coronal axis torque at the knee joint was significant during the knee-lifting and recovery moments, showing similar values, while the sagittal axis torque peaked during the striking moment. The vertical axis torque increased slightly at the striking moment compared to the preparation moment, indicating a stable trend. For the supporting leg, the coronal axis torque was highest during the knee-lifting moment, the sagittal axis torque peaked at the striking moment, and the vertical axis torque was highest at the preparation moment. High joint stiffness observed in both legs during the knee-lifting moment could potentially lead to injuries of joint structures such as the ACL. In terms of muscle forces, muscles like the semimembranosus and semitendinosus of the attacking leg reached their peak forces during the striking moment, whereas the supporting leg showed greater forces during the recovery phase. Additionally, four patterns of muscle coordination were identified, demonstrating complex neuromuscular coordination during the roundhouse kick motion. Conclusions During the knee-lifting and striking phases, the coronal axis torque of the knee joint in the attacking leg is significant, while the sagittal axis torque peaks at the moment of strike. For the supporting leg, the highest coronal axis torque of the knee joint occurs during knee lifting, with the sagittal axis torque reaching its peak during the strike. In terms of muscle activity, the semimembranosus and the long head of the biceps femoris in the attacking leg exert greater force during the striking phase, whereas the semimembranosus and the medial head of the gastrocnemius in the supporting leg are more active during the recovery phase. There are four cooperative muscle patterns present in the action of a taekwondo backside kick.

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  • 收稿日期:2024-04-16
  • 最后修改日期:2024-05-22
  • 录用日期:2024-05-29
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