College of Physical Education, China University of Mining and Technology, Xuzhou, Jiangsu, China.
Department of Medical Imaging, Xuzhou Medical University, Xuzhou, Jiangsu, China.
J Healthc Eng. 2021 Nov 30;2021:5185758. doi: 10.1155/2021/5185758. eCollection 2021.
This study finds the lower limbs' reactive strength index and biomechanical parameters on variable heights.
This research aims to reveal the effects of drop height on lower limbs' reactive strength index and biomechanical parameters.
Two AMTI force platforms and Vicon motion capture system were used to collect kinematic and dynamic signals of the lower limbs.
The drop height had significant effects on peak vertical ground reaction force and peak vertical ground reaction force in the extension phase, lower limbs' support moment, eccentric power of the hip joint, eccentric power of the knee joint, eccentric power of the ankle joint, and concentric power of the hip joint. The drop height had no significant effects on the reactive strength index. Reactive strength index (RSI) had no significant correlations with the personal best of high jumpers. The optimal loading height for the maximum reactive strength index was 0.45 m.
The optimal loading height for the reactive strength index can be used for explosive power training and lower extremity injury prevention.
本研究发现了不同高度下下肢的反应力量指数和生物力学参数。
本研究旨在揭示下落高度对下肢反应力量指数和生物力学参数的影响。
使用两台 AMTI 力台和 Vicon 运动捕捉系统来收集下肢的运动学和动力学信号。
下落高度对垂直地面反作用力峰值和伸展阶段的垂直地面反作用力峰值、下肢支撑力矩、髋关节的离心功率、膝关节的离心功率、踝关节的离心功率和髋关节的向心功率有显著影响。下落高度对反应力量指数没有显著影响。反应力量指数(RSI)与跳高运动员的个人最佳成绩没有显著相关性。最大反应力量指数的最佳加载高度为 0.45m。
反应力量指数的最佳加载高度可用于爆发力训练和下肢损伤预防。