脚踝
拉伸缩短周期
运动学
地面反作用力
生物力学
触地
物理医学与康复
运动范围
刚度
跳跃
膝关节屈曲
机械能
口腔正畸科
医学
材料科学
结构工程
物理疗法
跳跃的
解剖
功率(物理)
工程类
物理
考古
量子力学
历史
生理学
经典力学
作者
Xiaole Sun,Rui Xia,Xini Zhang,Zhen Luo,Weijie Fu
出处
期刊:PubMed
[National Institutes of Health]
日期:2019-01-01
卷期号:21 (2): 11-19
被引量:2
摘要
PURPOSE: This study aimed to explore the effect of fatigue on the biomechanical contribution of the lower extremity joints during a typical stretch-shortening cycle (SSC) task. METHODS: 15 male athletes completed drop jump (DJ) under pre- and post-fatigue. Vicon motion capture system and 3D Kistler force plates were used to collect kinematics and ground reaction force data simultaneously. RESULTS: Under fatigue condition, 1) the DJ height decreased; the touchdown angle of knee and ankle reduced and the range of motion increased; 2) the maximum push-off moment and power of knee was reduced; 3) the stiffness of knee, ankle, and legs was reduced; 4) the energy generation and the net energy of the ankle decreased; 5) the energy contribution of knee decreased during the eccentric phase. CONCLUSIONS: Fatigue altered biomechanical contribution of the lower extremity joints by changing the movement pattern during DJ. The control ability of the knee and ankle were decreased. Eventually, the jump performance was reduced. In addition, the decrease of stiffness as well as the energy contribution of these joints can be used as sensitive indices to evaluate the performance of DJ after fatigue.
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