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Strategies to improve impact efficiency in football kicking

机译:提高足球踢的影响效率的策略

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摘要

In football, kicking with high ball velocity can increase scoring opportunities and reduce the likelihood of interception. Efficient energy transfer from foot to ball during impact is important to attain a high ball velocity. It is considered impact efficiency can be increased by reducing the change in ankle plantarflexion during foot-ball impact. However, conflicting evidence exists, questioning its effectiveness as a coaching cue. The aim of the present study was to systematically analyse joint stiffness, foot velocity and impact location with a mechanical kicking machine to determine if change in ankle plantarflexion during foot-ball impact and ball velocity are influenced. Sagittal plane data of the shank, foot and ball were measured using high-speed video (4,000 Hz). Increasing joint stiffness reduced change in ankle plantarflexion and increased ball velocity from a greater effective mass. Increasing foot velocity increased change in ankle plantarflexion and increased ball velocity. Distal impact locations increased change in ankle plantarflexion and reduced ball velocity as coefficient of restitution decreased. These results identify that change in ankle plantarflexion is a dependent variable during foot-ball impact and does not directly influence ball velocity. Coaches can assess ankle motion during impact to provide feedback to athletes on their impact efficiency.
机译:在足球中,踢高球速度可以增加得分机会并降低拦截的可能性。在撞击期间从脚到球的高效能量转移对于达到高球速度是重要的。通过减少足球撞击期间减少脚踝跖屈的变化,可以增加它的影响效率。然而,存在相互矛盾的证据,质疑其作为教练提示的有效性。本研究的目的是通过机械踢动机系统地分析关节刚度,脚速度和冲击位置,以确定在足球撞击和球速期间踝关节腹部的变化。使用高速视频(4,000 Hz)测量柄部,脚和球的矢状平面数据。增加关节刚度降低踝关节跖骨的变化,从更大的有效质量增加球速度增加。增加脚速度的脚踝屈曲和增加的球速度增加。远端碰撞位置随着恢复系数减少而增加,踝关节跖骨有屈服和减少球速度的变化。这些结果识别脚踝跖骨的变化是足球冲击期间的依赖变量,并且不直接影响球速度。教练可以在影响过程中评估脚踝运动,为运动员提供反馈,以了解其影响效率。

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