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The influence of joint rigidity on impact efficiency and ball velocity in football kicking

机译:联合刚度对足球踢的影响效率和球速的影响

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Executing any skill with efficiency is important for performance. In football kicking, conflicting and non-significant results have existed between reducing ankle plantarflexion during foot-ball contact with impact efficiency, making it unclear as to its importance as a coaching instruction. The aims of this study were to first validate a mechanical kicking machine with a non-rigid ankle, and secondly compare a rigid to a non-rigid ankle during the impact phase of football kicking. Measures of foot-ball contact for ten trials per ankle configuration were calculated from data recorded at 4000 Hz and compared. The non-rigid ankle was characterised by initial dorsiflexion followed by plantarflexion for the remainder of impact, and based on similarities to punt and instep kicking, was considered valid. Impact efficiency (foot-to-ball speed ratio) was greater for the rigid ankle (rigid = 1.16 +/- 0.02; non-rigid = 1.10 +/- 0.01; p 0.001). The rigid ankle was characterised by significantly greater effective mass and significantly less energy losses. Increasing rigidity allowed a greater portion of mass from the shank to be used during the collision. As the ankle remained in plantarflexion at impact end, stored elastic energy was not converted to ball velocity and was considered lost. Increasing rigidity is beneficial for increasing impact efficiency, and therefore ball velocity. (C) 2018 Elsevier Ltd. All rights reserved.
机译:执行任何技能的效率对于性能很重要。在足球踢腿中,在减少脚踝Plantarflexion期间,在脚球接触时,互相冲突和非显着结果存在于影响效率的脚踝搏击之间,使其目不重要的是作为教练指导。本研究的目的是首先用非刚性脚踝验证机械踢动机,并将刚性到足球踢的冲击阶段的非刚性脚踝进行了比较。从4000Hz记录的数据计算每脚踝配置的10个试验的脚球接触测量计算。非刚性脚踝的特征在于初始背部,其次是Plantarflexion,用于剩下的影响,并且基于与Punt和Instep踢的相似性,被认为是有效的。刚性踝关节的冲击效率(步足速比)更大(刚性= 1.16 +/- 0.02;非刚性= 1.10 +/- 0.01; P <0.001)。刚性脚踝的特征在于有效的质量明显更大,并且能量损失显着较小。增加刚性允许在碰撞期间使用的柄部中的大部分块。由于踝关节留在撞击端的跖屈,因此储存的弹性能量不会被转换为球速,并且被认为是丢失的。增加刚性对于增加的冲击效率以及球速是有益的。 (c)2018年elestvier有限公司保留所有权利。

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