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Effects of the racket polar moment of inertia on dominant upper limb joint moments during tennis serve

机译:网球拍过程中球拍极惯性矩对上肢主要关节力矩的影响

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摘要

This study examined the effect of the polar moment of inertia of a tennis racket on upper limb loading in the serve. Eight amateur competition tennis players performed two sets of 10 serves using two rackets identical in mass, position of center of mass and moments of inertia other than the polar moment of inertia (0.00152 vs 0.00197 kg.m2). An eight-camera motion analysis system collected the 3D trajectories of 16 markers, located on the thorax, upper limbs and racket, from which shoulder, elbow and wrist net joint moments and powers were computed using inverse dynamics. During the cocking phase, increased racket polar moment of inertia was associated with significant increases in the peak shoulder extension and abduction moments, as well the peak elbow extension, valgus and supination moments. During the forward swing phase, peak wrist extension and radial deviation moments significantly increased with polar moment of inertia. During the follow-through phase, the peak shoulder adduction, elbow pronation and wrist external rotation moments displayed a significant inverse relationship with polar moment of inertia. During the forward swing, the magnitudes of negative joint power at the elbow and wrist were significantly larger when players served using the racket with a higher polar moment of inertia. Although a larger polar of inertia allows players to better tolerate off-center impacts, it also appears to place additional loads on the upper extremity when serving and may therefore increase injury risk in tennis players.
机译:这项研究检查了网球拍的极惯性矩对发球上肢负荷的影响。八名业余比赛网球运动员使用两个质量,质量中心位置和惯性矩相同的球拍,进行了两组10球的发球,而惯性极矩不为正(0.00152 vs.0.00197 kg.m2)。一个由八台摄像机组成的运动分析系统,收集了位于胸腔,上肢和球拍上的16个标记的3D轨迹,并使用逆动力学从中计算出肩部,肘部和腕部的净关节力矩和力量。在翘起阶段,球拍的极惯性矩增加与峰值肩部伸展和绑架力矩以及肘部伸展峰值,外翻和旋后力矩的明显增加有关。在向前挥杆阶段,峰值手腕伸展力矩和径向偏离力矩会随着极地惯性矩而明显增加。在跟进阶段,肩峰内收,肘内旋和腕部外旋力矩峰值与惯性极矩呈显着反比关系。在向前挥杆过程中,当运动员使用极惯性极高的球拍发球时,肘部和腕部的负关节力量会大大变大。尽管较大的惯性极坐标可使运动员更好地承受偏心冲击,但在发球时,它似乎还会在上肢施加额外的负荷,因此可能会增加网球运动员的受伤风险。

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