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Mechanical energy generation and transfer in the racket arm during table tennis topspin backhands

机译:乒乓球上旋反手期间球拍臂中的机械能产生和传递

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The ability to generate a high racket speed and a large amount of racket kinetic energy on impact is important for table tennis players. The purpose of this study was to understand how mechanical energy is generated and transferred in the racket arm during table tennis backhands. Ten male advanced right-handed table tennis players hit topspin backhands against pre-impact topspin and backspin balls. The joint kinetics at the shoulder, elbow and wrist of the racket arm was determined using inverse dynamics. A majority of the mechanical energy of the racket arm acquired during forward swing (65 and 77% against topspin and backspin, respectively) was due to energy transfer from the trunk. Energy transfer by the shoulder joint force in the vertical direction was the largest contributor to the mechanical energy of the racket arm against both spins and was greater against backspin than against topspin (34 and 28%, respectively). The shoulder joint force directed to the right, which peaked just before impact, transferred additional energy to the racket. Our results suggest that the upward thrust of the shoulder and the late timing of the axial rotation of the upper trunk are important for an effective topspin backhand.
机译:对于乒乓球运动员来说,产生高球拍速度和大量球拍动能的能力很重要。这项研究的目的是了解在乒乓球反手过程中如何在球拍臂中产生和传递机械能。十名男性高级右手乒乓球运动员在撞上前旋和后旋球时击中了上旋反手。使用逆向动力学确定球拍臂在肩膀,肘部和腕部的关节动力学。向前挥拍过程中获得的球拍臂的大部分机械能(分别来自上旋和后旋的65%和77%)是由于从躯干传递的能量。肩部关节力在垂直方向上的能量传递是球拍臂在两个旋转时的机械能的最大贡献,并且在逆转时比逆转时更大(分别为34%和28%)。指向右侧的肩部关节力在撞击前达到峰值,从而将更多的能量传递给了球拍。我们的结果表明,肩部的向上推力和上躯干轴向旋转的正时对于有效的上旋反手很重要。

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