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首页> 外文期刊>European journal of sport science: EJSS : official journal of the European College of Sport Science >Directionally compensated mechanical work provided by the shoulder leads to similar racket velocities during open and square stance forehand groundstrokes in tennis
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Directionally compensated mechanical work provided by the shoulder leads to similar racket velocities during open and square stance forehand groundstrokes in tennis

机译:通过肩部提供的定向补偿机械工作导致在网球的开放和方形立体正处于地面的正处于类似的球拍速度

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摘要

The differences between the racket-arm acceleration mechanisms during open and square stance forehand groundstrokes in tennis were examined by quantifying the mechanical work done on the racket arm. We studied 13 advanced tennis players as they performed these strokes at maximum effort and calculated the work using inverse dynamics. The racket head speed was similar between the open and square stances. In the open stance, the lack of weight shifting towards the hitting direction resulted in a lower velocity for the shoulder joint centre in the hitting direction than in the square stance, and less work was done by the shoulder joint force in the hitting direction in the open stance than in the square stance (0.30 +/- 0.11J kg -1 vs. 0.38 +/- 0.16J kg -1; p=0.005). However, in the open stance, the torso rotated more towards the hitting direction and had more upward acceleration, which resulted in more work done by the sideways and upward shoulder joint forces than in the square stance (sideways: 0.07 +/- 0.09J kg -1 vs. 0.05 +/- 0.09J kg -1, p=0.046; upward: 0.08 +/- 0.09J kg -1 vs. 0.04 +/- 0.07J kg -1, p=0.002). Thus, the greater work done by the sideways and upward shoulder joint forces compensated for the lesser work done by the shoulder joint force in the hitting direction in the open stance. In both stances, mainly the horizontal flexion torque and internal rotation torque at the shoulder increased the energy of the racket arm.
机译:通过量化在球拍臂上完成的机械工作来检查网球处的开放式和方形立体正处于地球正处于地面的距离之间的差异。我们研究了13名高级网球运动员,因为它们以最大限度的努力执行了这些笔画,并计算了使用逆动态的工作。球拍头速度在开放和方形穗之间类似。在打开的姿势中,朝向击球方向的重量缺乏换档导致肩部关节中心的较低速度比在方向上的肩部姿势,并且通过肩部接合力在击中方向上的工作较少打开姿态而不是方形立场(0.30 +/- 0.11J kg -1与0.38 +/- 0.16j kg -1; p = 0.005)。然而,在开放的姿势中,躯干朝着打击方向旋转得更多,并且具有更高的加速度,从而导致侧面和向上肩部关节力的工作更加工作(侧面:0.07 +/- 0.09J kg -1对0.05 +/- 0.09J kg -1,p = 0.046;向上:0.08 +/- 0.09j kg -1与0.04 +/- 0.07j kg -1,p = 0.002)。因此,通过侧向和向上肩部接合力完成的更大的工作来补偿由肩部接合力在打开姿势中击中方向上的较小工作。在两个阶段,主要是肩部的水平屈曲扭矩和内部旋转扭矩增加了球拍臂的能量。

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