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首页> 外文期刊>Journal of Applied Biomechanics >Kinematics and Kinetics of the Racket-Arm During the Soft-Tennis Smash Under Match Conditions
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Kinematics and Kinetics of the Racket-Arm During the Soft-Tennis Smash Under Match Conditions

机译:比赛条件下软式网球扣球拍臂的运动学和动力学

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The purposes of this study were to (a) describe the racket-arm kinematics and kinetics of the soft-tennis smash during match rallies, and (b) assess the characteristics of this smash vs. the laboratory-simulated smash of our previous study. In the current study we recorded soft-tennis smash motions during match play of the 3rd East Asian Games. Racket-arm anatomical joint angular velocity and anatomical joint torque were calculated from 3-D coordinate data of 13 collected motions obtained using the direct linear transformation procedure. The results showed that most of the maximum values of the anatomical joint torques were qualitatively smaller than those of the tennis serve. Peak elbow extension, shoulder internal rotation, and elbow varus torques in match play were significantly greater than values reported for laboratory-simulated conditions. The greater forward swing torques did not result in significantly different racket head velocity, possibly because there was a significantly shorter forward swing phase in match conditions. In particular, a clear peak of the elbow extension torque during the forward swing phase was the most characteristic pattern in the smashes under match conditions, for it was 160% greater than laboratory-simulated conditions. These results supported our hypothesis that racket-arm kinematic and kinetic characteristics of the smash under match conditions differ from those under laboratory-simulated conditions. Possible explanations include the time-pressure conditions of the competitive situation in a match, and the Hawthorne effect (Hudson et al., 1986), both of which alter performance between match conditions and laboratory-simulated conditions.
机译:这项研究的目的是(a)描述比赛过程中软网球扣球的拍臂运动学和动力学,以及(b)评估此扣球与我们先前研究的实验室模拟扣球的特征。在当前的研究中,我们记录了第三届东亚运动会比赛期间的软式网球扣球动作。使用直接线性变换程序从13个收集的运动的3-D坐标数据中计算出拍臂解剖关节的角速度和解剖关节的扭矩。结果表明,大多数解剖关节扭矩的最大值在质量上都比网球发球小。比赛中肘部伸展的峰值,肩部内旋和肘内翻扭矩明显大于实验室模拟情况下报告的值。更大的前向挥杆扭矩不会导致球拍头速度发生明显变化,这可能是因为在比赛条件下前向挥杆相距明显较短。特别是,在向前摆动阶段,肘部伸展扭矩的一个清晰的峰值是比赛条件下扣球中最典型的特征,因为它比实验室模拟的条件大160%。这些结果支持了我们的假设,即在匹配条件下,扣球的球拍运动学和动力学特征与实验室模拟条件下的球拍运动学和动力学特征不同。可能的解释包括比赛中竞争态势的时间压力条件,以及霍桑效应(Hudson等,1986),这两者都会改变比赛条件和实验室模拟条件之间的表现。

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