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Biomechanical analysis of the golf swing: methodological effect of angular velocity component on the identification of the kinematic sequence

机译:高尔夫挥杆生物力学分析:角速度分量对运动序列鉴定的方法论作用

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Purpose: The golf swing is a complex whole-body motion for which a proximal-to-distal transfer of the segmental angular velocities from the pelvis to the club is believed to be optimal for maximizing the club head linear velocity. However, previous experimental results about such timing (or kinematic sequence) are contradictory. Nevertheless, methods that were used in these studies differed significantly, in particular, those regarding the component of the angular velocity vector selected for the identification of the kinematic sequence. Hence, the aim of this study was to investigate the effect of angular velocity vector component selection on the identified kinematic sequence. Methods: Thirteen golfers participated in this study and performed driver swings in a motion capture laboratory. Seven methods based on different component selection of segmental angular velocities (vector norm, component normal-to-sagittal, frontal, transversal and swing planes, segment longitudinal component and a method mixing longitudinal and swing plane components) were tested. Results: Results showed the critical influence of the component chosen to identify the kinematic sequence with almost as many kinematic sequences as the number of tested methods for every golfer. Conclusion: One method seems to show the strongest correlation to performance but none of them can be assessed as a reference method for the identification of the golf swing kinematic sequence. Regarding the limited time lag between the different peak occurrences and the uncertainty sources of current materials, development of simulation studies would be more suitable to identify the optimal kinematic sequence for the golf swing.
机译:目的:高尔夫挥杆是一种复杂的全身运动,其彼此侧向远端传递从骨盆到球杆的节段角速度转移,以最大化球杆头线速度最佳。然而,关于这种定时(或运动序列)的先前实验结果是矛盾的。然而,在这些研究中使用的方法显着不同,特别是关于所选角速度载体的组分用于鉴定运动序列的方法。因此,本研究的目的是研究角速度载体组分选择对鉴定的运动序列的影响。方法:第十三高尔夫球手参与了这项研究,并在运动捕获实验室进行了驾驶员摇摆。测试了七种基于分段角速度的不同组成部分的方法(向量范围,组分常致矢状,正面,横向和摆动平面,段纵向分量和混合纵向和摆动平面部件的方法)。结果:结果表明,所选择的组分的临界影响,以鉴定运动序列,几乎与每个高尔夫球手的测试方法数量几乎一样。结论:一种方法似乎显示出与性能最强的相关性,但是它们都不可以作为鉴定高尔夫挥杆运动序列的参考方法来评估。关于不同峰值发生和当前材料的不确定性来源之间的有限时间延迟,模拟研究的发展将更适合识别高尔夫挥杆的最佳运动序列。

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