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The control of upper body segment speed and velocity during the golf swing

机译:高尔夫挥杆过程中上身段速度和速度的控制

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摘要

Understanding the dynamics of upper body motion during the downswing is an important step in determining the control strategies required for a successful and repeatable golf swing. The purpose of this study was to examine the relationship between head, thorax, and pelvis motion, during the downswing of professional golfers. Three-dimensional data were collected for 14 male professional golfers (age 27 ^ 8 years, golf-playing experience 13.3 ^ 8 years) using an optical motion analysis system. The amplitude and timing of peak speed and peak velocities were calculated for the head, thorax, and pelvis during the downswing. Cross-correlation analysis was used to examine the strength of coupling and phasing between and within segments. The results indicated the thorax segment had the highest peak speeds and peak velocities for the upper body during the downswing. A strong coupling relationship was evident between the thorax and pelvis (average R2 젰.92 across all directions), while the head and thorax showed a much more variable relationship (average R2 젰.76 across all directions). The strong coupling between the thorax and pelvis is possibly a method for simplifying the motor control strategy used during the downswing, and a way of ensuring consistent motor patterns.
机译:了解下挥杆过程中上身运动的动力学是确定成功且可重复的高尔夫挥杆所需的控制策略的重要步骤。这项研究的目的是研究职业高尔夫球手下坡时头部,胸部和骨盆运动之间的关系。使用光学运动分析系统收集了14位男性职业高尔夫球手(年龄27 ^ 8岁,高尔夫打球经验13.3 ^ 8岁)的三维数据。在下降过程中,计算了头部,胸部和骨盆的峰值速度和峰值速度的幅度和时间。互相关分析用于检查段之间以及段内部的耦合和相位强度。结果表明,在下摆期间,上半身的胸段具有最高的峰值速度和峰值速度。胸骨与骨盆之间存在很强的耦合关系(各个方向的平均R2젰.92),而头与胸骨之间的变化更大(各个方向的平均R2젰.76)。胸腔与骨盆之间的强耦合可能是一种简化下摆过程中使用的电机控制策略的方法,也是确保一致的电机模式的一种方法。

著录项

  • 作者

    Horan Sean; Kavanagh Justin;

  • 作者单位
  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 English
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