Department of Physical Therapy, Ibaraki Prefectural University of Health Sciences, Ami, Japan.
School of Sport, Exercise and Health Sciences, Loughborough University, Leicestershire, UK.
Sports Biomech. 2024 Feb;23(2):196-210. doi: 10.1080/14763141.2020.1834609. Epub 2020 Nov 10.
The purposes of this study were to 1) develop a simulation model of baseball batting utilising the standard motion, and 2) explore optimal motions of the upper body to increase the bat-head speed. Twenty-three male collegiate baseball players performed tee batting set at waist height. A ten-segment angle-driven simulation model consisting of a bat and upper body was driven using with the coordinate data of the standard motion. Performance optimisation was conducted to find joint angle time histories of the upper body that increase the maximum bat-head speed. In the evaluation of the simulation model, the root mean square error between the measured and simulation model was 0.19 m/s and 0.98° for the time histories of the bat-head speed and bat orientation angle. Performance optimisation was able to achieve a targeted increase in bat-head speed (35.6 m/s to 40.0 m/s) through greater barrel-side shoulder abduction, knob-side elbow flexion, and torso right lateral flexion around ball impact resulted in the bat accelerating in the hitting direction. It is concluded that the proposed simulation approach can be applied as a tool for further simulation analysis in various complex sporting motions.
1)利用标准动作开发棒球击球的模拟模型,2)探索增加球棒头速度的最佳上半身动作。23 名男性大学生棒球运动员在齐腰高的球座上进行击球练习。使用标准动作的坐标数据驱动一个由球棒和上半身组成的十段角度驱动模拟模型。为了找到能增加最大球棒头速度的上半身关节角度时间历程,进行了性能优化。在模拟模型的评估中,球棒头速度和球棒指向角度的测量值与模拟模型之间的均方根误差分别为 0.19 m/s 和 0.98°。通过更大的棒侧肩部外展、握把侧肘部弯曲和触球时躯干右侧向侧屈,使球棒在击球方向上加速,从而实现了目标速度的提高(35.6 m/s 到 40.0 m/s)。研究结论认为,所提出的模拟方法可以作为各种复杂运动中进一步模拟分析的工具。