Department of Biomedical Engineering, University of Southern California, Los Angeles, CA 90089-0652, USA.
Sports Biomech. 2013 Jun;12(2):121-31. doi: 10.1080/14763141.2012.738699.
During the golf swing, the reaction forces applied at the feet control translation and rotation of the body-club system. In this study, we hypothesized that skilled players using a 6-iron would regulate shot distance by scaling the magnitude of the resultant horizontal reaction force applied to the each foot with minimal modifications in force direction. Skilled players (n = 12) hit golf balls using a 6-iron. Shot distance was varied by hitting the ball as they would normally and when reducing shot distance using the same club. During each swing, reaction forces were measured using dual force plates (1200 Hz) and three-dimensional kinematics were simultaneously captured (110 Hz). The results indicate that, on average, the peak resultant horizontal reaction forces of the target leg were significantly less than normal (5%, p < 0.05) when reducing shot distance. No significant differences in the orientation of the peak resultant horizontal reaction forces were observed. Resultant horizontal reaction force-angle relationships within leg and temporal relationships between target and rear legs during the swing were consistent within player across shot conditions. Regulation of force magnitude with minimal modification in force direction is expected to provide advantages from muscle activation, coordination, and performance points of view.
在高尔夫挥杆过程中,脚部施加的反作用力控制着身体-球杆系统的平移和旋转。在这项研究中,我们假设,使用 6 号铁杆的熟练球员会通过调整施加在每只脚上的水平合力的大小来调节击球距离,而对力的方向进行最小的调整。12 名熟练球员使用 6 号铁杆击球。通过正常击球和使用相同的球杆减小击球距离来改变击球距离。在每次挥杆过程中,使用双力板(1200Hz)测量反作用力,并同时捕捉三维运动学(110Hz)。结果表明,当击球距离减小时,目标腿的最大水平合力平均比正常情况低 5%(p < 0.05)。最大水平合力的方向没有明显差异。在挥杆过程中,两腿内的合力-角度关系和目标腿与后腿之间的时间关系在球员之间在击球条件下保持一致。从肌肉激活、协调和性能的角度来看,通过最小的力方向调整来调节力的大小预计会带来优势。