Sudo Yusuke, Kawamoto Yuta, Iino Yoichi, Yoshioka Shinsuke
Graduate School of Frontier Sciences, The University of Tokyo, Kashiwa, Japan.
Graduate School of Arts and Sciences, The University of Tokyo, Meguro-Ku, Japan.
Sports Biomech. 2024 Jul 30:1-22. doi: 10.1080/14763141.2024.2381105.
This study aimed to elucidate the mechanisms underlying the speed-accuracy relationship in a tennis topspin single-handed forehand groundstroke. Groundstrokes at three different speeds by nine college players were captured, with the variability of the ball landing position evaluated as indices of accuracy. Variabilities of ball launch variables (speed, launch angle, spin, etc.) and conversion ratios from these variabilities to the variability of the ball landing position were quantified. These variabilities and their conversion ratios could be influenced by different efforts exerted to generate ball speeds and different ball trajectories required to hit a target at each speed, respectively. The speed-accuracy trade-off was observed only in the hitting direction. While the variability of the spin axis increased, it had minimal influence on the ball landing position. Conversely, the conversion ratio in the hitting direction of the velocity elevation angle significantly increased, while its variability remained unchanged. Consequently, the geometrical requirements of ball trajectories can be responsible for the speed-accuracy trade-off. Therefore, even skilled players capable of maintaining consistent ball launch variables regardless of the shot speed should deliberately choose a moderately slower ball speed to avoid an inevitable increase in the variability of the ball landing position due to geometrical requirements.
本研究旨在阐明网球单手正手高吊球击球时速度-准确性关系背后的机制。记录了九名大学生球员以三种不同速度进行的击球,将球落点位置的变化作为准确性指标进行评估。对球的发射变量(速度、发射角度、旋转等)的变化以及这些变化到球落点位置变化的转换率进行了量化。这些变化及其转换率可能分别受到为产生球速而付出的不同努力以及在每种速度下击中目标所需的不同球轨迹的影响。速度-准确性权衡仅在击球方向上观察到。虽然自旋轴的变化增加了,但对球落点位置的影响最小。相反,速度仰角在击球方向上的转换率显著增加,而其变化保持不变。因此,球轨迹的几何要求可能是速度-准确性权衡的原因。因此,即使是能够在不考虑击球速度的情况下保持一致的球发射变量的熟练球员,也应故意选择适度较慢的球速,以避免由于几何要求而不可避免地增加球落点位置的变化。