Kawamoto Yuta, Suzuki Takahito, Iino Yoichi, Yoshioka Shinsuke, Takeshita Daisuke, Senshi Fukashiro
Department of Life Sciences, Graduate School of Arts and Sciences, The University of Tokyo, Tokyo, Japan.
Department of Welfare and Culture, Faculty of Humanities, Okinawa University, Okinawa, Japan.
J Hum Kinet. 2024 Sep 26;94:77-90. doi: 10.5114/jhk/186535. eCollection 2024 Oct.
A forward run-up and stepping are used to accelerate hitting tools or throwing objects in sports. This study aimed to investigate the effect of a forward cross-over step on the speed of a hitting tool by analyzing the joint work and mechanical energy of the whole body and the hitting tool using inverse dynamics. Thirteen advanced tennis players performed forehand groundstrokes at maximum effort with and without a forward cross-over step. From the whole body plus racket perspective, the body-weight-normalized mechanical energy at the start of the hitting motion increased by 1.74 ± 0.42 J·kg due to the cross-over step. However, the increase in the magnitude of total negative joint work, primarily attributed to the lower limbs, was 1.38 ± 0.31 J·kg due to the cross-over step, conventionally regarded as energy absorption. Consequently, the mechanical energy of the whole body plus the racket at ball impact was comparable between the conditions. Nevertheless, from the segmental perspective, the mechanical work performed by the net shoulder joint force of the playing upper limb with the cross-over step during the hitting motion was greater than that without the cross-over step. Subsequently, the slight increase in the mechanical energy of the playing upper limb plus racket (0.25 ± 0.21 J·kg) resulted in increased racket speed (4.3%). Considering the comparable total mechanical energy and a resultant increase in racket speed, players and coaches should not overestimate the effect of the forward step on racket speed.
在体育运动中,向前助跑和跨步用于加速击球工具或投掷物体。本研究旨在通过运用逆动力学分析全身及击球工具的关节功和机械能,来探究向前交叉步对击球工具速度的影响。13名高水平网球运动员在有和没有向前交叉步的情况下全力进行正手击球。从全身加球拍的角度来看,由于交叉步,击球动作开始时体重归一化的机械能增加了1.74±0.42焦耳·千克。然而,交叉步导致的总负关节功(主要归因于下肢)的增加幅度为1.38±0.31焦耳·千克,传统上这被视为能量吸收。因此,两种情况下球撞击时全身加球拍的机械能相当。不过,从节段角度来看,击球动作中采用交叉步时,运动上肢净肩关节力所做的机械功大于不采用交叉步时。随后,运动上肢加球拍的机械能略有增加(0.25±0.21焦耳·千克),导致球拍速度提高了4.3%。考虑到总机械能相当且球拍速度有所提高,球员和教练不应高估向前步对球拍速度的影响。