M2S Laboratory, Rennes 2 University, Bruz, France; and.
Research and Development Department, Volodalen, Chavéria, France.
J Strength Cond Res. 2024 Sep 1;38(9):1667-1674. doi: 10.1519/JSC.0000000000004848. Epub 2024 Jul 23.
Fourel, L, Touzard, P, Fadier, M, Arles, L, Deghaies, K, Ozan, S, and Martin, C. Relationships between force-time curve variables and tennis serve performance in competitive tennis players. J Strength Cond Res 38(9): 1667-1674, 2024-Practitioners consider the role of the legs in the game of tennis as fundamental to achieve high performance. But, the exact link between leg actions and high-speed and accurate serves still lacks understanding. Here, we investigate the correlation between force-time curve variables during serve leg drive and serve performance indicators. Thirty-six competitive players performed fast serves, on 2 force plates, to measure ground reaction forces (GRF). Correlation coefficients describe the relationships between maximal racket head velocity, impact height, and force-time curve variables. Among all the variables tested, the elapsed time between the instants of maximal vertical and maximal anteroposterior GRF ( r = -0.519, p < 0.001) and the elapsed time between the instant of maximal anteroposterior GRF and ball impact ( r = -0.522, p < 0.001) are the best predictors of maximal racket velocity. Maximal racket head velocity did not significantly correlate with the mean or maximal vertical GRF or with the mean or maximum rate of vertical force development. The best predictor for impact height is the relative net vertical impulse during the concentric phase ( r = 0.772, p < 0.001). This work contributes to a better understanding of the mechanical demands of tennis serve motion and gives guidelines to improve players preparation and performance. Trainers should encourage their players to better synchronize their upward and forward pushing action during the serve to increase maximal racket head velocity. Players should also aim to improve their relative net vertical impulse to increase impact height through strength training and technical instructions.
福雷尔、图扎德、菲亚德、阿莱、德加海斯、奥赞和马丁。在竞技网球运动员中,力量-时间曲线变量与网球发球表现之间的关系。J 强能力研究 38(9):1667-1674,2024-从业者认为腿部在网球比赛中的作用是实现高性能的基础。但是,腿部动作与高速准确发球之间的确切联系仍有待理解。在这里,我们研究了发球腿驱动过程中的力量-时间曲线变量与发球表现指标之间的相关性。36 名竞技运动员在 2 个测力板上进行快速发球,以测量地面反作用力(GRF)。相关系数描述了最大球拍头速度、冲击高度和力量-时间曲线变量之间的关系。在所测试的所有变量中,最大垂直和最大前后 GRF 之间的时间间隔(r = -0.519,p < 0.001)和最大前后 GRF 与球撞击之间的时间间隔(r = -0.522,p < 0.001)是最大球拍速度的最佳预测指标。最大球拍头速度与平均或最大垂直 GRF 或垂直力发展的平均或最大速率均无显著相关性。冲击高度的最佳预测指标是同心阶段的相对净垂直冲量(r = 0.772,p < 0.001)。这项工作有助于更好地理解网球发球动作的力学要求,并为提高球员的准备和表现提供指导。教练应鼓励他们的球员在发球时更好地同步他们的向上和向前推动动作,以增加最大球拍头速度。球员还应通过力量训练和技术指导来提高相对净垂直冲量,以增加冲击高度。