Bobbert M F, Huijing P A, van Ingen Schenau G J
Department of Functional Anatomy, Free University, Amsterdam, The Netherlands.
Med Sci Sports Exerc. 1987 Aug;19(4):339-46.
In the literature, athletes preparing for explosive activities are recommended to include drop jumping in their training programs. For the execution of drop jumps, different techniques and different dropping heights can be used. This study was designed to investigate for the performance of bounce drop jumps the influence of dropping height on the biomechanics of the jumps. Six subjects executed bounce drop jumps from heights of 20 cm (designated here as DJ20), 40 cm (designated here as DJ40), and 60 cm (designated here as DJ60). During jumping, they were filmed, and ground reaction forces were recorded. The results of a biomechanical analysis show no difference between DJ20 and DJ40 in mechanical output about the joints during the push-off phase. Peak values of moment and power output about the ankles during the push-off phase were found to be smaller in DJ60 than in DJ40 (DJ20 = DJ60). The amplitude of joint reaction forces increased with dropping height. During DJ60, the net joint reaction forces showed a sharp peak on the instant that the heels came down on the ground. Based on the results, researchers are advised to limit dropping height to 20 or 40 cm when investigating training effects of the execution of bounce drop jumps.
在文献中,建议准备进行爆发性活动的运动员在训练计划中纳入跳深练习。对于跳深练习的执行,可以采用不同的技术和不同的下落高度。本研究旨在调查下落高度对弹跳式跳深生物力学性能的影响。六名受试者分别从20厘米高度(在此指定为DJ20)、40厘米高度(在此指定为DJ40)和60厘米高度(在此指定为DJ60)进行弹跳式跳深。在跳跃过程中,对他们进行拍摄,并记录地面反作用力。生物力学分析结果表明,在蹬地阶段,DJ20和DJ40在关节机械输出方面没有差异。发现DJ60在蹬地阶段踝关节的力矩和功率输出峰值小于DJ40(DJ20 = DJ60)。关节反应力的幅度随下落高度增加。在DJ60过程中,当脚跟落地瞬间,净关节反应力出现尖锐峰值。基于这些结果,建议研究人员在调查弹跳式跳深执行的训练效果时,将下落高度限制在20或40厘米。