Giatsis George, Panoutsakopoulos Vassilios, Kollias Iraklis A
a Biomechanics Laboratory, Department of Physical Education and Sports Science , Aristotle University of Thessaloniki , Thessaloniki , Greece.
J Sports Sci. 2018 May;36(9):997-1008. doi: 10.1080/02640414.2017.1348614. Epub 2017 Jul 4.
The purpose of this study was to investigate the possible arm swing effect on the biomechanical parameters of vertical counter movement jump due to differences of the compliance of the take-off surface. Fifteen elite male beach-volleyball players (26.2 ± 5.9 years; 1.87 ± 0.05 m; 83.4 ± 6.0 kg; mean ± standard deviation, respectively) performed counter movement jumps on sand and on a rigid surface with and without an arm swing. Results showed significant (p < .05) surface effects on the jump height, the ankle joint angle at the lowest height of the body center of mass and the ankle angular velocity. Also, significant arm swing effects were found on jump height, maximum power output, temporal parameters, range of motion and angular velocity of the hip. These findings could be attributed to the instability of the sand, which resulted in reduced peak power output due to the differences of body configuration at the lowest body position and lower limb joints' range of motion. The combined effect of the backward arm swing and the recoil of the sand that resulted in decreased resistance at ankle plantar flexion should be controlled at the preparation of selected jumping tasks in beach-volleyball.
本研究的目的是探讨由于起跳表面顺应性的差异,摆臂对垂直反向运动跳跃生物力学参数可能产生的影响。15名精英男性沙滩排球运动员(分别为26.2±5.9岁;1.87±0.05米;83.4±6.0千克;均值±标准差)在沙地和刚性表面上进行了有无摆臂的反向运动跳跃。结果显示,起跳表面对跳跃高度、身体重心最低高度时的踝关节角度和踝关节角速度有显著(p<0.05)影响。此外,还发现摆臂对跳跃高度、最大功率输出、时间参数、髋关节运动范围和角速度有显著影响。这些发现可能归因于沙地的不稳定性,这导致在身体最低位置时身体形态的差异以及下肢关节运动范围的减小,从而使峰值功率输出降低。在沙滩排球特定跳跃任务的准备过程中,应控制向后摆臂和沙地反冲导致踝关节跖屈阻力降低的综合影响。