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精英沙滩排球运动员在刚性和沙地表面进行垂直深蹲跳时的生物力学差异。

Biomechanical differences in elite beach-volleyball players in vertical squat jump on rigid and sand surface.

作者信息

Giatsis George, Kollias Iraklis, Panoutsakopoulos Vassilios, Papaiakovou George

机构信息

Department of Physical Education and Sport Science, Aristotle University of Thessaloniki, Thessaloniki, Greece.

出版信息

Sports Biomech. 2004 Jan;3(1):145-58. doi: 10.1080/14763140408522835.

Abstract

The purpose of this investigation was to detect whether differences exist concerning the dynamic and kinematic parameters of vertical squat jump (SJ) on rigid (RS) and sand (SS) surface. Fifteen elite male beach volleyball players (age: 25.6 +/- 6.2 years; height: 188.0 +/- 3.5 cm; body mass: 83.2 +/- 6.0 kg; mean +/- SD, respectively) performed SJ. Force platform and kinematic analyses were used with paired sample T-tests to evaluate the differences. Vertical jump height was significantly smaller (p < .001) on SS than RS. Maximal force and maximal power were significantly higher on RS than SS (p < .05 and p < .01 respectively). Impulse time was larger in SS but with no significant difference (p = .286). Kinematic analysis revealed significant differences between the values of ankle joint during starting posture (p < .01) and of hip joint at the moment of take-off (p < .05). Ankle joint range of motion and angular velocity was larger in SS (p < .05). In conclusion, SJ height on SS was smaller than on RS because of the compliance and the instability of the sand. This resulted in a reduction in maximum force and take-off velocity. Furthermore, the compliance of SS made it hard for the ankle to push along the vertical axis of the movement of the body and as a result it slipped behind in an attempt to maximize propulsion. As a result, the body tries to balance and equalise this movement and move the hip to larger extension.

摘要

本研究的目的是检测在刚性(RS)和沙地(SS)表面进行垂直深蹲跳(SJ)时,动态和运动学参数是否存在差异。15名精英男子沙滩排球运动员(年龄:25.6±6.2岁;身高:188.0±3.5厘米;体重:83.2±6.0千克,分别为平均值±标准差)进行了深蹲跳。使用测力平台和运动学分析,并通过配对样本T检验来评估差异。在沙地表面的垂直跳跃高度显著低于刚性表面(p<.001)。刚性表面的最大力和最大功率显著高于沙地表面(分别为p<.05和p<.01)。沙地表面的冲量时间更长,但无显著差异(p = .286)。运动学分析显示,起始姿势时踝关节的值(p<.01)和起跳瞬间髋关节的值(p<.05)之间存在显著差异。沙地表面的踝关节运动范围和角速度更大(p<.05)。总之,由于沙地的顺应性和不稳定性,沙地表面的深蹲跳高度低于刚性表面。这导致最大力和起跳速度降低。此外,沙地的顺应性使踝关节难以沿身体运动的垂直轴推进,结果在试图最大化推进力时落后。因此,身体试图平衡并补偿这种运动,使髋关节更大程度地伸展。

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