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手臂动作在立定跳远中的作用。

Role of arm motion in the standing long jump.

作者信息

Ashby Blake M, Heegaard Jean H

机构信息

Mechanical Engineering Department, Stanford University, BME 224 Durand Building, Stanford, CA 94305-4038, USA.

出版信息

J Biomech. 2002 Dec;35(12):1631-7. doi: 10.1016/s0021-9290(02)00239-7.

Abstract

The role of arm motion on the performance of the standing long jump was investigated. Three males performed a series of jumps with free (JFA) and with restricted (JRA) arm motion to determine if arm swing improves jumping distance. The subjects jumped off a force platform and the motion of the body segments were recorded with a four-camera, passive motion-capture system. Jumping performance was defined as the horizontal displacement of the toe between the initial and landing (TD) positions. The subjects jumped 21.2% further on an average with arm movement (2.09+/-0.03 m) than without (1.72+/-0.03 m). Seventy-one percent of the increase in performance in JFA was attributable to a 12.7% increase in the take-off (TO) velocity of the center of gravity (CG). Increases in the horizontal displacement of the CG before TO and in the horizontal position of the toe with respect to the CG at TD accounted for the remaining 29% of the improvement in jumping distance. The added balance and control provided by the arms throughout the jumping motion contributed to performance improvement in JFA. The subjects were able to remedy excessive forward rotation about the CG by swinging the arms backwards during the flight phase. Without the freedom to swing the arms during flight, the subjects had to eliminate any excessive forward rotation while still in contact with the ground. This tendency in JRA was manifest in the premature decline in the vertical ground reaction force (VGRF) and the development of a counterproductive backward-rotating moment about the CG just before TO.

摘要

研究了手臂运动对立定跳远成绩的作用。三名男性分别进行了一系列自由手臂运动(JFA)和受限手臂运动(JRA)的跳跃,以确定摆臂是否能增加跳跃距离。受试者从测力平台起跳,并用四台摄像机组成的被动式动作捕捉系统记录身体各部位的运动。跳跃成绩定义为脚尖从起跳初始位置到落地位置之间的水平位移(TD)。平均而言,受试者在有手臂运动时(2.09±0.03米)比无手臂运动时(1.72±0.03米)跳得远21.2%。JFA中成绩提高的71%归因于重心(CG)起跳(TO)速度提高了12.7%。重心在起跳前水平位移的增加以及脚尖在落地时相对于重心的水平位置的增加,占跳跃距离提高的其余29%。手臂在整个跳跃运动中提供的额外平衡和控制有助于JFA成绩的提高。受试者能够在飞行阶段通过向后摆臂来纠正围绕重心的过度向前旋转。在飞行过程中如果没有摆臂的自由,受试者必须在仍与地面接触时消除任何过度向前旋转。JRA中的这种趋势表现为垂直地面反作用力(VGRF)过早下降,以及在起跳前围绕重心产生适得其反的向后旋转力矩。

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