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首页> 外文期刊>Journal of Biomechanics >Removing swing from a handstand on rings using a properly timed backward giant circle: a simulation solution.
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Removing swing from a handstand on rings using a properly timed backward giant circle: a simulation solution.

机译:使用正确定时的向后巨型圆环从环上的倒立架上移除摆动:一种模拟解决方案。

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摘要

In the rings event in men's gymnastics, marks are deducted if the rings and gymnast are swinging during a held handstand position. The unwanted swing can be reduced in the next handstand position if the gymnast is able to properly time the start of the connecting giant circle. The purpose of this study was to search for the optimal time to commence a backward giant circle in order to attenuate swing in the succeeding handstand. Computer simulations, using a four-segment and a three-segment model which employed two-pulse muscular control strategies, were used to search for the optimal timing solution. Qualitative validation tests between the performance of a world class gymnast and the simulation models indicated that a three-segment model comprising a cables-rings segment, an arms segment with a shoulder torque generator, and a head-torso-legs segment, produced similar results to that of a four-segment model which separated the legs segment from the torso and employed an additional torque generator at the hip joint. The results from the simulation indicated that a gymnast should be advised to initiate a backward giant circle when his swinging handstand has reached the bottom of its swing-arc. For a handstand with an original swing-amplitude of 10 degrees, the simulation results indicate that a properly timed backward giant circle can reduce this amplitude to a negligible 1.5 degrees of swing.
机译:在男子体操比赛的吊环比赛中,如果吊环和体操运动员在站立的倒立姿势中摆动,则扣分。如果体操运动员能够正确计时连接巨人圈的开始时间,则可以减少下一个倒立姿势中不必要的挥杆。这项研究的目的是寻找最佳时间开始一个向后的巨型圆圈,以减弱后继倒立中的摆动。使用四段和三段模型的计算机仿真(采用了两脉冲肌肉控制策略)来寻找最佳时序解决方案。在世界级体操运动员的表现与模拟模型之间进行的定性验证测试表明,由电缆环段,带有肩部扭矩产生器的臂段和头部-躯干-腿部段组成的三段模型产生了相似的结果类似于四段模型,该模型将腿段与躯干分开,并在髋关节处使用了额外的扭矩发生器。模拟结果表明,应建议体操运动员在其倒立的倒立装置到达其圆弧的底部时开始向后的巨型圆圈。对于原始摆幅为10度的倒立,仿真结果表明,适当定时的向后巨圆可以将该幅度减小到可以忽略的1.5度摆幅。

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