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Biomechanical evolution of the Tkachev on uneven bars in female gymnastics

机译:Tkachev在女子体操高低杠上的生物力学演变

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The development of joint kinematics and kinetics is fundamental to the successful performance of complex flight skills in gymnastics bar routines. Biomechanical understanding of these skills can provide coaches and scientists with key information to make training safe and effective. The Tkachev is a complex and popular gymnastics skill with many different variations. Recently, a new version has been performed, which has become popular with elite female performers. This study examined the key biomechanical characteristics of this skill and contrasted these to the earlier versions reported. Elite female gymnasts (n ??=??5) were recorded and manually digitised using twin video cameras (50?Hz) at the 2007 World Gymnastics Championships. Three-dimensional (3D) DLT was used to reconstruct the real world coordinates. Individualised inertia characteristics were calculated and used to determine mass centre kinematics. Inverse dynamics analysis was used to calculate joint kinetics at the hips and shoulders from the known values at the toes. The results of this study showed an increased flight time and rotational capacity during the aerial phase for the toe-on Tkachev, as well as a more simple movement pattern and joint kinetic demand with single power impulses at the hips and shoulders compared with previous versions. The key finding of this study was that the toe-on version appeared to be less physically demanding than that the inward and outward techniques, and provide the opportunity to perform more complex aerial phase body positions. These results can help coaches to physically prepare their gymnasts and biomechanists in terms of understanding the demands of these skills.
机译:联合运动学和动力学的发展是在体操吧套路中成功运用复杂飞行技巧的基础。对这些技能的生物力学理解可以为教练和科学家提供关键信息,从而使培训安全有效。特卡切夫(Tkachev)是一项复杂而流行的体操技能,具有许多不同的变化。最近,已经执行了一个新版本,该版本已在精英女性表演者中流行。这项研究检查了该技能的关键生物力学特征,并将其与报告的早期版本进行了对比。在2007年世界体操锦标赛上,记录了优秀的女体操运动员(n≥5)并使用双摄像机(50Hz)进行了手动数字化。三维(3D)DLT用于重建真实世界的坐标。计算出各自的惯性特性,并将其用于确定质心运动学。逆动力学分析用于根据脚趾的已知值来计算臀部和肩膀的关节动力学。这项研究的结果表明,与以前的版本相比,脚踩式Tkachev在空中阶段的飞行时间和旋转能力增加了,而且在臀部和肩膀上具有单个动力脉冲的情况下,运动模式和关节动力学需求也更加简单。这项研究的主要发现是脚趾式对身体的要求不如内向和向外的要求高,并且为进行更复杂的空中人体位置提供了机会。这些结果可以帮助教练在理解这些技能的要求方面为体操运动员和生物力学做好身体准备。

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