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Changes in joint kinetics during learning the longswing on high bar

机译:学习高杠上的挥杆动作期间关节动力学的变化

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摘要

Biomechanics helps us understand the association between technique changes and performance improvement during learning. The aim of this research was to investigate joint kinetic characteristics of technique during learning of the longswing on the high bar. Twelve male, novice participants took part in the learning study. During swing attempts in 8 weekly testing sessions, kinematic data were collected. Inverse dynamics analysis was performed from known zero forces at the toes to quantify joint moments and power at the hips and shoulders. Key biomechanical constraints that limited performance outcome were identified based on changes in joint kinetics during learning. These constraints were the ability to perform a large shoulder power and to overcome passive kinetics acting during the downswing. Constraints to action at the level of joint kinetics differentially challenge learners and therefore could underpin more individual, specific learning interventions. Functional phases, defined by maximum hyperextension to flexion of the hips and maximum flexion to extension of the shoulders, did not describe the key joint kinetics of the hip and shoulder for novices. The functional phases may serve however to identify novices that were unable to overcome the passive kinetic constraint.
机译:生物力学可以帮助我们了解学习过程中技术变化与性能改善之间的联系。这项研究的目的是研究在高杆上的长挥杆学习过程中技术的联合动力学特性。十二名男性新手参加了学习研究。在每周8次测试的挥杆尝试中,收集了运动学数据。从脚趾上已知的零力进行逆动力学分析,以量化髋部和肩部的关节力矩和力量。基于学习过程中关节动力学的变化,确定了限制性能结果的关键生物力学约束。这些限制因素是执行大的肩部力量和克服下摆过程中被动动力学作用的能力。在关节动力学水平上对动作的约束对学习者提出了不同的挑战,因此可能会支持更多的个体,具体的学习干预措施。功能阶段由最大程度的髋关节屈伸过度和最大程度的肩膀屈伸定义,没有描述新手臀部和肩膀的关键关节动力学。但是,功能阶段可以用来识别无法克服被动动力学约束的新手。

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