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Direct and indirect effects of joint torque inputs during an induced speed analysis of a swinging motion

机译:在摆动运动的诱导速度分析期间接头扭矩输入的直接和间接影响

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摘要

This study proposed a method to quantify direct and indirect effects of the joint torque inputs in the speed-generating mechanism of a swinging motion. Linear and angular accelerations of all segments within a multi-linked system can be expressed as the sum of contributions from a joint torque term, gravitational force term and motion-dependent term (MDT), where the MDT is a nonlinear term consisting of centrifugal force, Coriolis force and gyroscopic effect moment components. Direct effects result from angular accelerations induced by a joint torque at a given instant, whereas indirect effects arise through the MDT induced by joint torques exerted in the past. These two effects were quantified for the kicking side leg during a rugby place kick. The MDT was the largest contributor to the foot centre of gravity (CG)'s speed at ball contact. Of the factors responsible for generating the MDT, the direct and indirect effects of the hip flexion-extension torque during both the flight phase (from the final kicking foot take-off to support foot contact) and the subsequent support phase (from support foot contact to ball contact) were important contributors to the foot CG's speed at ball contact. The indirect effect of the ankle plantar dorsal flexion torque and the direct effect of the knee flexion-extension torque during the support phase showed the largest positive and negative contributions to the foot CG's speed at ball contact, respectively. The proposed method allows the identification of which individual joint torque axes are crucial and the timings of joint torque exertion that are used to generate a high speed of the distal point of a multi-linked system. (C) 2019 Elsevier Ltd. All rights reserved.
机译:该研究提出了一种用于量化摆动运动的速度产生机构中的关节扭矩输入的直接和间接效应的方法。多连接系统内的所有区段的线性和角度加速度可以表示为来自关节扭矩术语,重力术语和运动依赖项(MDT)的贡献之和,其中MDT是由离心力组成的非线性术语,科里奥利力和陀螺效应力矩组分。由给定瞬间在关节扭矩引起的角度加速度引起的直接效应,而通过过去施加的关节扭矩诱导的MDT出现间接影响。在橄榄球踢踢腿期间,这两种效果被定量为踢腿。 MDT是Ball接触的重心(CG)速度的最大贡献者。在飞行阶段(从最终踢脚支出以支撑脚接触)和随后的支撑相期间为了球接触)是脚CG在球接触时速度的重要贡献者。踝关节跖屈屈曲扭矩的间接效应和膝关节屈曲延伸扭矩在支撑阶段期间的直接效应分别对球接触的脚CG速度的最大正负贡献。所提出的方法允许识别哪个单个关节扭矩轴是至关重要的,并且用于产生多连接系统的远端点的高速的关节扭矩施加的时序。 (c)2019年elestvier有限公司保留所有权利。

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