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ASSESSMENT OF EXTERNAL AND INTERNAL LOADS IN THE TRIPLE JUMP VIA INVERSE DYNAMICS SIMULATION

机译:通过逆动力学模拟评估三级跳中的外部和内部载荷

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摘要

The triple jump is a demanding athletics event that, after an approach run, consists of three consecutive phases: the hop, the bound, and the jump. During the involved three take-off actions a jumper is exposed to increased risk of injury due to the high impact forces from the ground and powerful muscle/tendon efforts, which are further reflected in the internal loads of the lower limb joints. While external ground reactions can possibly be measured using force platforms, in vivo measurements of the internal loads are practically not feasible. The purpose of the paper is to present the development of an effective formulation for the inverse dynamics simulation of the triple jump, based on the jumper dynamical model and non-invasive kinematic recordings of the movement. The developed simulation model serves for the analysis of all the triple jump phases, irrespective of whether the jumper is in flight or in contact with the ground with one of his feet, and is focused on effective assessment of the external reactions on the supporting leg as well as the muscle forces and joint reaction forces in the leg. Some numerical results of inverse dynamics simulation of the triple jump are reported.
机译:三级跳远是一项要求很高的田径项目,在逼近跑后,包括三个连续的阶段:跳数,跳界和跳数。在涉及的三个起飞动作中,由于来自地面的高冲击力和强大的肌肉/肌腱力量,跳线员面临增加的受伤风险,这进一步反映在下肢关节的内部负荷中。尽管可以使用受力平台来测量外部地面反应,但体内测量内部载荷实际上是不可行的。本文的目的是根据跳线动力学模型和机芯的非侵入性运动学记录,提出一种有效的配方,用于三级跳的逆动力学仿真。所开发的仿真模型可用于分析所有三级跳远阶段,而无论跳线是在飞行中还是用一只脚与地面接触,都集中于有效评估支撑腿的外部反应,例如以及腿部的肌肉力和关节反作用力。报告了三级跳的逆动力学模拟的一些数值结果。

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