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A Full-Chain OpenSim Model and Its Application on Posture Analysis of an Overhead Drilling Task

机译:全链OpenSim模型及其在架空钻井任务姿态分析中的应用

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Biomechanical motion simulation and kinetic analysis of human joints and muscles provide insights into Musculoskeletal disorders. OpenSim is an open-source platform that give easy access to biomechanical analysis, especially of muscles. The biomechanical analysis in OpenSim is based on pre-defined human models. Among the dozens of models available right now, none covers the muscles and joints of all the body parts. In view of the fact that most human motions are systemic, the lack of a comprehensive model prohibits synthesized and systematical biomechanical analysis. The aim of this research is to develop an OpenSim model which enables the full-chain dynamic analysis of tasks involving multi-bodies. The model is developed based on two existing models. It consists of 45 body segments, 424 muscles and 39 degrees of freedom. The model was then used to simulate an overhead drilling task. Six drilling postures are analyzed, and the estimated joint moments and muscle activations are compared.
机译:对人体关节和肌肉的生物力学运动仿真和动力学分析为了解肌肉骨骼疾病提供了见识。 OpenSim是一个开放源代码平台,可轻松访问生物力学分析,尤其是肌肉。 OpenSim中的生物力学分析基于预定义的人体模型。在目前可用的数十种模型中,没有一种模型可以覆盖人体所有部位的肌肉和关节。鉴于大多数人体运动都是系统性的,因此缺乏全面的模型就无法进行综合的和系统的生物力学分析。这项研究的目的是开发一种OpenSim模型,该模型能够对涉及多主体的任务进行全链动态分析。该模型是基于两个现有模型开发的。它由45个身体部位,424个肌肉和39个自由度组成。然后将该模型用于模拟高架钻探任务。分析了六个钻孔姿势,并比较了估计的关节力矩和肌肉激活。

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