首页> 外文会议>ASME Conference on Frontiers in Medical Devices: Applications of Computer Modeling and Simulation >MULTI-BODY MODELING OF HUMAN MUSCULOSKELETAL SYSTEM FOR AN EXERCISE THERAPY METHOD AND ITS VERIFICATION
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MULTI-BODY MODELING OF HUMAN MUSCULOSKELETAL SYSTEM FOR AN EXERCISE THERAPY METHOD AND ITS VERIFICATION

机译:锻炼方法的人肌肉骨骼系统多体建模及验证

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The objective of this paper is to establish a concise structural model of the human musculoskeletal system (HMS) that can be applied to an exercise therapy that treats malfunctions or distortions of the human body. There exist a number of traditional exercise therapy methods in Japan and China, but any systematic approaches for learning, coaching or training are not found to the best of the author's knowledge. Among such approaches, we deal with an exercise therapy called Somatic Balance Restoring Therapy (SBRT) in which a patient executes a series of non-invasive and painless motions in face-up/down laid posture. Although thousands of results have been piled up in a fixed-format data base, justification for the SBRT has not been provided in bio/mechanical engineering sense. The purpose of modeling is a first step for this holistic approach. For such reasons, the model must be useful and uncomplicated for therapists to identify the problematic areas of the human body with adequate visualization while maintaining a theoretical thoroughness in mechanics or dynamics. To bridge multi-body dynamics and the SBRT, we have utilized a human body model with a collection of joint connected 15 rigid bodies in a topological tree configuration as used for humanoid robot with 80 Degrees-of-Freedom (DOF). In order to achieve the purpose stated above, we have developed a static force/torque balance equation for each body element. In addition, we will describe modeling processes, derivation of static equations, and estimation of parameters/states and verification based on the analysis of the FPS experimental data, and contact forces are parameterized with quantitative values to be given by the Force Plate System (FPS), installed at CARIS at the University of British Columbia (UBC).
机译:本文的目的是建立一种人肌肉骨骼系统(HMS)的简明结构模型,可以应用于治疗人体发生故障或扭曲的运动疗法。日本和中国存在许多传统的运动疗法方法,但没有任何系统的学习方法,并没有找到作者的知识。在这些方法中,我们处理患有体细胞平衡恢复治疗(SBRT)的运动疗法,其中患者在面朝上/下铺设姿势中执行一系列非侵入性和无痛运动。虽然成千上万的结果已经以固定格式的数据库堆积起来,但Bio /机械工程意义上尚未提供SBRT的理由。建模目的是这种整体方法的第一步。出于这样的原因,该模型必须对治疗师有用并且简单,以确定人体的有问题区域,同时保持机械或动力学的理论彻底性。为了桥接多体动力学和SBRT,我们利用了一种人体模型,该人体模型具有带有80自由度(DOF)的人形机器人的拓扑树配置中的接头连接的15个刚体。为了达到上述目的,我们开发了每个主体元件的静力/扭矩平衡方程。另外,我们将描述静态方程的建模过程,衍生衍生参数/状态的估计,以及基于FPS实验数据的分析的验证,并且接触力通过力板系统(FPS)给出定量值(FPS ),在不列颠哥伦比亚省大学(UBC)的卡里斯安装。

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