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Using Computer-aided Techniques in the Dynamic Modeling of the Human Upper Limb

机译:在人上肢动态建模中使用计算机辅助技术

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The wide mobility of human body leads to the necessity of modeling the osteoarticular system as a mechanism with a large number of degrees of freedom. Dynamic modeling of osteoarticular system is necessary because the exertion of various actions and natural physiological movements are essentially dynamic. Very often we use a simplified model because the phenomena produced are so complex that accurate mathematical reproduction is practically impossible. A dynamic model must provide a good estimate of total weight and mass distribution as well as transmissibility and amortization proprieties for bones, muscles, joints, blood and skin. The paper presents a dynamic functional model considering the human upper limb as a mechanic system with 5 degrees of freedom in the case the segments are moved by their own weight forces. The bones and the muscles were modeled in Solid Works, the model of the upper limb obtained being very close as form to the real one. Based on this model, the calculus of mass proprieties was made. The differential equations of motion obtained were solved using Lagrange formalism.
机译:人体的广泛移动性导致必须将骨关节系统建模为具有大量自由度的机制。骨关节系统的动态建模是必要的,因为各种动作的施加和自然的生理运动本质上是动态的。我们经常使用简化模型,因为产生的现象是如此复杂,以至于几乎不可能进行精确的数学再现。动态模型必须提供对骨骼,肌肉,关节,血液和皮肤的总重量和质量分布以及可传递性和摊销特性的良好估计。本文提出了一个动态功能模型,该模型将人体上肢作为具有5个自由度的机械系统,以防各段通过自身的重力移动。在Solid Works中对骨骼和肌肉进行了建模,所获得的上肢模型与实际模型非常接近。在此模型的基础上,进行了群众财产的演算。使用拉格朗日形式主义求解获得的运动微分方程。

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