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WHAT IS A MOMENT ARM? CALCULATING MUSCLE EFFECTIVENESS IN BIOMECHANICAL MODELS USING GENERALIZED COORDINATES

机译:什么是弯矩臂?使用广义坐标计算生物力学模型中的肌肉功效

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摘要

Biomechanics researchers often use multibody models to represent biological systems. However, the mapping from biology to mechanics and back can be problematic. OpenSim is a popular open source tool used for this purpose, mapping between biological specifications and an underlying generalized coordinate multibody system called Simbody. One quantity of interest to biomechanical researchers and clinicians is “muscle moment arm,” a measure of the effectiveness of a muscle at contributing to a particular motion over a range of configurations. OpenSim can automatically calculate these quantities for any muscle once a model has been built. For simple cases, this calculation is the same as the conventional moment arm calculation in mechanical engineering. But a muscle may span several joints (e.g., wrist, neck, back) and may follow a convoluted path over various curved surfaces. A biological joint may require several bodies or even a mechanism to accurately represent in the multibody model (e.g., knee, shoulder). In these situations we need a careful definition of muscle moment arm that is analogous to the mechanical engineering concept, yet generalized to be of use to biomedical researchers. Here we present some biomechanical modeling challenges and how they are resolved in OpenSim and Simbody to yield biologically meaningful muscle moment arms.
机译:生物力学研究人员经常使用多体模型来表示生物系统。但是,从生物学到力学再到力学的映射可能会出现问题。 OpenSim是用于此目的的流行开源工具,在生物学规范和称为Simbody的基础广义坐标多体系统之间进行映射。生物力学研究人员和临床医生感兴趣的一个量是“肌肉弯矩臂”,它是一种肌肉在一系列配置中对特定运动做出贡献的有效性的量度。建立模型后,OpenSim可以为任何肌肉自动计算这些数量。对于简单情况,此计算与机械工程中的常规力矩臂计算相同。但是,肌肉可能会跨越多个关节(例如,腕部,颈部,背部),并且可能会在各种曲面上沿着曲折的路径运动。生物关节可能需要多个身体,甚至需要一个机制才能在多体模型中准确表示(例如,膝盖,肩膀)。在这种情况下,我们需要仔细地定义肌肉力矩臂,这类似于机械工程学概念,但可以普遍用于生物医学研究人员。在这里,我们提出了一些生物力学建模挑战,以及如何在OpenSim和Simbody中解决它们,以产生生物学上有意义的肌肉力矩臂。

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