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在全肌肉大鼠后肢模型中分析力臂分布

Analyzing Moment Arm Profiles in a Full-Muscle Rat Hindlimb Model.

作者信息

Young Fletcher, Rode Christian, Hunt Alex, Quinn Roger

机构信息

Department of Mechanical and Aerospace Engineering, Case Western Reserve University, Cleveland, OH 44106-7222, USA.

Department of Motion Science, Friedrich-Schiller University Jena, 07737 Jena, Germany.

出版信息

Biomimetics (Basel). 2019 Jan 25;4(1):10. doi: 10.3390/biomimetics4010010.

Abstract

Understanding the kinematics of a hindlimb model is a fundamental aspect of modeling coordinated locomotion. This work describes the development process of a rat hindlimb model that contains a complete muscular system and incorporates physiological walking data to examine realistic muscle movements during a step cycle. Moment arm profiles for selected muscles are analyzed and presented as the first steps to calculating torque generation at hindlimb joints. A technique for calculating muscle moment arms from muscle attachment points in a three-dimensional (3D) space has been established. This model accounts for the configuration of adjacent joints, a critical aspect of biarticular moment arm analysis that must be considered when calculating joint torque. Moment arm profiles from isolated muscle motions are compared to two existing models. The dependence of biarticular muscle's moment arms on the configuration of the adjacent joint is a critical aspect of moment arm analysis that must be considered when calculating joint torque. The variability in moment arm profiles suggests changes in muscle function during a step.

摘要

了解后肢模型的运动学是对协调运动进行建模的一个基本方面。这项工作描述了一个大鼠后肢模型的开发过程,该模型包含完整的肌肉系统,并纳入生理行走数据,以检查步周期内实际的肌肉运动。分析了选定肌肉的力臂轮廓,并将其作为计算后肢关节扭矩产生的第一步呈现出来。已经建立了一种从三维(3D)空间中的肌肉附着点计算肌肉力臂的技术。该模型考虑了相邻关节的配置,这是双关节力臂分析的一个关键方面,在计算关节扭矩时必须予以考虑。将孤立肌肉运动的力臂轮廓与两个现有模型进行了比较。双关节肌肉的力臂对相邻关节配置的依赖性是力臂分析的一个关键方面,在计算关节扭矩时必须予以考虑。力臂轮廓的变异性表明在一步过程中肌肉功能发生了变化。

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