Department of Systems Design Engineering, University of Waterloo, Waterloo, Canada.
Comput Methods Biomech Biomed Engin. 2024 Mar;27(3):306-337. doi: 10.1080/10255842.2023.2184747. Epub 2023 Mar 6.
A musculoskeletal (MSK) model is a valuable tool for assessing complex biomechanical problems, estimating joint torques during motion, optimizing motion in sports, and designing exoskeletons and prostheses. This study proposes an open-source upper body MSK model that supports biomechanical analysis of human motion. The MSK model of the upper body consists of 8 body segments (torso, head, left/right upper arm, left/right forearm, and left/right hand). The model has 20 degrees of freedom (DoFs) and 40 muscle torque generators (MTGs), which are constructed using experimental data. The model is adjustable for different anthropometric measurements and subject body characteristics: sex, age, body mass, height, dominant side, and physical activity. Joint limits are modeled using experimental dynamometer data within the proposed multi-DoF MTG model. The model equations are verified by simulating the joint range of motion (ROM) and torque; all simulation results have a good agreement with previously published research.
肌肉骨骼 (MSK) 模型是评估复杂生物力学问题、估计运动过程中关节扭矩、优化运动、设计外骨骼和假肢的有价值的工具。本研究提出了一种支持人体运动生物力学分析的开源上半身 MSK 模型。上半身 MSK 模型由 8 个体段(躯干、头部、左右上臂、左右前臂和左右手)组成。该模型有 20 个自由度 (DoF) 和 40 个肌肉扭矩发生器 (MTG),这些 MTG 使用实验数据构建。该模型可根据不同的人体测量学数据和受试者身体特征进行调整:性别、年龄、体重、身高、优势侧和身体活动。关节限制使用拟议的多自由度 MTG 模型中的实验测力计数据进行建模。通过模拟关节运动范围 (ROM) 和扭矩来验证模型方程;所有仿真结果均与先前发表的研究具有良好的一致性。