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首页> 外文期刊>Journal of Applied Biomechanics >OpenSim Versus Human Body Model: A Comparison Study for the Lower Limbs During Gait
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OpenSim Versus Human Body Model: A Comparison Study for the Lower Limbs During Gait

机译:OpenSim与人体模型:步态下肢的比较研究

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Musculoskeletal modeling and simulations have become popular tools for analyzing human movements. However, end users are often not aware of underlying modeling and computational assumptions. This study investigates how these assumptions affect biomechanical gait analysis outcomes performed with Human Body Model and the OpenSim gait2392 model. The authors compared joint kinematics, kinetics, and muscle forces resulting from processing data from 7 healthy adults with both models. Although outcome variables had similar patterns, there were statistically significant differences in joint kinematics (maximal difference: 9.8 degrees [1.5 degrees] in sagittal plane hip rotation), kinetics (maximal difference: 0.36 [0.10] N.m/kg in sagittal plane hip moment), and muscle forces (maximal difference: 8.51 [1.80] N/kg for psoas). These differences might be explained by differences in hip and knee joint center locations up to 2.4 (0.5) and 1.9 (0.2) cm in the posteroanterior and inferosuperior directions, respectively, and by the offset in pelvic reference frames of about 10 degrees around the mediolateral axis. The choice of model may not influence the conclusions in clinical settings, where the focus is on interpreting deviations from the reference data, but it will affect the conclusions of mechanical analyses in which the goal is to obtain accurate estimates of kinematics and loading.
机译:肌肉骨骼建模和模拟已成为分析人体运动的流行工具。但是,最终用户通常不了解基础建模和计算假设。这项研究调查了这些假设如何影响人体模型和OpenSim gait2392模型执行的生物力学步态分析结果。作者比较了使用两种模型处理来自7位健康成年人的数据所产生的关节运动学,动力学和肌肉力量。尽管结果变量具有相似的模式,但关节运动学(矢状面髋关节旋转的最大差异:9.8度[1.5度]),动力学(统计学上的差异)存在统计学差异(矢状面髋关节力矩的最大差异:0.36 [0.10] Nm / kg)和肌肉力量(腰大肌最大差异:8.51 [1.80] N / kg)。这些差异可以通过髋臼和膝关节中心位置分别在后上和下上方向分别达到2.4(0.5)和1.9(0.2)cm的差异以及盆腔参考系在前外侧周围约10度的偏移来解释轴。模型的选择可能不会影响临床环境中的结论,在临​​床环境中,重点是解释与参考数据之间的偏差,但会影响机械分析的结论,而机械分析的目的是获得运动学和载荷的准确估计。

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