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通用肌肉骨骼模型在预测人类步态中肌肉功能角色的准确性。

Accuracy of generic musculoskeletal models in predicting the functional roles of muscles in human gait.

机构信息

Department of Mechanical Engineering, University of Melbourne, Victoria 3010, Australia.

出版信息

J Biomech. 2011 Jul 28;44(11):2096-105. doi: 10.1016/j.jbiomech.2011.05.023. Epub 2011 Jun 23.

Abstract

Biomechanical assessments of muscle function are often performed using a generic musculoskeletal model created from anatomical measurements obtained from cadavers. Understanding the validity of using generic models to study movement biomechanics is critical, especially when such models are applied to analyze the walking patterns of persons with impaired mobility. The aim of this study was to evaluate the accuracy of scaled-generic models in determining the moment arms and functional roles of the lower-limb muscles during gait. The functional role of a muscle was described by its potential to contribute to the acceleration of a joint or the acceleration of the whole-body center of mass. A muscle's potential acceleration was defined as the acceleration induced by a unit of muscle force. Dynamic simulations of walking were generated for four children with cerebral palsy and five age-matched controls. Each subject was represented by a scaled-generic model and a model developed from magnetic resonance (MR) imaging. Calculations obtained from the scaled-generic model of each subject were evaluated against those derived from the corresponding MR-based model. Substantial differences were found in the muscle moment arms computed using the two models. These differences propagated to calculations of muscle potential accelerations, but predictions of muscle function (i.e., the direction in which a muscle accelerated a joint or the center of mass and the magnitude of the muscle's potential acceleration relative to that of other muscles) were consistent between the two modeling techniques. Our findings suggest that scaled-generic models and image-based models yield similar assessments of muscle function in both normal and pathological gait.

摘要

肌肉功能的生物力学评估通常使用从尸体获得的解剖测量值创建的通用肌肉骨骼模型来进行。了解使用通用模型研究运动生物力学的有效性至关重要,尤其是当此类模型应用于分析行动不便者的步行模式时。本研究旨在评估缩放通用模型在确定步态过程中下肢肌肉的力臂和功能作用的准确性。肌肉的功能作用是通过其对关节加速或整个身体质心加速的潜在贡献来描述的。肌肉的潜在加速度被定义为单位肌肉力引起的加速度。为 4 名脑瘫儿童和 5 名年龄匹配的对照组生成了行走的动态模拟。每个受试者都由缩放通用模型和基于磁共振成像 (MR) 的模型表示。从每个受试者的缩放通用模型中获得的计算结果与基于相应的 MR 模型获得的计算结果进行了评估。两种模型计算的肌肉力臂存在明显差异。这些差异会传播到肌肉潜在加速度的计算中,但两种建模技术得出的肌肉功能预测(即肌肉加速关节或质心的方向以及肌肉的潜在加速度相对于其他肌肉的大小)是一致的。我们的研究结果表明,缩放通用模型和基于图像的模型在正常和病理步态中对肌肉功能的评估相似。

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