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开发具有预测三维肌肉收缩能力的有限元肌肉骨骼模型。

Development of a finite element musculoskeletal model with the ability to predict contractions of three-dimensional muscles.

机构信息

School of Science and Technology, Middlesex University, London, UK.

Department of Engineering Mechanics, Dalian University of Technology, Dalian, China.

出版信息

J Biomech. 2019 Sep 20;94:230-234. doi: 10.1016/j.jbiomech.2019.07.042. Epub 2019 Aug 7.

Abstract

Representation of realistic muscle geometries is needed for systematic biomechanical simulation of musculoskeletal systems. Most of the previous musculoskeletal models are based on multibody dynamics simulation with muscles simplified as one-dimensional (1D) line-segments without accounting for the large muscle attachment areas, spatial fibre alignment within muscles and contact and wrapping between muscles and surrounding tissues. In previous musculoskeletal models with three-dimensional (3D) muscles, contractions of muscles were among the inputs rather than calculated, which hampers the predictive capability of these models. To address these issues, a finite element musculoskeletal model with the ability to predict contractions of 3D muscles was developed. Muscles with realistic 3D geometry, spatial muscle fibre alignment and muscle-muscle and muscle-bone interactions were accounted for. Active contractile stresses of the 3D muscles were determined through an efficient optimization approach based on the measured kinematics of the lower extremity and ground force during gait. This model also provided stresses and strains of muscles and contact mechanics of the muscle-muscle and muscle-bone interactions. The total contact force of the knee predicted by the model corresponded well to the in vivo measurement. Contact and wrapping between muscles and surrounding tissues were evident, demonstrating the need to consider 3D contact models of muscles. This modelling framework serves as the methodological basis for developing musculoskeletal modelling systems in finite element method incorporating 3D deformable contact models of muscles, joints, ligaments and bones.

摘要

为了对肌肉骨骼系统进行系统的生物力学模拟,需要对真实的肌肉几何形状进行表示。大多数先前的肌肉骨骼模型都是基于多体动力学模拟的,肌肉简化为一维(1D)线段,而不考虑大的肌肉附着区域、肌肉内的空间纤维排列以及肌肉与周围组织之间的接触和包裹。在以前的具有三维(3D)肌肉的肌肉骨骼模型中,肌肉收缩是作为输入的,而不是计算得出的,这限制了这些模型的预测能力。为了解决这些问题,开发了一种具有预测三维肌肉收缩能力的有限元肌肉骨骼模型。该模型考虑了具有真实 3D 几何形状、空间肌肉纤维排列以及肌肉-肌肉和肌肉-骨骼相互作用的肌肉。通过一种基于下肢测量运动学和步态时地面力的高效优化方法,确定了 3D 肌肉的主动收缩应力。该模型还提供了肌肉的应力和应变以及肌肉-肌肉和肌肉-骨骼相互作用的接触力学。模型预测的膝关节总接触力与体内测量值吻合良好。肌肉与周围组织之间的接触和包裹很明显,表明需要考虑肌肉的 3D 接触模型。该建模框架为开发包含肌肉、关节、韧带和骨骼的三维可变形接触模型的有限元肌肉骨骼建模系统提供了方法学基础。

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