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Biomechanical Approach for the Development and Simulation of a Musculoskeletal Model of the Ankle

机译:踝关节肌肉骨骼模型的开发和仿真的生物力学方法

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摘要

Estimation of individual muscle forces during human movement can provide insight into neural control and tissue loading and can thus contribute to improved diagnosis and management of both neurological and orthopaedic conditions. Direct measurement of muscle forces is generally not feasible in a clinical setting, and non-invasive methods based on musculoskeletal modeling should, therefore, be considered. The current state of the art in clinical movement analysis is that resultant joint torques can be reliably estimated from motion data and external forces (inverse dynamic analysis). The purpose of this paper consists in developing and simulating a biomechanical model of the lower limb, more precisely, of the foot during its movement. In this paper, we are interested in the calculation of the ankle joint. First, we have studied the muscular length variation as a function of the variation of the flexion angle. Then, we focus on the determination of the muscular force produced by muscles and involved in the flexion movement and the foot extension. Finally, we have cited the findings and the interpretations appropriate to the results obtained.
机译:人体运动期间的个体肌肉力估计可以深入了解神经控制和组织载荷,因此可以有助于改善神经系统和整形外科病症的诊断和管理。肌肉力的直接测量通常在临床环境中通常不可行,因此应考虑基于肌肉骨骼建模的非侵入性方法。临床运动分析中最新的现有状态是可以从运动数据和外力(反向动态分析)可靠地估计所得的关节扭矩。本文的目的在于在其运动期间更精确地开发和模拟下肢的生物力学模型。在本文中,我们对计算踝关节的计算感兴趣。首先,我们研究了作为屈曲角度变化的函数的肌肉长度变化。然后,我们专注于确定肌肉产生的肌肉力,并参与屈曲运动和脚延伸。最后,我们引用了适合获得的结果的调查结果和解释。

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