The effect of load carrying on the human lower extremity muscle activation during walking

A. Ghafari, A. Meghdari, G. Vossoughi
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引用次数: 3

Abstract

This paper focuses on the biomechanical aspects of human load carrying in order to provide a physiological framework for designing the more anthropometric assistive systems. An 8-degrees-of-freedom musculoskeletal model with twenty functional muscle groups in the lower extremity was developed to simulate the movement in sagittal plane. Inverse dynamics based optimization approach was employed to estimate the excitation level of the muscles. Activation patterns of the muscles illustrate the importance role of the soleus in supporting of the body during load carrying. Also power distribution analysis of the muscles reveals that the plantar flexors of the ankle, extensors of the knee and hip joints exhibit distinct functional differences between normal walking and load carrying conditions. As a result anthropometric assistive mechanism should contain actuators providing additional extension torque in the hip and knee joints and plantar flexion torque in the ankle joint.
负重对行走时人体下肢肌肉活动的影响
本文着重于人体负重的生物力学方面,以便为设计更多的人体测量辅助系统提供一个生理框架。建立了具有20个下肢功能肌群的8自由度肌肉骨骼模型,模拟了下肢矢状面运动。采用基于逆动力学的优化方法估计肌肉的兴奋程度。肌肉的激活模式说明了比目鱼肌在负重过程中支撑身体的重要作用。此外,肌肉的力量分布分析显示,在正常行走和负重状态下,踝关节的足底屈肌、膝关节的伸肌和髋关节的功能表现出明显的差异。因此,人体测量辅助机构应包含致动器,在髋关节和膝关节提供额外的伸展扭矩,在踝关节提供足底屈曲扭矩。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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