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In vivo stiffness measurement and in silico stiffness prediction of biceps brachii muscle using an isometric contraction exercise

机译:使用等距收缩运动的肱二头肌肱肌的体内僵硬度测量和计算机挺度预测

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摘要

Cadavers are often used to measure the material properties of muscle via the static tensile loading test. However, the mechanical properties of the cadaver are different from that of in vivo muscle. In this work, a new way to measure the stiffness of in vivo muscle was proposed based on a vibration test combined with measured electromyography (EMG) signals. The stiffness of the biceps brachii muscle during isometric contractions with various weights (0 - 11 kg) was measured from the vibration test utilizing support properties of a spring attached to a mass. The relationship between the load level, the EMG signal, and the muscle stiffness was investigated and a multiple- spring model for biceps brachii muscle was newly suggested. Also, simulation using a commercial bio-mechanics simulation software (LifeMOD) was conducted to verify the developed muscle spring model and the measured stiffness of the in vivo muscle. The in vivo stiffness of the biceps brachii measured experimentally agreed well with the simulation result.
机译:尸体通常用于通过静态拉伸载荷测试来测量肌肉的材料特性。但是,尸体的机械性能与体内肌肉的机械性能不同。在这项工作中,基于振动测试结合实测肌电图(EMG)信号,提出了一种测量体内肌肉僵硬的新方法。根据振动试验,利用附着在质量块上的弹簧的支撑特性,通过振动测试测量了肱二头肌肱二头肌在等重收缩过程中的各种刚度(0-11 kg)。研究了负荷水平,肌电信号和肌肉僵硬度之间的关系,并提出了肱二头肌肌肉多弹簧模型。此外,使用商业生物力学模拟软件(LifeMOD)进行了模拟,以验证开发的肌肉弹簧模型和体内肌肉的测量硬度。实验测量的肱二头肌的体内硬度与模拟结果吻合得很好。

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