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Study on Human Ankle Joint Biomechanical Dynamics During Upright Standing ‘Sandbag-Disturbance’ Push-Recovery

机译:直立站立“沙袋扰动”推回过程中人体踝关节生物力学动力学研究

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The ankle joint biomechanical dynamics plays an important role in the balance of the human body, especially under the small disturbance. In this paper, ankle joint biomechanical dynamics and muscle reflex control are investigated. Soleus(SOL), gastrocnemius(GAS) and tibialis anterior(TA) are selected to record the surface electromyography for analysis. Ankle joint angle is recorded by an encoder. The pressure insole records the foot pressure and the ankle joint torque is calculated using the data. The disturbance is exerted by a sandbag released at different height to hit backs of subjects. The experimental condition is controlled so that subjects pay no attention to the disturbance for upright standing balance. Seven subjects participate in the experiment. The experimental results indicate that there is no significant differences among muscle activation levels for different level disturbances. The linearity between the SOL activation and ankle joint torque is high. The joint angle and the torque also have high linearity. Considering that muscle reflex has the function of regulating muscle stiffness, the ankle joint seems to maintain ‘stiffness’ within a small variation to resist limited range external disturbance.
机译:踝关节的生物力学动力学在人体平衡方面起着重要作用,尤其是在很小的干扰下。本文研究了踝关节的生物力学动力学和肌肉反射控制。选择比目鱼肌(SOL),腓肠肌(GAS)和胫前肌(TA)记录表面肌电图以进行分析。踝关节角度由编码器记录。压力鞋垫记录脚的压力,并使用该数据计算踝关节扭矩。骚扰是由一个在不同高度释放的沙袋施加的,以击中受试者的后背。控制实验条件,使受试者无需注意正直站立平衡的干扰。七名受试者参加了实验。实验结果表明,对于不同程度的干扰,肌肉激活水平之间没有显着差异。 SOL激活和踝关节扭矩之间的线性很高。关节角度和扭矩也具有较高的线性度。考虑到肌肉反射具有调节肌肉僵硬的功能,因此踝关节似乎可以将“刚度”维持在很小的变化范围内,以抵抗有限范围的外部干扰。

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