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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >The effects of gender, level of co-contraction, and initial angle on elbow extensor muscle stiffness and damping under a step increase in elbow flexion moment.
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The effects of gender, level of co-contraction, and initial angle on elbow extensor muscle stiffness and damping under a step increase in elbow flexion moment.

机译:性别,共收缩程度和初始角度对肘部屈伸力矩逐步增加下肘伸肌的肌肉僵硬和减震的影响。

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摘要

Flexion buckling of an arm under the large ground reaction loads associated with arresting a fall to the ground increases the risk for head and thorax injuries. Yet, the factors that determine the arm buckling load remain poorly understood. We tested the hypothesis in 18 healthy young adults that neither gender, triceps co-contraction level (i.e., 25, 50, or 75% MVC) nor elbow angle would affect the rotational stiffness and damping resistance to step changes in elbow flexion loading. Data on the step response were gathered using optoelectronic markers (150 Hz) and myoelectric activity measurements (2 kHz), and an inverse dynamics analysis was used to estimate elbow extensor stiffness and damping coefficients. A repeated-measures analysis of variance showed that gender (p = 0.032), elbow flexion angle and co-contraction level (both p < 0.001) affected stiffness, but only the latter affected the damping coefficient (p = 0.035). At 25 degrees of initial elbow flexion angle and maximum co-contraction, female stiffness and damping coefficients were 18 and 30% less, respectively, than male values after normalization by body height and weight. We conclude that the maximum extensor rotational stiffness and damping at the elbow is lower in women than in men of the same body size, and varies with triceps co-contraction level and initial elbow angle.
机译:在大的地面反作用力下,手臂的屈曲屈曲与阻止跌倒有关,增加了头部和胸部受伤的风险。然而,决定臂屈曲载荷的因素仍然知之甚少。我们在18位健康的年轻人中检验了这一假设,即性别,肱三头肌共同收缩水平(即25、50或75%MVC)或肘部角度都不会影响旋转刚度和对肘部屈曲负荷阶跃变化的阻尼阻力。使用光电标记(150 Hz)和肌电活动测量(2 kHz)收集有关阶跃响应的数据,并使用逆动力学分析估计肘伸肌的刚度和阻尼系数。重复测量方差分析表明,性别(p = 0.032),肘部弯曲角度和共收缩水平(p <0.001)影响刚度,但只有后者会影响阻尼系数(p = 0.035)。初始肘关节弯曲角度为25度和最大共收缩时,按身高和体重归一化后,女性的刚度和阻尼系数分别比男性低18%和30%。我们得出的结论是,与相同体型的男性相比,女性的肘部最大伸肌旋转刚度和阻尼要低,并且随着肱三头肌的共同收缩水平和初始肘部角度而变化。

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