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The importance of muscle tension on the outcome of impacts with a major vertical component

机译:肌肉张力对主要垂直分量的撞击结果的重要性

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The hypothesis that muscle tension protects the spine from injuries in helicopter scenarios was tested using a finite-element model of the human head and neck. It was compared with cadaver crash sled experiment with good correlation. Then, simulations were performed with a sinusoidal velocity (5-22 G) applied at T1 60° to the horizontal plane. The model with relaxed muscle activation had delayed and decreased peak head rotation compared with passive properties only. Full muscle activation decreased the injury risk for the 13.5-22 G impacts. A sensitivity study of the impact angle showed a very slight variation of the resulting neck flexion, and 1° change affected all ligament injury predictions less than 4%. Finally, simulations with helmets resulted in increased ligament and disc strains with increasing helmet mass and with an anterior or inferior shift of the centre of gravity. It is concluded that the hypothesis seems to hold.
机译:使用人类头部和颈部的有限元模型,对在直升机场景中肌肉张力保护脊柱免受伤害的假设进行了测试。它与尸体碰撞雪橇实验进行了比较,具有很好的相关性。然后,使用在T1 60°处施加到水平面的正弦速度(5-22 G)进行仿真。与仅被动属性相比,具有松弛肌肉激活的模型延迟并降低了峰值头部旋转。完全的肌肉活化降低了13.5-22 G撞击的伤害风险。冲击角的敏感性研究表明,产生的颈部屈曲变化很小,并且1°的变化影响所有韧带损伤预测值的比例小于4%。最后,使用头盔进行模拟会导致韧带和椎间盘应力增加,头盔质量增加,重心向前或向后移动。结论是该假设似乎成立。

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