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Neck injuries in car collisions -- a review covering a possible injury mechanism and the development of a new rear-impact dummy

机译:汽车碰撞中的颈部受伤-审查可能的伤害机制和新型后防撞假人的开发

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摘要

A review of a few Swedish research projects on soft tissue neck injuries in car collisions is presented together with some new results. Efforts to determine neck injury mechanisms was based on a hypothesis stating that injuries to the nerve root region in the cervical spine are a result of transient pressure gradients in the spinal canal during rapid neck bending. In experimental neck trauma research on animals, pressure gradients were observed and indications of nerve cell membrane dysfunction were found in the cervical spinal ganglia. The experiments covered neck extension, flexion and lateral bending. A theoretical model in which fluid flow was predicted to cause the transient pressure gradients was developed and a neck injury criterion based on Navier-Stokes Equations was applied on the flow model. The theory behind the Neck Injury Criterion indicates that the neck injury occurs early on in the rearward motion of the head relative to the torso in a rear-end collision. Thus the relative horizontal acceleration and velocity between the head and the torso should be restricted during the early head-neck motion to avoid neck injury. A Bio-fidelic Rear Impact Dummy (BioRID) was developed in several steps and validated against volunteer test results. The new dummy was partly based on the Hybrid III dummy. It had a new articulated spine with curvature and range of motion resembling that of a human being. A new crash dummy and a neck injury criterion will be very important components in a future rear-impact crash test procedure.
机译:介绍了一些有关汽车碰撞中软组织颈部受伤的瑞典研究项目,并给出了一些新结果。确定颈部损伤机制的努力是基于一种假设,该假设表明对颈椎神经根区域的损伤是在快速弯曲颈部时脊管内瞬时压力梯度的结果。在动物实验性颈部创伤研究中,观察到压力梯度,并在颈脊髓神经节中发现了神经细胞膜功能障碍的迹象。实验涵盖了颈部伸展,屈曲和横向弯曲。建立了预测流体流动会导致瞬态压力梯度的理论模型,并将基于Navier-Stokes方程的颈部损伤判据应用于该流动模型。颈部损伤标准背后的理论表明,颈部碰撞是在后端碰撞中头部相对于躯干的向后运动中较早发生的。因此,在头部-颈部早期运动期间,应限制头部和躯干之间的相对水平加速度和速度,以避免颈部受伤。经过分几个步骤开发了Bio-fidelic后碰撞假人(BioRID),并根据自愿测试结果进行了验证。新的假人部分基于Hybrid III假人。它有一条新的铰接脊柱,其曲率和运动范围与人类相似。一个新的碰撞假人和脖子受伤的准则将是将来的后碰撞碰撞测试程序中非常重要的组成部分。

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