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Biomechanical Research for the Reduction of Minor Neck Injuries during Rear-end Impacts - Human Volunteer Experiments and Accident Reconstruction Using Human FE Model Simulations

机译:用人Fe模型模拟减少对后端冲击次颈部损伤减少的生物力学研究 - 人力志愿者实验与事故重建

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Minor neck injuries (whiplash associated disorder) during rear-end impacts have become the most frequent cause of permanent disabilities compared with rear-end impact injuries in other regions of the body. The social cost of these types of injuries have grown to be such an extensive burden that identification and clarification of the mechanism of neck injury, as well as the need for a method for evaluating the reduction of neck injuries through the use of an advanced seat and headrest, becomes imperative. Injury evaluation parameters were set using a human finite element model based on live volunteer and cadaver experiments, reinforced with data from 20 accidents. It is found that the displacements between the cervical vertebrae can cause neck injuries/persistent symptoms, and 2D strains of the inter-vertebral bodies as injury criteria are defined. The thresholds where WAD2+ injuries occur by making risk curves with NIC and the neck forces, and lead to a proposed neck injury evaluation method. The result is primarily concerned and focused with being a primary candidate for an injury evaluation method that would be scrutinized by WP29/GRSP/HR GTR, where the assessment and examination of minor neck injury reduction seats are deliberated in the world.
机译:与身体其他地区的后端冲击损伤相比,后端冲击期间的轻微颈部受伤(鞭打相关疾病)已成为永久性损伤的最常见原因。这些类型的伤害的社会成本已经发展成为一种广泛的负担,即识别和澄清颈部损伤机制,以及通过使用先进座椅来评估颈部损伤的减少方法的方法头枕,变得势在必行。使用基于现场志愿者和尸体实验的人的有限元模型进行损伤评估参数,加强来自20次事故的数据。结果发现,宫颈椎骨之间的位移会导致颈部损伤/持续症状,并且定义了椎体间椎体的2D菌株。通过用NIC和颈部力的风险曲线使诸如颈部力的风险曲线发生阈值,并导致提出的颈部损伤评估方法。结果主要涉及并侧重于作为伤害评估方法的主要候选者,该方法将由WP29 / GRSP / HR GTR审查,其中在世界上进行了评估和检查次要颈部损伤座椅。

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