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首页> 外文期刊>Acta polytechnica >The Biomechanics of Gender Difference and Whiplash Injury: Designing Safer Car Seats for Women
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The Biomechanics of Gender Difference and Whiplash Injury: Designing Safer Car Seats for Women

机译:性别差异和鞭打伤害的生物力学:为女性设计更安全的汽车座椅

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Female car users are reported to have a higher incidence of soft tissue neck injuries in low speed rear-end collisions than males, and they apparently take longer to recover. This paper addresses the whiplash problem by developing a biomechanical FEM (Finite Element Method) model of the 50th and the 5th percentile female cervical spines, based on the earlier published male model created at the Nottingham Trent University. This model relies on grafting a detailed biomechanical model of the neck and head onto a standard HYBRID III dummy model. The overall philosophy of the investigation was to see if females responded essentially as scaled down males from the perspective of rear end collisions. It was found that detailed responses varied significantly with gender and it became clear that females cannot be modelled as scaled-down males, thus confirming the need for separate male and female biomechanical models and a revision of car test programmes and regulations which are currently based on the average male. Further investigation is needed to quantify the gender differences and then recommendations can be made for changes to the design of car seats and head restraints in order to reduce the risk of soft tissue injury to women.
机译:据报道,女性汽车使用者在低速追尾碰撞中发生的软组织颈部损伤的发生率比男性高,而且显然需要更长的时间才能康复。本文通过在诺丁汉特伦特大学创建的较早发布的男性模型的基础上,通过建立第50和第5个百分位女性颈椎的生物力学FEM(有限元方法)模型来解决鞭打问题。该模型依赖于将详细的脖子和头部生物力学模型移植到标准HYBRID III虚拟模型上。该调查的总体思路是,从追尾事故的角度来看,雌性的反应是否与雄性的反应一致。结果发现,详细的回答随性别而变化很大,并且很明显,不能将女性建模为按比例缩小的男性,因此确认了需要分别的男性和女性生物力学模型以及修订基于当前的汽车测试程序和法规的必要性。普通男性。需要进一步调查以量化性别差异,然后可以提出改变汽车座椅和头枕设计的建议,以减少女性软组织受伤的风险。

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