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Development and Validation of an Occupant Biomechanical Model for the Aortic Injury Analysis under Side Impacts

机译:侧面碰撞主动脉损伤分析乘员生物力学模型的建立与验证

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摘要

Traumatic rupture of the aorta (TRA) is one of the leading causes of death in side impacts. However, the injury mechanism of TRA is still not clear now. In this study, an occupant biomechanical model for the aortic injury study was presented. The anatomical structures and mechanical characteristics of the thoracic organs, especially the cardiac aortic system, were replicated as precise as possible. Through model validations against the Post Mortem Human Subjects (PMHS) tests, good agreements were achieved between them in terms of the aortic strain, stress and deflection responses and injury distributions. Moreover, it was found that the injury mechanisms of the aorta under pure left side impact and oblique left side impact were different. In pure left side impact, the peri-isthmic region and descending aorta presented higher risks of TRA. In oblique left side impact, the TRA risk in aortic boot was higher than in other regions. The biomechanical model presented in this study could be of use to both the injury mechanism study of TRA as well as the design of occupants’ safety countermeasures involving aortic injuries in side impacts.
机译:主动脉创伤性破裂(TRA)是造成侧面碰撞死亡的主要原因之一。但是,TRA的损伤机制目前尚不清楚。在这项研究中,提出了一种用于主动脉损伤研究的乘员生物力学模型。尽可能精确地复制了胸腔器官,尤其是心脏主动脉系统的解剖结构和力学特性。通过针对事后人类受试者(PMHS)测试的模型验证,他们之间在主动脉应变,应力和挠度响应以及损伤分布方面达成了良好的协议。此外,发现在纯左侧撞击和斜左侧撞击下主动脉的损伤机制是不同的。在纯左侧撞击中,等轴周围区域和降主动脉呈现较高的TRA风险。在左侧斜向撞击中,主动脉引导区的TRA风险高于其他区域。这项研究中提出的生物力学模型既可以用于TRA的损伤机制研究,也可以用于涉及副主动脉损伤的乘员安全对策设计。

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