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Development and Validation of a Finite Element Model of the Human Thoracic for Rib Fractures Prediction in Automobile Collisions

机译:汽车碰撞中肋骨骨折预测的人胸部有限元模型的开发与验证

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Thoracic trauma is a frequent occurrence in automotive collisions. A finite element human thorax model was developed for predicting thoracic Rib fractures and studying the injury mechanisms of thorax for automotive impact accidents. CT image and MRI image of the human skeleton and internal organs were used to construct the three-dimensional finite element representation of the rib cage and internal organs. The model was created in the finite element code LS-DYNA. The mechanical properties of the biological tissues in this model were based on test data found in the literature. Several experimental studies have been performed to determine the material properties and force-deformation behaviors of the rib tissues under three-point bending or anterior-posterior loading, the full model was validated against post-mortem human subjects (PMHS)impact data responses for both frontal and lateral impact. Good correlation between the model and the cadaver responses were achieved for the force and deflection time-histories these models provide comparative tools for determining the thoracic response to automotive impact injury and can be used to evaluate Rib fractures and determined thoracic injury mechanism and assist with injury prevention in car crash safety research.
机译:胸部创伤是汽车碰撞的频繁发生。开发了有限元人胸部模型,用于预测胸肋骨骨折,研究胸部损伤机制,用于汽车撞击事故。人体骨架和内器官的CT图像和MRI图像用于构建肋腔和内器官的三维有限元表示。该模型是在有限元代码LS-DYNA中创建的。该模型中生物组织的力学性质基于文献中发现的测试数据。已经进行了几项实验研究以确定肋骨组织的材料特性和力 - 变形行为在三点弯曲或前后载荷下,全模型针对验证后验证的人受试者(PMHS)影响数据响应正面和横向影响。对于该模型和偏转时间历史来实现模型和尸体反应之间的良好相关性,这些模型提供了用于确定对汽车冲击损伤的胸部反应的比较工具,可用于评估肋骨骨折和确定的胸部损伤机制并协助受伤汽车碰撞安全研究预防。

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