首页> 外文会议>8th Biennial Conference on Engineering Systems Design and Analysis 2006 vol.2 >TRAUMATIC EVENT IN HUMAN HEAD: BIOMECHANICAL INSIGHT BY MEANS OF A FINITE ELEMENT MODEL
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TRAUMATIC EVENT IN HUMAN HEAD: BIOMECHANICAL INSIGHT BY MEANS OF A FINITE ELEMENT MODEL

机译:人头的创伤性事件:通过有限元模型的手段进行生物力学观察

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摘要

Head injuries due to traumatic events in case of head impact are one of the main causes of death or permanent invalidity in vehicle crash. The main purpose of the present work is to evaluate pressure and stress distributions in bones and brain tissues of a human head due to an impact by means of numerical simulations. Pressures and stresses in the different zones of the head can be related to the main brain injuries as verified by head traumatology doctors. The availability of a numerical model of head allows to quantify the relationship between type and intensity of the impact and the possible head injury. This capability represents a relevant step torward an effective traumatic injury prevention.rnThe proposed numerical model is quite complex although some simplifications have been introduced like modeling all the inner organs as a continuum without sliding interfaces or fluid elements.rnGeometrical characteristics for the finite element model have been extracted from CT (Computer Tomography) and MRI (Magnetic Resonance Image) scanner images, while material mechanical characteristics have been taken from literature. The model has been validated by comparing the numerical results and the experimental results from literature. The protecting action of the ventricles and of several membranes (dura mater, tentorium and falx) has been evaluated.
机译:在头部碰撞的情况下,由于创伤事件造成的头部受伤是导致车辆死亡或永久性撞车事故的主要原因之一。本发明的主要目的是通过数值模拟来评估由于冲击而在人的头部的骨头和脑组织中的压力和应力分布。头部创伤学医生证实,头部不同区域的压力和压力可能与主要的脑损伤有关。头部数值模型的可用性允许量化撞击类型和强度与可能的头部受伤之间的关系。此功能代表了有效预防创伤损伤的重要步骤。rn尽管简化了一些模型,例如将所有内部器官建模为没有滑动界面或流体元素的连续体,但所提出的数值模型相当复杂。rn有限元模型的几何特征具有从CT(计算机断层扫描)和MRI(磁共振图像)扫描仪图像中提取,而材料的机械特性已从文献中获取。通过比较数值结果和文献中的实验结果,对模型进行了验证。评估了心室和几种膜(硬脑膜,腱膜和镰刀菌)的保护作用。

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