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Finite element modelling of blunt or non-contact head injuries

机译:有限元模拟钝性或非接触头损伤

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At present the injury that the human head is subjected to is predicted by the Head Injury Criterion (HIC). This criterion is inadequate as it is not based upon a thorough understanding of the underlying head injury mechanisms.The important blunt or non-contact head injury mechanisms are diffuse axonal injury, bridging vein disruption and surface contact contusions. They are the result of the relative motion of the brain and skull.Tissue failure criteria are developed for these injury mechanisms so that head injury tolerance curves can be developed.Validated finite element models are used to determine the biomechanics of head injury and develop head injury tolerance curves.The severity of head injury is related to the magnitude, direction and pulse duration of both translational and rotational head acceleration.This paper represents a summary of research conducted as part of the authors Phd.
机译:目前通过头部损伤标准(HIC)预测人头的损伤。该标准不充分,因为它不是基于对潜在的头部损伤机制的透彻理解。重要的钝或非接触头损伤机制是弥漫性轴突损伤,桥接静脉破坏和表面接触常用。它们是大脑和颅骨的相对运动的结果。为这些伤害机制开发了秩序故障标准,从而可以开发头部损伤耐受曲线。用于确定头部损伤的生物力学和发育头部损伤的生物力学。耐受曲线。头部损伤的严重程度与平移和旋转头加速度的幅度,方向和脉冲持续时间有关。本文代表了作为作者博士学位的一部分进行的研究摘要。

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