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MODELING POST-IMPACT INJURY PROPAGATION IN TRAUMATIC BRAIN INJURY

机译:创伤性脑损伤的撞击后伤害传播建模

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摘要

In this paper, we investigate the effect of mechanical deformation during original impact on the propagation of bleeds during traumatic brain injury (TBI). For this purpose, we have developed a numerical framework that considers Magnetic Resonance Images (MRI) of a rat subjected to TBI modelled using controlled cortical impact (CCI). Using the MRI images of first day of impact a solid model of brain is developed and strains during impact are estimated using the finite element tool LSDyna. It was observed that the actual propagation of blood obtained from day 14 MRI data closely resembles the one developed by solving a time dependent advection equation with advection rates proportional to the strain estimates during impact from LSDyna. This numerical framework holds promise that with proper calibration and validation it can be used to predict the possible propagation of blood post-impact and therefore may be used to inform treatment protocols for such patients.
机译:在本文中,我们研究了原始冲击过程中的机械变形对颅脑损伤(TBI)出血扩散的影响。为此,我们已经开发了一个数字框架,该框架考虑了使用可控皮层撞击(CCI)建模的TBI大鼠的磁共振图像(MRI)。使用冲击第一天的MRI图像,可以建立大脑的实体模型,并使用有限元工具LSDyna估算冲击过程中的应变。观察到,从第14天MRI数据获得的血液实际传播与通过求解与时间相关的对流方程所产生的血液传播非常相似,该方程的平流率与LSDyna撞击期间的应变估计成比例。该数值框架有望通过适当的校准和验证将其用于预测撞击后血液的可能传播,因此可用于告知此类患者的治疗方案。

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