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SKULL DEFORMATION HAS NO IMPACT ON THE VARIATION OF BRAIN INTRACRANIAL PRESSURE

机译:颅骨变形对脑内压力的变化没有影响

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Skull deformation and vibration has been hypothesized to be an injury mechanism when the human head undergoes an impact scenario. The extent that skull deformation may increase the risk of traumatic brain injury, however, is not well understood. This computational study explains whether skull deformation has any impact on the variation of intracranial pressure (ICP). To this end, a finite element head model including major anatomical components of the human head was employed. The head model has been validated against ICP variations on the brain. The impact simulations were carried out using a rigid cylindrical impactor. The scenarios were frontal impacts with the impactor hitting the forehead of the head model at two impact severity levels. In order to examine the effect of skull elasticity on the stress wave propagation inside the cranium under an external applied force, the skull was also taken as a rigid body with the same density as the elastic one, and the result were compared with those obtained with the deformable skull. For the two cases, the variation of ICPs at the coup and countercoup sites were recorded and compared. The results of the study showed that, for the case studies presented here, the deformation of skull didn't increase the level of ICP inside the brain. It was concluded that the skull rapid rigid body motion might be responsible for brain injuries.
机译:有人认为,当人的头部受到撞击时,头骨的变形和振动是一种伤害机制。但是,人们对头骨变形的程度可能会增加颅脑外伤的风险的认识还不够。这项计算研究解释了颅骨变形是否对颅内压(ICP)的变化有任何影响。为此,采用了包括人体头部主要解剖成分的有限元头部模型。头部模型已针对大脑上的ICP变异进行了验证。冲击模拟是使用刚性圆柱形冲击器进行的。这些场景是正面撞击,撞击器在两个撞击严重性级别上撞击头部模型的前额。为了研究颅骨弹性在外力作用下颅骨内应力波传播的影响,还将颅骨作为具有与弹性相同密度的刚体,并将其结果与用可变形的头骨。对于这两种情况,记录并比较了政变和反政变站点的ICP的变化。研究结果表明,对于此处介绍的案例研究,头骨的变形并没有增加大脑内部ICP的水平。结论是颅骨快速的僵硬运动可能是脑损伤的原因。

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