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Propagation of damage in brain tissue: coupling the mechanics of oedema and oxygen delivery

机译:在脑组织中传播损伤:将水肿和氧气输送机制耦合

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摘要

Brain tissue swelling, or oedema, is a dangerous consequence of traumatic brain injury and stroke. In particular, a locally swollen region can cause the injury to propagate further through the brain: swelling causes mechanical compression of the vasculature in the surrounding tissue and so can cut off that tissue's oxygen supply. We use a triphasic mathematical model to investigate this propagation, and couple tissue mechanics with oxygen delivery. Starting from a fully coupled, finite elasticity, model, we show that simplifications can be made that allow us to express the volume of the propagating region of damage analytically in terms of key parameters. Our results show that performing a craniectomy, to alleviate pressure in the brain and allow the tissue to swell outwards, reduces the propagation of damage; this finding agrees with experimental observations.
机译:脑组织肿胀或水肿是颅脑外伤和中风的危险后果。特别是,局部肿胀的区域可能会导致伤害进一步通过大脑传播:肿胀会导致周围组织中脉管系统的机械压缩,因此会切断该组织的氧气供应。我们使用三相数学模型来研究这种传播,并将组织力学与氧气输送耦合在一起。从完全耦合的有限弹性模型开始,我们表明可以进行简化,使我们能够根据关键参数来分析性地表示损坏传播区域的体积。我们的结果表明,进行颅骨切除术以减轻脑部压力并允许组织向外膨胀,可以减少损伤的传播。这一发现与实验观察相吻合。

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