首页> 外文会议>IEEE-EMBS Conference on Biomedical Engineering and Sciences >Simulation of Decompressive Craniectomy for Ischaemic Stroke Treatment: A Conceptual Modeling Study
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Simulation of Decompressive Craniectomy for Ischaemic Stroke Treatment: A Conceptual Modeling Study

机译:用于缺血性脑卒中治疗的减压颅骨切除术的模拟:概念建模研究

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Decompressive craniectomy is a treatment in which part of the skull is removed so as to reduce the intracranial pressure in the skull, especially during brain tissue swelling. Computational modeling studies may be used to understand the efficiency of this treatment in ischaemic stroke for advance clinical decision making. Thus, we performed a simulation using a mathematical model based on poroelastic theory and capillary filtration to see the effects of craniectomy in treating brain tissue swelling using 3D brain geometry. The results show that performing craniectomy can reduce intracranial pressure and reduce the effect of herniation. However, part of the brain is bulging out from the surgical hole and exerts a small amount of stress on the tissue by the surgical edge. This mathematical modeling framework can be used for further investigation of finding the suitable parameters for a decompressive craniectomy.
机译:减压颅骨切除术是一种治疗,在该处理中被除去颅骨的一部分,以减少头骨中的颅内压,尤其是在脑组织肿胀期间。 计算建模研究可用于了解该治疗在缺血性卒中治疗的效率,以提前临床决策。 因此,我们使用基于多孔塑化理论和毛细血管过滤的数学模型进行了模拟,以便在使用3D脑几何形状治疗脑部组织肿胀治疗脑内切除术后的效果。 结果表明,表演颅骨切除术可以降低颅内压力,降低疝气的影响。 然而,部分大脑从外科孔膨胀,并且通过外科边缘向组织产生少量的压力。 该数学建模框架可用于进一步研究对解压缩颅骨切除术的适当参数进行进一步研究。

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