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Modelling the evolution of cerebral aneurysms: Biomechanics, mechanobiology and multiscale modelling

机译:模拟脑动脉瘤的演变:生物力学,力学学和多尺度建模

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Intracranial aneurysms (IAs) are abnormal dilatations of the cerebral vasculature. Computational modelling may shed light on the aetiology of the disease and lead to improved criteria to assist diagnostic decisions. We briefly review models of aneurysm evolution to date and present a novel fluid-solid-growth (FSG) framework for patient-specific modelling of IA evolution. We illustrate its application to 4 clinical cases depicting an IA. The section of arterial geometry containing the IA is removed and replaced with a cylindrical section: this represents an idealised section of healthy artery upon which IA evolution is simulated. The utilisation of patient-specific geometries enables G&R to be explicitly linked to physiologically realistic spatial distributions and magnitudes of haemodynamic stimuli. In this study, we investigate the hypothesis that elastin degradation is driven by locally low wall shear stress (WSS). In 3 out of 4 cases, the evolved model IA geometry is qualitatively similar to the corresponding in vivo IA geometry. This suggests some tentative support for the hypothesis that low WSS plays a role in the mechanobiology of IA evolution.
机译:颅内动脉瘤(IAS)是脑脉管系统的异常扩张。计算建模可能阐明疾病的病因,导致改进标准以协助诊断决策。我们简要介绍了迄今为止的动脉瘤进化模型,并提出了一种新的液 - 固体生长(FSG)患者的患者特异性模型框架。我们说明了它在4个描述IA的临床病例中的应用。除去含有IA的动脉几何形状,并用圆柱形部分取代:这代表了模拟IA进化的健康动脉的理想部分。利用患者特定的几何形状使G&R能够明确地连接到生理上的现实空间分布和血液动力刺激的大小。在这项研究中,我们研究了弹性蛋白劣化由局部低壁剪切应力(WSS)驱动的假设。在4例中有3例,演化模型IA几何形状与体内几何形状相应类似。这表明一些暂定支持低WSS在IA演化的力学学中发挥作用的假设。

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