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Toward modeling the effects of regional material properties on the wall stress distribution of abdominal aortic aneurysms

机译:旨在模拟区域材料特性对腹主动脉瘤壁应力分布的影响

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The overall geometry and different biomechanical parameters of an abdominal aortic aneurysm (AAA), contribute to its severity and risk of rupture, therefore they could be used to track its progression. Previous and ongoing research efforts have resorted to using uniform material properties to model the behavior of AAA. However, it has been recently illustrated that different regions of the AAA wall exhibit different behavior due to the effect of the biological activities in the metalloproteinase matrix that makes up the wall at the aneurysm site. In this work, we introduce a non-invasive patient-specific regional material property model to help us better understand and investigate the AAA wall stress distribution, peak wall stress (PWS) severity, and potential rupture risk. Our results indicate that the PWS and the overall wall stress distribution predicted using the proposed regional material property model, are higher than those predicted using the traditional homogeneous, hyper-elastic model (p <1.43E-07). Our results also show that to investigate AAA, the overall geometry, presence of intra-luminal thrombus (ILT), and loading condition in a patient specific manner may be critical for capturing the biomechanica] complexity of AAAs.
机译:腹主动脉瘤(AAA)的整体几何形状和不同的生物力学参数会导致其严重程度和破裂风险,因此可以用来追踪其进展。先前和正在进行的研究工作已经采取了使用统一的材料特性来对AAA行为进行建模的方法。然而,最近已说明,由于构成动脉瘤部位壁的金属蛋白酶基质中的生物活性的影响,AAA壁的不同区域表现出不同的行为。在这项工作中,我们介绍了一种非侵入性的患者特定区域材料特性模型,以帮助我们更好地理解和研究AAA壁应力分布,峰值壁应力(PWS)严重性和潜在的破裂风险。我们的结果表明,使用建议的区域材料特性模型预测的PWS和整体壁应力分布要高于使用传统的均质超弹性模型预测的PWS和整体壁应力分布(p <1.43E-07)。我们的结果还表明,要研究AAA,以患者特定的方式研究整体几何形状,管腔内血栓(ILT)的存在以及负荷情况对于捕获AAA的生物力学复杂性可能至关重要。

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