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Fluid-structure interaction in abdominal aortic aneurysms: Structural and geometrical considerations

机译:腹主动脉瘤中的流固耦合:结构和几何考虑

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Rupture of the abdominal aortic aneurysm (AAA) is the result of the relatively complex interaction of blood hemodynamics and material behavior of arterial walls. In the present study, the cumulative effects of physiological parameters such as the directional growth, arterial wall properties (isotropy and anisotropy), iliac bifurcation and arterial wall thickness on prediction of wall stress in fully coupled fluid-structure interaction (FSI) analysis of five idealized AAA models have been investigated. In particular, the numerical model considers the heterogeneity of arterial wall and the iliac bifurcation, which allows the study of the geometric asymmetry due to the growth of the aneurysm into different directions. Results demonstrate that the blood pulsatile nature is responsible for emerging a time-dependent recirculation zone inside the aneurysm, which directly affects the stress distribution in aneurismal wall. Therefore, aneurysm deviation from the arterial axis, especially, in the lateral direction increases the wall stress in a relatively nonlinear fashion. Among the models analyzed in this investigation, the anisotropic material model that considers the wall thickness variations, greatly affects the wall stress values, while the stress distributions are less affected as compared to the uniform wall thickness models. In this regard, it is confirmed that wall stress predictions are more influenced by the appropriate structural model than the geometrical considerations such as the level of asymmetry and its curvature, growth direction and its extent.
机译:腹主动脉瘤破裂(AAA)是血液血液动力学和动脉壁物质行为相对复杂相互作用的结果。在本研究中,在五个全耦合流体-结构相互作用(FSI)分析中,诸如定向生长,动脉壁特性(各向同性和各向异性),分叉和动脉壁厚度等生理参数对壁应力预测的累积影响已经研究了理想化的AAA模型。尤其是,该数值模型考虑了动脉壁和bi分叉的异质性,这允许研究由于动脉瘤向不同方向的生长而引起的几何不对称性。结果表明,血液搏动性是导致动脉瘤内部出现时间依赖性循环区的原因,这直接影响了动脉瘤壁的应力分布。因此,特别是在横向上从动脉轴线偏离的动脉瘤以相对非线性的方式增加了壁应力。在本次调查分析的模型中,考虑壁厚变化的各向异性材料模型对壁应力值的影响很大,而与均匀壁厚模型相比,应力分布的影响较小。在这方面,可以确定的是,壁应力预测受适当的结构模型的影响要大于几何考量,例如不对称程度及其曲率,生长方向及其程度。

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