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Predicting Atherosclerotic Plaque Location in an Iliac Bifurcation Using a Hybrid CFD/Biomechanical Approach

机译:使用杂交CFD /生物力学方法预测髂分叉中的动脉粥样硬化斑点位置

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Experimental evidence indicates that haemodynamic stimuli influence some properties of the arterial endothelium, such as cell geometry and permeability, leading to possible accumulation of blood-borne macromolecules and initiation of atherosclerosis. Patient-specific computational models are able to capture complex haemodynamic characteristics to explore and analyse the development of these diseases in silico. Patient-specific models are particularly beneficial in the case of aortic dissection (AD), a condition in which the aortic wall is split in two, creating a true and a false lumen. In this condition, the proportion of blood through the main vessel and the main aortic branches is substantially modified and malperfusion (lack of blood supply) of the downstream vessels is often observed. Furthermore, AD alters the haemodynamics downstream of the lesion, potentially leading to the formation of atherosclerotic plaques at the iliac bifurcation. In order to correctly approximate the haemodynamic changes and analyse the role they play in the development of atherosclerosis formations in AD patients, a combined multiscale methodology is required. In this study, both, blood flow through an iliac bifurcation of a patient suffering from type-B aortic dissection and endothelium behavior are analysed, in order to investigate atherosclerosis formation.
机译:实验证据表明血液动力学刺激会影响动脉内皮的一些性质,例如细胞几何形状和渗透性,导致血流型大分子的累积和动脉粥样硬化的开始。患者特定的计算模型能够捕获复杂的血液动力学特征来探索和分析硅中这些疾病的发展。在主动脉夹层(AD)的情况下,患者特异性模型是特别有益的,其中主动脉壁分为两个,产生真实和假腔。在这种情况下,通过主容器和主动脉分支的血液的比例基本上被观察到下游容器的耐药性(缺乏血液供应)。此外,AD改变病变下游的血管动力学,可能导致在髂分叉处形成动脉粥样硬化斑块。为了正确估计血液动力学变化并分析他们在广告患者的动脉粥样硬化形成的发展中发挥作用,需要一种组合的多尺度方法。在这项研究中,分析了血流通过患有B型主动脉夹层和内皮行为的患者的髂血管分叉,以研究动脉粥样硬化形成。

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