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Numerical modelling of mass transport in an arterial wall with anisotropic transport properties

机译:具有各向异性传输特性的动脉壁中质量传输的数值模拟

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Coronary artery disease results in blockages or narrowing of the artery lumen. Drug eluting stents (DES) were developed to replace bare metal stents in an effort to combat re-blocking of the diseased artery following treatment. The numerical models developed within this study focus on representing the changing trends of drug delivery from an idealised DES in an arterial wall with an anisotropic ultra-structure. To reduce the computational burden of solving coupled physics problems, a model reduction strategy was adopted. Particular focus has been placed upon adequately modelling the influence of strut compression as there is a paucity of numerical studies that account for changes in transport properties in compressed regions of the arterial wall due to stent deployment. This study developed an idealised numerical modelling framework to account for the changes in the directionally dependent porosity and tortuosities of the arterial wall as a result of radial strut compression. The results show that depending on the degree of strut compression, trends in therapeutic drug delivery within the arterial wall can be either increased or decreased. The study highlights the importance of incorporating compression into numerical models to better represent transport within the arterial wall and suggests an appropriate numerical modelling framework that could be utilised in more realistic patient specific arterial geometries.
机译:冠状动脉疾病导致动脉管腔阻塞或变窄。开发药物洗脱支架(DES)来替代裸金属支架,以努力抵抗治疗后患病动脉的再次阻塞。在这项研究中开发的数值模型着眼于代表具有各向异性超微结构的动脉壁中理想DES的药物输送变化趋势。为了减少解决耦合物理问题的计算负担,采用了模型简化策略。由于缺乏足够的数值研究来说明由于支架展开而导致的动脉壁受压区域中运输特性的变化,因此对有限度的影响进行了充分的建模已成为特别关注的重点。这项研究开发了一种理想的数值建模框架,以说明由于径向支柱压缩而导致的动脉壁方向相关的孔隙率和曲折度的变化。结果表明,取决于支杆压缩的程度,可以增加或减少动脉壁内治疗药物的输送趋势。这项研究强调了将压缩纳入数值模型以更好地表示动脉壁内运输的重要性,并提出了可以在更现实的患者特定动脉几何结构中使用的适当数值建模框架。

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