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In Silico Assessment of the effects of Material on Stent Deployment

机译:在计算机上评估材料对支架部署的影响

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Coronary stents are expandable scaffolds that are used to widen occluded diseased arteries and restore blood flow. Because of the strain they are exposed to and forces they must resist as well as the importance of surface interactions, material properties are dominant. Indeed, a common differentiating factors amongst commercially available stents is their material. Several performance requirements relate to stent materials including radial strength for adequate arterial support post-deployment. This study investigated the effect of the stent material in three finite element models using different stents made of: (i) Cobalt-Chromium (CoCr), (ii) Stainless Steel (SS316L), and (iii) Platinum Chromium (PtCr). Deployment was investigated in a patient specific arterial geometry, created based on a fusion of angiographic data and intravascular ultrasound images. In silico results show that: (i) the maximum von Mises stress occurs for the CoCr, however the curved areas of the stent links present higher stresses compared to the straight stent segments for all stents, (ii) more areas of high inner arterial stress exist in the case of the CoCr stent deployment, (iii) there is no significant difference in the percentage of arterial stress volume distribution among all models.
机译:冠状动脉支架是可扩展的支架,用于扩大闭塞的患病动脉并恢复血流。由于它们承受的应变和必须承受的力以及表面相互作用的重要性,因此材料的特性至关重要。实际上,市售支架之间的共同区别因素是它们的材料。若干性能要求涉及支架材料,包括径向强度,以便在部署后提供足够的动脉支撑。本研究使用以下三种不同的支架研究了支架材料在三种有限元模型中的作用:(i)钴铬(CoCr),(ii)不锈钢(SS316L)和(iii)铂铬(PtCr)。在根据血管造影数据和血管内超声图像融合创建的患者特定动脉几何结构中研究了部署情况。电脑模拟结果表明:(i)CoCr发生最大的冯·米塞斯应力,但是与所有支架的笔直支架段相比,支架链节的弯曲区域呈现出更高的应力;(ii)更多的高内部动脉应力区域在CoCr支架展开的情况下存在(iii)所有模型之间的动脉应力体积分布百分比没有显着差异。

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