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Simulation of Balloon-Expandable Coronary Stent Apposition with Plastic Beam Elements

机译:球囊扩张式冠状动脉支架置入塑料梁的模拟

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The treatment of the coronary artery disease by balloon-expandable stent apposition is a fully endovascular procedure. As a consequence, limited imaging data is available to cardiologists, who could benefit from additional per-operative information. This study aims at providing a relevant prediction tool for stent apposition, in the form of a mechanically precise simulation, fast enough to be compatible with clinical routine. Our method consists in a finite element discretisation of the stent using 1D connected beam elements, with nonlinear plastic behaviour. The artery wall is modelled as a surface mesh interacting with the stent. As a proof of concept, the simulation is compared to micro-CT scans, which were acquired during the apposition of a stent in a silicone coronary phantom. Our results show that the simulation is able to accurately reproduce the stent final geometry, in a computational time greatly lower than for classic 3D finite element codes. Although this first validation step is preliminary, our work is to be extended towards more realistic scenarios, notably with the introduction of a personalised artery model and the corresponding in vivo validation.
机译:通过球囊扩张支架并置术治疗冠状动脉疾病是一种完全的血管内手术。结果,心脏病专家只能获得有限的成像数据,他们可以从附加的手术信息中受益。这项研究旨在以机械精确模拟的形式提供一种足够的支架并置预测工具,以使其能够与临床常规相兼容。我们的方法包括使用一维连接梁单元对支架进行有限元离散化,并具有非线性塑性行为。将动脉壁建模为与支架相互作用的表面网格。作为概念的证明,将模拟与微型CT扫描进行了比较,后者是在硅胶冠状体模中并置支架期间获得的。我们的结果表明,该仿真能够以比典型的3D有限元代码低得多的计算时间来准确地再现支架的最终几何形状。尽管第一步验证是初步的,但我们的工作将扩展到更实际的情况,特别是引入个性化动脉模型和相应的体内验证。

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