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Parametric Design and Finite Element Simulation of Coronary Stents

机译:冠状动用支架的参数设计与有限元模拟

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摘要

The high prevalence of cardiovascular diseases has increased the demand for using different stents. To prevent instent restenosis, the design and fabrication of safer stents for coronary angioplasty is essential. However, prototyping and mechanical testing of new stent designs are challenging, time-consuming, and expensive procedures. Therefore, parametric models and finite element simulations are used to help designers improve stent designs. In this study, three commercially available coronary stents are parametrically designed and modeled based on their diameter, number of rings, number of peaks, and strut thickness. Moreover, a finite element simulation of the expansion of each model in the artery is performed to investigate the effect of links on stent function and vascular injury. The results demonstrate that the applied stresses on the stent during its placement in the coronary artery are beyond elastic limits, and the stent's material enters its plastic zone accordingly. The applied strain is less than the failure strain of the material. By comparing maximum Von-Mises stress, foreshortening, and dogboning of different types of stents, it can be concluded that the closed-cell stent is a safer model and causes fewer side effects regarding vascular injuries. However, open-cell stents provide more flexibility and can be advantageous in curved vessels. It is noteworthy that parametric modeling of stents can be beneficial in future studies and finite element analysis of stents for understanding the effect of the geometric parameters on stent function.
机译:心血管疾病的高患病率增加了对使用不同的支架的需求。为了防止支架内再狭窄,设计和冠状动脉血管成形术更安全支架的制造是必不可少的。然而,原型和新的支架设计的机械测试是具有挑战性的,费时,和昂贵的过程。因此,参数化模型和有限元模拟可用于帮助设计人员提高支架设计。在这项研究中,三种市售冠状动脉支架是参数设计,并根据它们的直径,圈数,峰的数量和支柱厚度建模。此外,进行在动脉每个模型的扩展的有限元模拟来调查对支架功能和血管损伤的链接的作用。结果表明,其在冠状动脉放置期间在支架上所施加的应力超过弹性极限,并且支架的材料相应地进入其塑性区。所施加的应变小于所述材料的破坏应变。通过比较最大Von-Mises应力,缩短,和不同类型的支架的dogboning,可以得出结论,该闭孔的支架是一个更安全的模型,并导致关于血管损伤较少的副作用。然而,开室支架提供更多的灵活性,并且可以是在弯曲的血管是有利的。值得注意的支架是参数化建模可以在未来的研究和理解上的支架功能的几何参数的影响支架的有限元分析是有益的。

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