De Beule Matthieu, Mortier Peter, Carlier Stéphane G, Verhegghe Benedict, Van Impe Rudy, Verdonck Pascal
Laboratory for Research on Structural Models, Ghent University, Technologiepark-Zwijnaarde 904, 9052-Zwijnaarde, Ghent, Belgium.
J Biomech. 2008;41(2):383-9. doi: 10.1016/j.jbiomech.2007.08.014. Epub 2007 Oct 24.
At present, the deployment of an intravascular stent has become a common and widely used minimally invasive treatment for coronary heart disease. To improve these coronary revascularization procedures (e.g. reduce in-stent restenosis rates) the optimal strategy lies in the further development of stent design, material and coatings. In the context of optimizing the stent design, computational models can provide an excellent research tool. In this study, the hypothesis that the free expansion of a stent is determined by the unfolding and expansion of the balloon is examined. Different expansion modeling strategies are studied and compared for a new generation balloon-expandable coronary stent. The trifolded balloon methodology presented in this paper shows very good qualitative and quantitative agreement with both manufacturer's data and experiments. Therefore, the proposed numerical expansion strategy appears to be a very promising optimization methodology in stent design.
目前,血管内支架的植入已成为冠心病常见且广泛应用的微创治疗方法。为改进这些冠状动脉血运重建程序(如降低支架内再狭窄率),最佳策略在于进一步研发支架的设计、材料及涂层。在优化支架设计的背景下,计算模型可提供出色的研究工具。在本研究中,对支架的自由扩张由球囊展开和扩张所决定这一假设进行了检验。针对新一代球囊扩张式冠状动脉支架,研究并比较了不同的扩张建模策略。本文提出的三折球囊方法在定性和定量方面均与制造商数据及实验结果显示出很好的一致性。因此,所提出的数值扩张策略在支架设计中似乎是一种非常有前景的优化方法。