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Numerical Models of an Artery with a Net Structured Stent

机译:网状支架的动脉数值模型

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摘要

Main cause of restenosis after balloon a ngioplasty is due to the stresses generated in the artery as well as from the stent artery interaction. Understanding the factors that are involved in this interaction, and the ability to evaluate the stresses that are formed in the artery, could help to lessen the number of failures. The goal of the present study is to develop computationally efficient numerical models for estimating the Damage Factor (DF) as the contact stresses, and to investigate their influence upon stent design, artery and plaque parameters. At first the artery was taken as a hollow cylinder with homogenous, linear elastic properties of the material. Later, the artery was taken as a two dissimilar layers model, with non-linear hyper-elastic properties. The variation in the Damage Factor value as a function of the mismatch between stent's and artery's diameters is nearly linear, and as much as the diameter of the artery increases, the Damage Factor for the same mismatch decreases. For arteries with 75% blocking and mismatch of lmm, the Damage Factor is 3.8.
机译:球囊成形术后再狭窄的主要原因是由于动脉中产生的应力以及支架动脉之间的相互作用。了解这种相互作用所涉及的因素,以及评估动脉中形成的压力的能力,可以帮助减少失败的次数。本研究的目的是开发计算效率高的数值模型,以估算接触应力所致的损伤因子(DF),并研究其对支架设计,动脉和斑块参数的影响。首先,将动脉作为具有均质,线性弹性材料的空心圆柱体。后来,将动脉作为具有非线性超弹性特性的两个不同层模型。损伤因子值随支架直径和动脉直径之间的不匹配而变化,几乎是线性的,并且随着动脉直径的增加,相同失配的损伤因子也会减小。对于75%的阻塞和1mm不匹配的动脉,损伤因子为3.8。

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