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首页> 外文期刊>Cardiovascular engineering and technology. >Influence of the Adopted Balloon Modeling Strategies in the Stent Deployment Procedure: An In-Silico Analysis
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Influence of the Adopted Balloon Modeling Strategies in the Stent Deployment Procedure: An In-Silico Analysis

机译:所采用的球囊建模策略在支架置入过程中的影响:计算机内分析

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Purpose-As the promoter of the stent expansion, the balloon plays a very important role, offering a strong influence on the deployment process. Balloon-artery interaction is pointed as a probable cause of restenosis, stressing the relevance of balloon modeling when simulating the stenting procedure. In this work, an in-silico study of the balloon modeling strategies is performed. Methods-Ultrasonic-microcasting is a novel technology that allows obtaining stents manufactured in magnesium alloys, being suggested as a promising solution. However, this technique demands superior stent strut thickness, which may have an impact on the stent deployment procedure. The influence of the balloon modeling is studied through the simulation of different balloon geometries (open- or taper-ended) and material constitutive model (linear elastic or hyperelastic) on the expanded configuration of a stent manufactured through ultrasonic-microcasting. Results-The results obtained suggest that the choice of balloon type has small impact in terms of demanded pressure to inflate the balloon and in the stent final radius achieved at fully-expanded configuration. Additionally, it was proved that the balloon-type influences the stent expanded profile along its length and diameter as a result of the different deformation behavior exhibited by the balloon. Conclusion-The hyperelastic taper-ended balloon suggests being the model that better correlates with both experimental and clinical results regarding the expanded balloon profile during the procedure.
机译:目的-球囊作为支架扩张的促进剂,起着非常重要的作用,对展开过程有很大的影响。球囊-动脉相互作用被指出是再狭窄的可能原因,强调了球囊建模在模拟支架置入术时的相关性。在这项工作中,对球囊建模策略进行了计算机模拟研究。方法-超声显微铸造是一种新技术,可以获得镁合金制造的支架,被认为是一种很有前途的解决方案。然而,这种技术需要优越的支架支柱厚度,这可能会对支架展开过程产生影响。通过模拟不同的球囊几何形状(开口或锥形)和材料本构模型(线弹性或超弹性)来研究球囊建模对通过超声显微铸造制造的支架扩展配置的影响。结果-获得的结果表明,球囊类型的选择对球囊充气所需的压力和在完全扩展配置下实现的支架最终半径的影响很小。此外,还证明了球囊类型由于球囊表现出的不同变形行为而影响支架沿其长度和直径的膨胀轮廓。结论-超弹性锥形球囊表明该模型与手术过程中球囊扩张轮廓的实验和临床结果更相关。

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