首页> 外文期刊>Journal of mechanics in medicine and biology >PALMAZ-SCHATZ STENT-OPENING MECHANICS USING A SIMPLE APPROACH INVOLVING THE BALLOON-STENT AND STENT-ARTERY CONTACT PROBLEM: APPLICATION TO BIOPOLYMER STENTS
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PALMAZ-SCHATZ STENT-OPENING MECHANICS USING A SIMPLE APPROACH INVOLVING THE BALLOON-STENT AND STENT-ARTERY CONTACT PROBLEM: APPLICATION TO BIOPOLYMER STENTS

机译:Palmaz-Schatz支架开放机械师使用简单的方法,涉及气球支架和支架 - 动脉接触问题:在生物聚合物支架中的应用

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We used the finite element method-based toolbox COMSOL Multiphysics to address the important question of biopolymer coronary stent mechanics. We evaluated the diameter of the stent, the immediate elastic recoil, the dogboning and the foreshortening during deployment while using an idealized model that took into account the presence of the balloon and the coronary artery wall (equivalent pressure hypothesis). We validated our model using the wellknown mechanics of the Palmaz-Schatz metal stent and acquired new data concerning a polyL-lactic acid (PLLA) stent and some other biodegradable co-polymer-based stents. The elastic recoil was relatively high (26.1% to 31.1% depending on the biopolymer used) when taking into account the presence of both the balloon and artery. The dogboning varied from 31% to 46% for the polymer stents and was 62% for the metal stent, suggesting that less arterial damage could be expected with biopolymer stents. Various strut thicknesses were tested for the PLLA stent (114, 180 and 250 mu m) and no significant improvement in elastic recoil was observed. We concluded that the stent geometry has a greater impact on the scaffolding role of the structure than the strut thickness, or even the mechanical properties of the stent.
机译:我们使用了基于有限元方法的工具箱COMSOL多发性来解决生物聚合物冠状动脉支架力学的重要问题。我们评估了支架的直径,即时在部署期间的直接弹性反冲,蓄止和缩短的缩短,同时使用了考虑了球囊和冠状动脉壁(当量压力假设)的存在。我们使用Palmaz-Schatz金属支架的众所周知的机制验证了我们的模型,并获得了关于聚糖酸(PLLA)支架的新数据和一些其他可生物降解的共聚物基支座。考虑到气球和动脉的存在时,弹性反冲取决于使用的生物聚合物的存在26.1%至31.1%)。储料从聚合物支架的31%达46%变化,金属支架的62%为62%,表明生物聚合物支架可以预期较少的动脉损伤。对PLLA支架(114,180和250μm)测试各种支柱厚度,并且观察到弹性反冲没有显着改善。我们得出结论,支架几何形状对结构的脚手架作用的影响大于支柱厚度,甚至支架的机械性能。

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