首页> 外文期刊>Annals of Biomedical Engineering >Suggestion of Potential Stent Design Parameters to Reduce Restenosis Risk driven by Foreshortening or Dogboning due to Non-uniform Balloon-Stent Expansion
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Suggestion of Potential Stent Design Parameters to Reduce Restenosis Risk driven by Foreshortening or Dogboning due to Non-uniform Balloon-Stent Expansion

机译:建议使用潜在的支架设计参数,以减少由于球囊支架扩张不均匀而导致的缩短或缠骨引起的再狭窄风险

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摘要

The foreshortening or dogboning of a stent that occurs due to transient non-uniform balloon-stent expansion can induce a vascular injury, resulting in restenosis of the coronary artery. However, previous studies rarely considered the effects of transient non-uniform balloon expansion on analysis of the mechanical properties and behaviors of stents during stent deployment, nor did they determine design parameters to minimize the restenosis risk driven by foreshortening or dogboning. The aim of the current study was, therefore, to suggest potential design parameters capable of reducing the possibility of restenosis risk driven by foreshortening or dogboning through a comparative study of seven commercial stents using finite element (FE) analyses of a realistic transient non-uniform balloon-stent expansion process. The results indicate that using stents composed of opened unit cells connected by bend-shaped link structures, in particular the MAC Plus stent, and controlling the geometrical and morphological features of the unit cell strut or the link structure at the distal ends of stent may prevent restenosis risk caused by foreshortening or dogboning. This study provides a first look at the realistic transient non-uniform balloon-stent expansion by investigating the mechanical properties, behaviors, and design parameters capable of reducing the possibility of restenosis risk induced by the foreshortening or the dogboning.
机译:由于短暂的不均匀的球囊支架扩张而引起的支架缩短或缠结会引起血管损伤,导致冠状动脉再狭窄。但是,以前的研究很少考虑短暂的不均匀球囊扩张对支架展开过程中支架的机械性能和行为的分析的影响,也没有确定设计参数以最大程度地减少因缩短或粘骨引起的再狭窄风险。因此,本研究的目的是通过使用实际瞬态不均匀性的有限元(FE)分析对七个商用支架的比较研究,提出能够减少由于缩短或狗骨头而引起的再狭窄风险的潜在设计参数。气囊支架扩张过程。结果表明,使用由通过弯曲形链接结构连接的开放式晶胞组成的支架(特别是MAC Plus支架),并控制晶胞支杆或支架远端的链接结构的几何和形态特征可能会阻止缩短或狗骨头引起的再狭窄风险。这项研究通过研究机械性能,行为和设计参数,能够降低由于缩短或狗骨头引起的再狭窄风险的可能性,从而对实际的瞬时非均匀球囊支架扩张进行了初步观察。

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