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The Crimping and Expanding Performance of Self-Expanding Polymeric Bioresorbable Stents: Experimental and Computational Investigation

机译:自膨胀聚合物生物可吸收支架的压接和扩展性能:实验和计算研究。

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摘要

Polymeric bioresorbable stents (PBRSs) are considered the most promising devices to treat cardiovascular diseases. However, the mechanical weakness still hampers their application. In general, PBRSs are crimped into small sheathes and re-expanded to support narrowed vessels during angioplasty. Accordingly, one of the most significant requirements of PBRSs is to maintain mechanical efficacy after implantation. Although a little research has focused on commercial balloon-expanding PBRSs, a near-total lack has appeared on self-expanding PBRSs and their deformation mechanisms. In this work, self-expanding, composite polymeric bioresorbable stents (cPBRSs) incorporating poly(p-dioxanone) (PPDO) and polycaprolactone (PCL) yarns were produced and evaluated for their in vitro crimping and expanding potential. Furthermore, the polymer time-reliable viscoelastic effects of the structural and mechanical behavior of the cPBRSs were analyzed using computational simulations. Our results showed that the crimping process inevitably decreased the mechanical resistance of the cPBRSs, but that this could be offset by balloon dilatation. Moreover, deformation mechanisms at the yarn level were discussed, and yarns bonded in the crossings showed more viscous behavior; this property might help cPBRSs to maintain their structural integrity during implantation.
机译:聚合生物可吸收支架(PBRS)被认为是治疗心血管疾病的最有希望的设备。但是,机械缺陷仍然妨碍了它们的应用。通常,PBRS被卷曲成小鞘,并在血管成形术期间重新扩张以支撑狭窄的血管。因此,PBRS最重要的要求之一是在植入后保持机械功效。尽管很少有研究集中在商业气球扩张式PBRS,但自扩张式PBRS及其变形机制几乎完全消失。在这项工作中,生产了包含聚对二氧杂环己酮(PPDO)和聚己内酯(PCL)纱线的自膨胀复合聚合物生物可吸收支架(cPBRS),并对其在体外的卷曲和膨胀潜力进行了评估。此外,使用计算仿真分析了cPBRSs的结构和力学行为的聚合物时间可靠的粘弹性效应。我们的研究结果表明,压接过程不可避免地会降低cPBRS的机械阻力,但可以通过球囊扩张来抵消。此外,还讨论了在纱线水平上的变形机理,在交叉处粘合的纱线表现出更粘的行为。此属性可能有助于cPBRS在植入过程中保持其结构完整性。

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