首页> 外文期刊>Mechanics of Advanced Materials and Modern Processes >Experimental and computational studies of poly-L-lactic acid for cardiovascular applications: recent progress
【24h】

Experimental and computational studies of poly-L-lactic acid for cardiovascular applications: recent progress

机译:聚-L-乳酸在心血管领域的实验和计算研究:最新进展

获取原文
           

摘要

Abstract Stents are commonly used in medical procedures to alleviate the symptoms of coronary heart disease, a prevalent modern society disease. These structures are employed to maintain vessel patency and restore blood flow. Traditionally stents are made of metals such as stainless steel or cobalt chromium; however, these scaffolds have known disadvantages. An emergence of transient scaffolds is gaining popularity, with the structure engaged for a required period whilst healing of the diseased arterial wall occurs. Polymers dominate a medical device sector, with incorporation in sutures, scaffolds and screws. Thanks to their good mechanical and biological properties and their ability to degrade naturally. Polylactic acid is an extremely versatile polymer, with its properties easily tailored to applications. Its dominance in the stenting field increases continually, with the first polymer scaffold gaining FDA approval in 2016. Still some challenges with PLLA bioresorbable materials remain, especially with regard to understanding their mechanical response, assessment of its changes with degradation and comparison of their performance with that of metallic drug-eluting stent. Currently, there is still a lack of works on evaluating both the pre-degradation properties and degradation performance of these scaffolds. Additionally, there are no established material models incorporating non-linear viscoelastic behaviour of PLLA and its evolution with in-service degradation. Assessing these features through experimental analysis accompanied by analytical and numerical studies will provide powerful tools for design and optimisation of these structures endorsing their broader use in stenting. This overview assesses the recent studies investigating mechanical and computational performance of poly(l-lactic) acid and its use in stenting applications.
机译:摘要支架在医疗程序中通常用于减轻冠心病(一种现代社会疾病)的症状。这些结构用于维持血管通畅并恢复血流。传统上,支架是用金属制成的,例如不锈钢或钴铬合金。然而,这些支架具有已知的缺点。瞬态支架的出现越来越受欢迎,其结构在一段需要的时间内被接合,同时患病的动脉壁得以愈合。聚合物在缝合线,支架和螺钉中占主导地位的医疗器械领域。由于它们具有良好的机械和生物学特性以及它们自然降解的能力。聚乳酸是一种用途非常广泛的聚合物,其性质易于根据应用进行定制。随着在2016年首个聚合物支架获得FDA批准,其在支架领域的主导地位不断提高。PLLA生物可吸收材料仍然面临一些挑战,特别是在理解其机械响应,评估其降解性能变化以及将其性能进行比较方面。金属药物洗脱支架。当前,仍然缺乏评估这些支架的预降解性质和降解性能的工作。此外,还没有建立的材料模型结合了PLLA的非线性粘弹性行为及其随着使用中的退化而演变。通过实验分析以及分析和数值研究对这些特征进行评估,将为设计和优化这些结构提供强大的工具,从而证明它们在支架植入中的广泛应用。该概述评估了最近的研究,该研究调查了聚乳酸的机械和计算性能及其在支架应用中的用途。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号