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      Finite element analysis of balloon-expandable coronary stent deployment: influence of angioplasty balloon configuration.

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          Abstract

          Today, the majority of coronary stents are balloon-expandable and are deployed using a balloon-tipped catheter. To improve deliverability, the membrane of the angioplasty balloon is typically folded about the catheter in a pleated configuration. As such, the deployment of the angioplasty balloon is governed by the material properties of the balloon membrane, its folded configuration and its attachment to the catheter. Despite this observation, however, an optimum strategy for modelling the configuration of the angioplasty balloon in finite element studies of coronary stent deployment has not been identified, and idealised models of the angioplasty balloon are commonly employed in the literature. These idealised models often neglect complex geometrical features, such as the folded configuration of the balloon membrane and its attachment to the catheter, which may have a significant influence on the deployment of a stent. In this study, three increasingly sophisticated models of a typical semi-compliant angioplasty balloon were employed to determine the influence of angioplasty balloon configuration on the deployment of a stent. The results of this study indicate that angioplasty balloon configuration has a significant influence on both the transient behaviour of the stent and its impact on the mechanical environment of the coronary artery.

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          Author and article information

          Journal
          Int J Numer Method Biomed Eng
          International journal for numerical methods in biomedical engineering
          Wiley
          2040-7947
          2040-7939
          Nov 2013
          : 29
          : 11
          Affiliations
          [1 ] Department of Mechanical Engineering, Dublin Institute of Technology, Ireland.
          Article
          10.1002/cnm.2557
          23696255
          c8812555-0d02-40fc-a318-88c8f6484bcd
          History

          angioplasty balloon,finite element analysis,coronary artery,coronary heart disease,stent,restenosis

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