首页> 外文期刊>Journal of Mechanics in Medicine and Biology >APPLICATION OF THE FINITE ELEMENT METHOD IN THE FATIGUE LIFE PREDICTION OF A STENT FOR A PERCUTANEOUS HEART VALVE
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APPLICATION OF THE FINITE ELEMENT METHOD IN THE FATIGUE LIFE PREDICTION OF A STENT FOR A PERCUTANEOUS HEART VALVE

机译:有限元法在心脏直动瓣膜疲劳寿命预测中的应用

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The fatigue failure of the stent component of a percutaneous aortic heart valve (PAHV) is an event that could be fatal to the patient. Therefore, the fatigue life prediction of a stent intended for application in a PAHV is a major consideration during the design and development phase of the device. Since the stent component will be subjected to both cyclic blood pressure as well as cyclic valve-leaflet forces, the combined effect of these loads must be taken into account for the analysis of the fatigue life. This paper expands on a methodology developed by Marrey et al.10 to incorporate the combined loading of both the cyclic blood pressure as well as the cyclic leaflet forces in the fatigue life assessment of stents intended for application in percutaneous aortic heart valves. It was found that the developed methodology, which utilizes the finite element method (FEM), provides a simple and cost-effective tool to quantitatively determine the fatigue resistance of the stent component, thereby enabling the designer to compare different stent designs with respect to their resistance against fatigue. Two different stent designs were analyzed using this approach and it was found that they exhibited similar resistances to fatigue and that resistance to fatigue is influenced by strut width.
机译:经皮主动脉心脏瓣膜(PAHV)支架部件的疲劳失效是可能对患者致命的事件。因此,在设备的设计和开发阶段,主要考虑用于PAHV的支架的疲劳寿命预测。由于支架部件将承受周期性的血压以及周期性的瓣叶力,因此在分析疲劳寿命时必须考虑这些载荷的综合作用。本文扩展了由Marrey等人[10]开发的方法,将循环血压和循环小叶力的组合负荷纳入打算用于经皮主动脉心脏瓣膜的支架的疲劳寿命评估中。发现利用有限元方法(FEM)开发的方法论提供了一种简单且经济高效的工具来定量确定支架部件的抗疲劳性,从而使设计人员能够比较不同支架设计的相关性。耐疲劳。使用这种方法分析了两种不同的支架设计,发现它们表现出相似的抗疲劳性,并且抗疲劳性受支柱宽度的影响。

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