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首页> 外文期刊>Acta Physica Polonica >Computational Material Analysis of Structural and Hemodynamic Model of Coronary Stent by CFD/FEA in Computer Aided Mechanical Engineering Approach
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Computational Material Analysis of Structural and Hemodynamic Model of Coronary Stent by CFD/FEA in Computer Aided Mechanical Engineering Approach

机译:计算机辅助机械工程中CFD / FEA方法对冠状动脉支架结构和血流动力学模型的计算材料分析

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摘要

With the development of new technologies, it is very popular to use a coronary stent that is a small mesh tube-shaped medical device deployed to treat narrow or weak arteries as part of a procedure called percutaneous coronary intervention. Several aspects, such as stent design, stent wire type, mechanical and material characteristics of stent have different influences on stent intervention. It has not been reported about what impacts on stent struts by the hemodynamic behavior on stent material and very few numerical studies have considered both the mechanical and hemodynamic impact of stent implementation. Computational simulation method for realization of realistic structural and hemodynamic micro environment model in this research provided valuable results of long-term functional knowledge of stent material behavior that are time consuming and expensive to determine otherwise. Computational fluid dynamics and finite element analysis simulation models were investigated and developed to evaluate engineering properties that affect stent functional attributes. These characteristics are dependences of material properties on blood flow conditions such as structural load, shear-strain rate, radial strength, and wall shear stresses, which need to be scientifically explored. To understand the material (Fe-18Cr-14Ni-2.5Mo as stainless steel 316LVM) mechanical performance of the stent, a finite element analysis simulation model was established when exposed to pulsatile blood pressure. In this study, computational fluid dynamics model was generated to calculate the wall shear stresses and strain distribution in stented vessel carrying blood to heart. The analytical analysis of mechanical and hemodynamic conduct of a stent in this investigation may help for better designs of stent, and provide deeper comprehension to support clinical cardiovascular surgeons and guide potential therapeutic strategies.
机译:随着新技术的发展,作为一种称为经皮冠状动脉介入手术的一部分,使用冠状动脉支架是一种非常小的网状管状医疗设备,已被广泛使用,用于治疗狭窄或脆弱的动脉,这非常受欢迎。支架设计,支架线材类型,支架的机械和材料特性等几个方面对支架的干预有不同的影响。尚无关于支架材料的血流动力学行为对支架撑杆产生什么影响的报道,很少有数值研究同时考虑支架实施的机械和血液动力学影响。该研究中用于实现逼真的结构和血液动力学微环境模型的计算仿真方法提供了长期的支架材料行为功能知识的宝贵结果,否则将耗时且昂贵。研究和开发了计算流体动力学和有限元分析仿真模型,以评估影响支架功能属性的工程特性。这些特性取决于材料特性对血液流动状况的依赖性,例如结构载荷,剪切应变率,径向强度和壁面剪切应力,这些都需要科学地探索。为了了解支架的材料(Fe-18Cr-14Ni-2.5Mo为316LVM不锈钢)的机械性能,建立了暴露于脉动血压时的有限元分析仿真模型。在这项研究中,生成了计算流体动力学模型,以计算将血液输送到心脏的支架血管中的壁切应力和应变分布。在这项研究中对支架的机械和血液动力学行为进行的分析分析可能有助于更好地设计支架,并提供更深入的理解,以支持临床心血管外科医师并指导潜在的治疗策略。

著录项

  • 来源
    《Acta Physica Polonica》 |2016年第1期|249-251|共3页
  • 作者

    Karacali O.;

  • 作者单位

    Istanbul Univ, Dept Mech Engn, Fac Engn, Istanbul, Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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