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Comparative numerical study of the intra-vessel flow characteristics between a flat and a cylindrical configuration in a stented wall region.

机译:在带支架的壁区域中,平面结构和圆柱结构之间的血管内流动特性的比较数值研究。

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摘要

Mechanical stresses and flow dynamics alteration in a stented artery region are known to stimulate intimal thickening and increase the risk of restenosis, the closure of a revascularized artery. Particle imaging velocimetry (PIV) is an optical flow visualization technique that can be used to characterize the local flow dynamics around different stent structures. However, the usual cylindrical stent geometries present visualization difficulties when using an optical measurement technique such as the PIV technique. Using a flat configuration of a stent model presents advantages over the usual cylindrical model. A planar stent model makes data acquisition easier in planes cutting through the model due to its flat geometry that is compatible with the PIV planar flow investigation technique. Furthermore, with the planar stent configuration model velocity measurements and their associated flow features can be done without inducing refraction of the laser light sheet occurring with the cylindrical model's curvature. The refraction of light should be avoided since measurement errors and reflections are the resulting effects of this laser light plane deviation when passing through the curvature of a cylindrical stent model.;The spatial and temporal distribution of the Wall Shear Stress (WSS), which is believed to be of primary importance in the development of restenosis should be comparable between the flat and the cylindrical stent configuration models. The velocity and shear strain rate distributions will be compared between the flat and cylindrical stent configurations using computational fluid dynamics (CFD) simulations in order to analyse the feasibility of using a flat instead of a cylindrical version of the stent model for PIV experiments. It will be shown that for a physiological pulsatile flow the flat model yields results in shear strain rate spatial and temporal distribution that is comparable to the cylindrical model. A more PIV compatible, efficient and less refractive error prone validated flat model would be advantageous when several stent designs influence on the local hemodynamics around the strut geometries have to be studied quantitatively and optimized.
机译:已知支架动脉区域的机械应力和血流动力学改变会刺激内膜增厚并增加再狭窄的风险,即血管再狭窄的闭合。粒子成像测速(PIV)是一种光学流动可视化技术,可用于表征不同支架结构周围的局部流动动力学。然而,当使用诸如PIV技术的光学测量技术时,通常的圆柱形支架几何形状存在可视化困难。与常规的圆柱模型相比,使用扁平模型的支架模型具有优势。平面支架模型的平面几何形状与PIV平面流动调查技术兼容,因此在穿过模型的平面中进行数据采集变得更加容易。此外,利用平面支架构型模型,可以进行速度测量及其相关的流量特征,而不会引起因圆柱模型的曲率而引起的激光片的折射。应避免光的折射,因为当通过圆柱支架模型的曲率时,测量误差和反射是该激光平面偏差的结果。壁剪切应力(WSS)的时空分布为认为在再狭窄发展中最重要的应该在扁平和圆柱形支架配置模型之间具有可比性。将使用计算流体动力学(CFD)模拟比较扁平和圆柱形支架配置之间的速度和剪切应变率分布,以分析在PIV实验中使用扁平支架模型而不是圆柱形模型的可行性。将显示出,对于生理脉动流,平面模型的屈服导致剪切应变率的时空分布与圆柱模型相当。当必须定量研究和优化几种支架设计对支杆几何形状周围局部血流动力学的影响时,更具PIV兼容性,效率且屈光误差倾向较小的扁平模型将是有利的。

著录项

  • 作者

    Drapeau, Guy.;

  • 作者单位

    McGill University (Canada).;

  • 授予单位 McGill University (Canada).;
  • 学科 Engineering Biomedical.
  • 学位 M.Eng.
  • 年度 2008
  • 页码 110 p.
  • 总页数 110
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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