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计算流体动力学:支架型人工血管植入术后腹主动脉瘤的血流动力学变化

Computational fluid dynamics: hemodynamic changes in abdominal aortic aneurysm after stent-graft implantation.

作者信息

Frauenfelder Thomas, Lotfey Mourad, Boehm Thomas, Wildermuth Simon

机构信息

Institute of Diagnostic Radiology, University Hospital of Zurich, Zurich, Switzerland.

出版信息

Cardiovasc Intervent Radiol. 2006 Jul-Aug;29(4):613-23. doi: 10.1007/s00270-005-0227-5.

Abstract

The aim of this study was to demonstrate quantitatively and qualitatively the hemodynamic changes in abdominal aortic aneurysms (AAA) after stent-graft placement based on multidetector CT angiography (MDCT-A) datasets using the possibilities of computational fluid dynamics (CFD). Eleven patients with AAA and one patient with left-side common iliac aneurysm undergoing MDCT-A before and after stent-graft implantation were included. Based on the CT datasets, three-dimensional grid-based models of AAA were built. The minimal size of tetrahedrons was determined for grid-independence simulation. The CFD program was validated by comparing the calculated flow with an experimentally generated flow in an identical, anatomically correct silicon model of an AAA. Based on the results, pulsatile flow was simulated. A laminar, incompressible flow-based inlet condition, zero traction-force outlet boundary, and a no-slip wall boundary condition was applied. The measured flow volume and visualized flow pattern, wall pressure, and wall shear stress before and after stent-graft implantation were compared. The experimentally and numerically generated streamlines are highly congruent. After stenting, the simulation shows a reduction of wall pressure and wall shear stress and a more equal flow through both external iliac arteries after stenting. The postimplantation flow pattern is characterized by a reduction of turbulences. New areas of high pressure and shear stress appear at the stent bifurcation and docking area. CFD is a versatile and noninvasive tool to demonstrate changes of flow rate and flow pattern caused by stent-graft implantation. The desired effect and possible complications of a stent-graft implantation can be visualized. CFD is a highly promising technique and improves our understanding of the local structural and fluid dynamic conditions for abdominal aortic stent placement.

摘要

本研究的目的是利用计算流体动力学(CFD)的可能性,基于多排螺旋CT血管造影(MDCT - A)数据集,定量和定性地展示腹主动脉瘤(AAA)在植入覆膜支架后的血流动力学变化。纳入了11例患有AAA的患者和1例患有左侧髂总动脉瘤的患者,他们在植入覆膜支架前后均接受了MDCT - A检查。基于CT数据集,构建了AAA的三维网格模型。确定了用于网格无关性模拟的四面体最小尺寸。通过将计算流量与在解剖结构正确的AAA硅模型中实验生成的流量进行比较,对CFD程序进行了验证。基于结果,模拟了脉动流。应用了基于层流、不可压缩流的入口条件、零牵引力出口边界和无滑移壁边界条件。比较了植入覆膜支架前后测量的流量体积以及可视化的血流模式、壁压力和壁剪切应力。实验和数值生成的流线高度一致。植入支架后,模拟显示壁压力和壁剪切应力降低,并且植入支架后通过双侧髂外动脉的血流更加均匀。植入后的血流模式的特征是湍流减少。在支架分叉和对接区域出现了新的高压和剪切应力区域。CFD是一种通用且无创的工具,可用于展示由植入覆膜支架引起的流速和血流模式的变化。可以可视化覆膜支架植入的预期效果和可能的并发症。CFD是一项极具前景的技术,可增进我们对腹主动脉支架置入局部结构和流体动力学状况的理解。

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