Department of Thoracic, Cardiovascular and General Surgery, Kanazawa University.
School of Mechanical Engineering, Kanazawa University.
Circ J. 2017 Dec 25;82(1):110-117. doi: 10.1253/circj.CJ-17-0381. Epub 2017 Aug 19.
Intimal hyperplasia (IH) is a major cause of graft failure. Hemodynamic factors such as stagnation and disturbed blood flow are involved in IH formation. The aim of this study is to perform a comparative analysis of distal-end side-to-side (deSTS) and end-to-side (ETS) anastomoses using computational fluid dynamics (CFD) after validating the results via particle image velocimetry (PIV).Methods and Results:We investigated the characteristics of our target flow fields using CFD under steady and pulsatile flows. CFD via PIV under steady flow in a 10-times-actual-size model was validated. The CFD analysis revealed a recirculation zone in the heel region in the deSTS and ETS anastomoses and at the distal end of the graft, and just distal to the toe of the host artery in the deSTS anastomoses. The recirculation zone sizes changed with the phase shift. We found regions of low wall shear stress and high oscillating shear index in the same areas. The PIV and CFD results were similar.
It was demonstrated that the hemodynamic characteristics of CFD and PIV is the difference between the deSTS and ETS anastomoses; that is, the deSTS flow peripheral to the distal end of the graft, at the distal end and just distal to the toe of the host artery is involved in the IH formation.
内膜增生(IH)是移植物失败的主要原因。停滞和血流紊乱等血液动力学因素与 IH 的形成有关。本研究旨在通过粒子图像测速法(PIV)对结果进行验证后,使用计算流体动力学(CFD)对远端侧侧吻合术(deSTS)和端侧吻合术(ETS)进行比较分析。
我们使用 CFD 研究了稳态和脉动流条件下目标流场的特征。通过对 10 倍实际尺寸模型的稳态流进行 PIV 验证 CFD。CFD 分析显示,在 deSTS 和 ETS 吻合处以及移植物远端和宿主动脉趾端存在脚跟区域的回流区。回流区的大小随相位移动而变化。我们发现同一区域存在壁面切应力低和振荡剪切指数高的区域。PIV 和 CFD 的结果相似。
结果表明,CFD 和 PIV 的血流动力学特征存在差异,即 deSTS 吻合术后远端、远端和宿主动脉趾端附近的移植物外周血流与 IH 的形成有关。