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patched动脉搭桥吻合处血流动力学的数值研究

Numerical investigation of the haemodynamics at a patched arterial bypass anastomosis.

作者信息

Cole J S, Watterson J K, O'Reilly M J G

机构信息

School of Aeronautical Engineering, The Queen's University of Belfast, Belfast BT9 5AG, Northern Ireland, UK.

出版信息

Med Eng Phys. 2002 Jul;24(6):393-401. doi: 10.1016/s1350-4533(02)00038-3.

Abstract

Intimal hyperplasia at arterial bypass graft anastomoses is a major factor responsible for graft failure. A revised surgical technique, incorporating a Taylor vein patch into the distal anastomosis of PTFE grafts, results in a decrease in intimal hyperplasia and improved patency rates. Numerical simulations of pulsatile, non-Newtonian blood flow through life-like femorodistal bypass models have been performed to determine whether haemodynamic benefits arise from the modified geometry of the Taylor anastomosis. In a conventional bypass, the distal anastomotic flow exhibited considerable spatial and temporal variations. Steep spatial gradients in the shearing force acted along the floor during systole. The effect of the Taylor geometry was to reduce gradually the momentum of the blood approaching the junction. Thus, flow disturbances were abated, undesirable flow separation at the toe was diminished, and a less adverse floor shear stress distribution prevailed in that case. Intimal thickening should be alleviated at the toe in the Taylor model where separation is reduced, and where the thrombogenic graft surface is replaced with a vein patch. Intimal hyperplasia on the floor may be inhibited in the Taylor model due to more favourable shear stresses. The improved flow through the patched anastomosis should contribute to its enhanced performance.

摘要

动脉搭桥移植物吻合处的内膜增生是导致移植物失败的主要因素。一种改良的手术技术,即将泰勒静脉补片纳入聚四氟乙烯移植物的远端吻合,可减少内膜增生并提高通畅率。已对通过逼真的股-远端旁路模型的脉动、非牛顿血流进行了数值模拟,以确定泰勒吻合术改良后的几何形状是否带来血流动力学益处。在传统旁路中,远端吻合口血流表现出相当大的空间和时间变化。收缩期时,剪切力沿底部存在陡峭的空间梯度。泰勒几何形状的作用是逐渐降低接近吻合口处血液的动量。因此,血流紊乱得到缓解,吻合口前端不良的血流分离减少,且在这种情况下底部剪切应力分布更有利。在泰勒模型中,由于吻合口前端的分离减少且血栓形成的移植物表面被静脉补片替代,内膜增厚应会减轻。由于更有利的剪切应力,泰勒模型中底部的内膜增生可能会受到抑制。通过带补片吻合口的改善血流应有助于其性能提升。

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