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IMAGE-BASED MODELING OF ARTERIOVENOUS HEMODIALYSIS ACCESS GRAFT FLOW

机译:基于图像的动脉血液透析型接入移植物流模型

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Thrombosis in an arteriovenous hemodialysis access graft is a major cause of graft failure. Changes in flow features due to increasing resistance at the venous anastomosis may promote the development of thrombosis. A three-dimensional computational fluid dynamics model was developed to analyze flow at the arterial anastomosis of a PTFE brachial-brachial arteriovenous access graft. The geometry was obtained from contrast-enhanced magnetic resonance images. A surface mesh was extracted using Amira software, and the final volume mesh was generated by Tgrid (Fluent, Inc). The simulation was carried out for steady flow conditions using Fluent CFD software with low-Reynolds number k-ω turbulence model. Small areas of recirculation can be seen in the area of the bifurcation, and results show a pressure difference between the proximal artery and the graft that is consistent with reported values.
机译:动静脉血液透析接入移植物中的血栓形成是接枝衰竭的主要原因。由于静脉吻合术的耐药性增加,流动特征的变化可能促进血栓形成的发育。开发了一种三维计算流体动力学模型,用于分析PTFE肱肱动臂动脉静脉接入移植物的动脉吻合术处的流动。几何体是从对比度增强的磁共振图像获得的。使用Amira软件提取表面网格,并通过TGRID(FLUENT,INC)生成最终体积网。使用具有低雷诺数K-ω湍流模型的流畅的CFD软件进行稳定流动条件进行仿真。在分叉的区域中可以看出小区的再循环区域,结果显示近端动脉和与报告值一致的移植物之间的压力差。

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