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Sequential venous anastomosis design to enhance patency of arterio-venous grafts for hemodialysis

机译:顺序静脉吻合设计可增强动静脉移植物通畅以进行血液透析

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Arterio-venous grafts (AVGs), the second best option as long-term vascular access for hemodialysis, face major issues of stenosis mainly due to development of intimal hyperplasia at the venous anastomosis which is linked to unfavorable hemodynamic conditions. We have investigated computationally the utility of a coupled sequential venous anastomotic design to replace conventional end-to-side (ETS) venous anastomosis, in order to improve the hemodynamic environment and consequently enhance the patency of AVGs. Two complete vascular access models with the conventional and the proposed venous anastomosis configurations were constructed. Three-dimensional, pulsatile blood flow through the models was simulated, and wall shear stress (WSS)-based hemodynamic parameters were calculated and compared between the two models. Simulation results demonstrated that the proposed anastomotic design provides: (i) a more uniform and smooth flow at the ETS anastomosis, without flow impingement and stagnation point on the artery bed and vortex formation in the heel region of the ETS anastomosis; (ii) more uniform distribution of WSS and substantially lower WSS gradients on the venous wall; and (iii) a spare route for the blood flow to the vein, to avoid re-operation in case of stenosis. The distinctive hemodynamic advantages observed in the proposed anastomotic design can enhance the patency of AVGs.
机译:作为长期用于血液透析的血管通路的第二好的选择,动静脉移植物(AVG)面临狭窄的主要问题,这主要是由于静脉吻合处的内膜增生的发展,这与不利的血液动力学状况有关。我们已经在计算上研究了连续静脉吻合术替代传统的端对端(ETS)静脉吻合术的实用性,以改善血液动力学环境,从而提高AVG的通畅性。构建了两个具有常规静脉吻合结构和拟议静脉吻合结构的完整血管通路模型。模拟通过模型的三维脉动血流,并计算基于壁切应力(WSS)的血液动力学参数,并在两个模型之间进行比较。仿真结果表明,所提出的吻合设计提供了:(i)ETS吻合处的流动更均匀和平滑,在ETS吻合处的动脉床上没有流动冲击和停滞点,并且没有涡流形成; (ii)WSS的分布更加均匀,并且在静脉壁上的WSS梯度大大降低; (iii)备用的血液流向静脉的途径,以免在狭窄时再次手术。在拟议的吻合设计中观察到的独特的血液动力学优势可以增强AVG的通畅性。

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