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Local Hemodynamics and Intimal Hyperplasia at the Venous Side of a Porcine Arteriovenous Shunt

机译:猪动静脉分流静脉侧的局部血流动力学和内膜增生

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摘要

Venous anastomotic intimal hyperplasia (IH) observed in the arteriovenous shunt (AVS) has been associated with disturbed hemodynamics. This study aims to correlate hemodynamics with wall histology and wall mechanics by examining the flow field in AVS with computational fluid dynamics using experimental data taken from in vivo experiments. Input data to the computational model were obtained in vivo one month after AVS creation; adjacent vessels were submitted to histological and mechanical examination. The 3-D shunt geometry was determined using biplane angiography. Ultrasound measurements of flow rates were performed with perivascular flow probes and pressures were recorded through intravascular catheters. These data were considered as boundary conditions for calculation of the unsteady flow field. Numerical findings are suggestive of strong Dean vortices toward both vein flow exits, verified by color Doppler. The high wall shear stresses (WSSs) and their gradients appear to be related to areas of IH and vessel wall stiffening, as evidenced in preliminary histological and mechanical studies of the venous wall. Additionally, suture line hyperplasia seems to be aggravated by the high WSS gradients noted at the transition line from graft to vein.
机译:动静脉分流(AVS)中观察到的静脉吻合内膜增生(IH)与血液动力学异常有关。这项研究的目的是通过使用体内实验获得的实验数据,通过计算流体动力学来检查AVS中的流场,从而将血液动力学与壁组织学和壁力学联系起来。创建AVS后一个月,便在体内获得了计算模型的输入数据。邻近血管接受组织学和机械检查。使用双平面血管造影术确定3D分流几何。使用血管周围流量探头进行超声流速测量,并通过血管内导管记录压力。这些数据被视为计算非恒定流场的边界条件。数值结果表明,迪安涡流对两个静脉出口都有强烈的涡流,并已通过彩色多普勒验证。高壁剪切应力(WSSs)及其梯度似乎与IH区域和血管壁硬化有关,这在静脉壁的初步组织学和力学研究中得到了证明。另外,在从移植物到静脉的过渡线上注意到的高WSS梯度似乎加剧了缝合线增生。

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