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3D velocity field characterization of prosthetic heart valve with two different valve testers by means of stereo-PIV

机译:借助立体声PIV用两个不同的瓣膜测试仪对人工心脏瓣膜进行3D速度场表征

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Background: Prosthetic heart valves can be associated to mechanical loading of blood, potentially linked to complications (hemolysis and thrombogenicity) which can be clinically relevant. In order to test such devices in pulsatile mode, pulse duplicators (PDs) have been designed and built according to different concepts. This study was carried out to compare anemometric measurements made on the same prosthetic device, with two widely used PDs. Methods: The valve (a 27-mm bileaflet valve) was mounted in the aortic section of the PD. The Sheffield University PD and the RWTH Aachen PD were selected as physical models of the circulation. These two PDs differ mainly in the vertical vs horizontal realization, and in the ventricular section, which in the RWTH PD allows for storage of potential energy in the elastic walls of the ventricle. A glassblown aorta, realized according to the geometric data of the same anatomical district in healthy individuals, was positioned downstream of the valve, obtaining 1:1 geometric similarity conditions. A NaI-glycerolwater solution of suitable kinematic viscosity and, at the same time, the proper refractive index, was selected. The flow field downstream of the valve was measured by means of the stereo-PIV (Particle Image Velocimetry) technique, capable of providing the complete 3D velocity field as well as the entire Reynolds stress tensor. The measurements were carried out at the plane intersecting the valve axis. Results: A three-jet profile was clearly found in the plane crossing the leaflets, with both PDs. The extent of the typical recirculation zone in the Valsalva sinus was much larger in the RWTH PD, on account of the different duration of the swirling motion in the ventricular chamber, caused by the elasticity of the ventricle and its geometry. Conclusion: The comparison of the hemodynamical behaviour of the same bileaflet valve tested in two PDs demonstrated the role of the mock loop in affecting the valve performance.
机译:背景:人工心脏瓣膜可能与血液的机械负荷有关,可能与可能与临床相关的并发症(溶血和血栓形成)有关。为了在脉动模式下测试此类设备,已根据不同的概念设计并构建了脉冲复制器(PD)。进行这项研究的目的是将在同一假体设备上进行的风速测量与两个广泛使用的局部放电进行比较。方法:将瓣膜(27 mm双叶瓣)安装在PD的主动脉段。选择了谢菲尔德大学的PD和亚琛工业大学的PD作为循环的物理模型。这两个PD主要在垂直与水平实现方面以及在心室部分不同,在RWTH PD中,这允许在脑室的弹性壁中存储势能。根据健康个体中同一解剖区域的几何数据实现的玻璃吹主动脉被置于瓣膜的下游,从而获得了1:1的几何相似性条件。选择具有合适的运动粘度并且同时具有适当的折射率的NaI-甘油水溶液。阀下游的流场是通过立体PIV(颗粒图像测速)技术测量的,该技术能够提供完整的3D速度场以及整个雷诺应力张量。在与阀轴线相交的平面上进行测量。结果:在与小叶相交的平面中清楚地发现了三个喷射点。在RWTH PD中,由于心室的弹性及其几何形状引起的心室腔中回旋运动的持续时间不同,因此在瓦尔特·瓦尔特·帕特里克病中,Valsalva窦的典型再循环区的范围要大得多。结论:在两个PD中测试的同一双叶瓣膜的血流动力学行为的比较证明了模拟环在影响瓣膜性能中的作用。

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