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首页> 外文期刊>The international journal of artificial organs >Hydraulic and hemodynamic performance of a minimally invasive intra-arterial right ventricular assist device
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Hydraulic and hemodynamic performance of a minimally invasive intra-arterial right ventricular assist device

机译:微创动脉内右心室辅助装置的液压和血液动力学性能

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Right ventricular assistance is still in the early phase of development compared to left ventricular assist device (LVAD) technology. In order to provide flexible pulmonary support and potentially reduce the known complications, we propose a minimally invasive right ventricular assist device (MIRVAD), located in the pulmonary artery (PA) and operating in series with the right ventricle (RV).The MIRVAD is an intra-arterial rotary blood pump containing a single axial impeller, which is not enclosed by a rigid housing but stent-fixed within the vessel. The impeller geometry has been designed with the assistance of analytical methods and computational fluid dynamics (CFD). The hydraulic performance of the impeller was evaluated experimentally with a customized test setup using blood synthetic medium (HES). The blade-tip clearance (BTC) was varied between 0.25-4.25 mm to evaluate the effect of different PA sizes on impeller performance. Furthermore, the Langrangian particle-tracking method was used to estimate the level of hemolysis and generate numerical blood damage indexes.The impeller design generated 25.6 mmHg for flow rates of 5 lpm at a speed of 6,000 rpm at the baseline condition, capable of providing sufficient support for the RV. The BTC presented a significant effect on the static pressure generation and the efficiency, but the operational range is suitable for most vessel sizes. The numerical results demonstrated a low risk of blood damage at the design point (mean Lagrangian damage index 2.6 * 10-7). The preliminary results have encouraged further impeller optimization and development of the MIRVAD.
机译:与左心室辅助设备(LVAD)技术相比,右心室辅助仍处于开发的早期阶段。为了提供灵活的肺支持并可能减少已知的并发症,我们提出了一种微创的右心室辅助装置(MIRVAD),该装置位于肺动脉(PA)中并与右心室(RV)串联操作。一种包含单个轴向叶轮的动脉内旋转血泵,该叶轮没有被刚性外壳包围,而是通过支架固定在血管内。叶轮的几何形状是在分析方法和计算流体动力学(CFD)的帮助下设计的。叶轮的液压性能通过使用血液合成介质(HES)的定制测试设置进行了实验评估。刀尖间隙(BTC)在0.25-4.25 mm之间变化,以评估不同PA尺寸对叶轮性能的影响。此外,使用Langrangian粒子追踪方法估算溶血水平并产生数值的血液损害指数。叶轮设计在基线条件下以6,000 rpm的速度以5 lpm的流速产生25.6 mmHg的流量,能够提供足够的流量。支持RV。 BTC对静压产生和效率产生了重大影响,但操作范围适用于大多数容器尺寸。数值结果表明在设计点发生血液损害的风险较低(平均拉格朗日损害指数2.6 * 10-7)。初步结果鼓励进一步推进叶轮的优化和MIRVAD的发展。

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