首页> 外文期刊>Annals of Biomedical Engineering >Numerical, Hydraulic, and Hemolytic Evaluation of an Intravascular Axial Flow Blood Pump to Mechanically Support Fontan Patients
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Numerical, Hydraulic, and Hemolytic Evaluation of an Intravascular Axial Flow Blood Pump to Mechanically Support Fontan Patients

机译:血管内轴流血泵机械支持方丹患者的数值,液压和溶血性评估

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Currently available mechanical circulatory support systems are limited for adolescent and adult patients with a Fontan physiology. To address this growing need, we are developing a collapsible, percutaneously-inserted, axial flow blood pump to support the cavopulmonary circulation in Fontan patients. During the first phase of development, the design and experimental evaluation of an axial flow blood pump was performed. We completed numerical modeling of the pump using computational fluid dynamics analysis, hydraulic testing of a plastic pump prototype, and blood bag experiments (n = 7) to measure the levels of hemolysis produced by the pump. Statistical analyses using regression were performed. The prototype with a 4-bladed impeller generated a pressure rise of 2–30 mmHg with a flow rate of 0.5–4 L/min for 3000–6000 RPM. A comparison of the experimental performance data to the numerical predictions demonstrated an excellent agreement with a maximum deviation being less than 6%. A linear increase in the plasma-free hemoglobin (pfHb) levels during the 6-h experiments was found, as desired. The maximum pfHb level was measured to be 21 mg/dL, and the average normalized index of hemolysis was determined to be 0.0097 g/100 L for all experiments. The hydraulic performance of the prototype and level of hemolysis are indicative of significant progress in the design of this blood pump. These results support the continued development of this intravascular pump as a bridge‐to‐transplant, bridge‐to‐recovery, bridge-to-hemodynamic stability, or bridge-to-surgical reconstruction for Fontan patients.
机译:当前可用的机械循环支持系统仅限于具有Fontan生理机能的青少年和成年患者。为了满足这种不断增长的需求,我们正在开发一种可折叠,经皮插入的轴流式血泵,以支持Fontan患者的腔肺循环。在开发的第一阶段,进行了轴流血泵的设计和实验评估。我们使用计算流体动力学分析,塑料泵原型的液压测试以及血袋实验(n = 7)完成了泵的数值建模,以测量泵产生的溶血水平。使用回归进行统计分析。带有4叶片叶轮的原型在3000-6000 RPM的转速下产生了2-30 mmHg的压力上升,流量为0.5-4 L / min。实验性能数据与数值预测结果的比较表明,最大偏差小于6%时,具有很好的一致性。根据需要,在6小时的实验过程中发现了无血浆血红蛋白(pfHb)水平的线性增加。所有实验的最大pfHb水平为21 mg / dL,平均溶血标准化指数为0.0097 g / 100L。原型的水力性能和溶血水平表明该血泵的设计取得了重大进展。这些结果支持了这种血管内泵的持续发展,可以作为Fontan患者的桥对移植,桥对康复,桥对血流动力学稳定性或桥对手术重建。

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