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离心式、混流式和轴流式血泵的体外性能

In vitro performance of a centrifugal, a mixed flow, and an axial flow blood pump.

作者信息

Araki K, Anai H, Oshikawa M, Nakamura K, Onitsuka T

机构信息

Medical Informatics, Miyazaki Medical College Hospital, Kiyotake, Japan.

出版信息

Artif Organs. 1998 May;22(5):366-70. doi: 10.1046/j.1525-1594.1998.06142.x.

Abstract

We specially devised 3 types of turbo pumps, a centrifugal pump (CFP), a mixed flow pump (MFP), and an axial flow pump (AFP), and analyzed their in vitro performance. The common structural design elements were an impeller diameter of 20 mm and sealless magnet couple driving. In vitro tests were carried out using heparinized fresh bovine blood. The hemolysis was comprehensively evaluated at 7-16 points by changing the flow rate and pressure head (mapping of hemolytic property). The maximum efficiency (motor output to pump output) was 44.9% at 7,000 rpm, 3.17 L/min, 191 mm Hg in the CFP; 66.3% at 7,000 rpm, 6.9 L/min, 136 mm Hg in the MFP; and 20.6% at 9,000 rpm, 5.54 L/min, 74 mm Hg in the AFP, respectively. The minimum normalized index of hemolysis (NIH) (g/100 L) was 0.038 at 5,000 rpm, 4.60 L/min, 38 mm Hg in the CFP; 0.010 at 7,000 rpm, 8.22 L/min, 100 mm Hg in the MFP; and 0.033 at 7,000 rpm, 2.84 L/min, 48 mm Hg in the AFP, respectively. The best efficiency and NIH were achieved in the MFP.

摘要

我们专门设计了3种类型的涡轮泵,即离心泵(CFP)、混流泵(MFP)和轴流泵(AFP),并分析了它们的体外性能。常见的结构设计要素为叶轮直径20 mm和无密封磁耦合驱动。使用肝素化新鲜牛血进行体外测试。通过改变流速和压头(溶血特性图谱)在7 - 16个点全面评估溶血情况。离心泵在转速7000 rpm、流量3.17 L/min、压力191 mmHg时,最大效率(电机输出与泵输出之比)为44.9%;混流泵在转速7000 rpm、流量6.9 L/min、压力136 mmHg时,最大效率为66.3%;轴流泵在转速9000 rpm、流量5.54 L/min、压力74 mmHg时,最大效率为20.6%。离心泵在转速5000 rpm、流量4.60 L/min、压力38 mmHg时,最小标准化溶血指数(NIH)(g/100 L)为0.038;混流泵在转速7000 rpm、流量8.22 L/min、压力100 mmHg时,最小标准化溶血指数为0.010;轴流泵在转速7000 rpm、流量2.84 L/min、压力48 mmHg时,最小标准化溶血指数为0.033。混流泵的效率和NIH最佳。

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