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轴承间隙对带有半开式叶轮的流体动力悬浮离心式血泵溶血特性的影响。

Effect of a bearing gap on hemolytic property in a hydrodynamically levitated centrifugal blood pump with a semi-open impeller.

作者信息

Kosaka Ryo, Nishida Masahiro, Maruyama Osamu, Yambe Tomoyuki, Imachi Kou, Yamane Takashi

机构信息

Human Technology Research Institute, National Institute of Advanced Industrial Science and Technology, Ibaraki, Japan.

出版信息

Biomed Mater Eng. 2013;23(1-2):37-47. doi: 10.3233/BME-120730.

Abstract

We have developed a hydrodynamically levitated centrifugal blood pump with a semi-open impeller for long-term circulatory assist. The pump uses hydrodynamic bearings to enhance durability and reliability without additional displacement-sensors or control circuits. However, a narrow bearing gap of the pump has a potential for hemolysis. The purpose of this study is to develop the hydrodynamically levitated centrifugal blood pump with a semi-open impeller, and to evaluate the effect of a bearing gap on hemolytic property. The impeller levitates using a spiral-groove type thrust bearing, and a herringbone-groove type radial bearing. The pump design was improved by adopting a step type thrust bearing and optimizing the pull-up magnetic force. The pump performance was evaluated by a levitation performance test, a hemolysis test and an animal experiment. In these tests, the bearing gap increased from 1 to 63 μm. In addition, the normalized index of hemolysis (NIH) improved from 0.415 to 0.005 g/100 l, corresponding to the expansion of the bearing gap. In the animal experiment for 24 h, the plasma-free hemoglobin remained within normal ranges (<4.0 mg/dl). We confirmed that the hemolytic property of the pump was improved to the acceptable level by expanding the bearing gap greater than 60 μm.

摘要

我们开发了一种带有半开式叶轮的流体动力悬浮离心血泵,用于长期循环辅助。该泵使用流体动力轴承来提高耐用性和可靠性,无需额外的位移传感器或控制电路。然而,该泵狭窄的轴承间隙存在溶血的可能性。本研究的目的是开发一种带有半开式叶轮的流体动力悬浮离心血泵,并评估轴承间隙对溶血特性的影响。叶轮利用螺旋槽式推力轴承和人字槽式径向轴承实现悬浮。通过采用阶梯式推力轴承和优化上拉磁力对泵的设计进行了改进。通过悬浮性能测试、溶血测试和动物实验对泵的性能进行了评估。在这些测试中,轴承间隙从1μm增加到63μm。此外,溶血归一化指数(NIH)从0.415降至0.005g/100l,这与轴承间隙的扩大相对应。在为期24小时的动物实验中,无血浆血红蛋白保持在正常范围内(<4.0mg/dl)。我们证实,通过将轴承间隙扩大到大于60μm,泵的溶血特性得到改善,达到了可接受的水平。

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