Kosaka Ryo, Nishida Masahiro, Maruyama Osamu, Yambe Tomoyuki, Imachi Kou, Yamane Takashi
Human Technology Research Institute, National Institute of Advanced Industrial Science and Technology, Ibaraki, Japan.
Biomed Mater Eng. 2013;23(1-2):37-47. doi: 10.3233/BME-120730.
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.
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。