Abe Yusuke, Ishii Kohei, Isoyama Takashi, Saito Itsuro, Inoue Yusuke, Ono Toshiya, Nakagawa Hidemoto, Nakano Emiko, Fukazawa Kyoko, Ishihara Kazuhiko, Fukunaga Kazuyoshi, Ono Minoru, Imachi Kou
Department of Biomedical Engineering, Graduate School of Medicine, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-0033, Japan.
J Artif Organs. 2012 Dec;15(4):331-40. doi: 10.1007/s10047-012-0659-z. Epub 2012 Aug 28.
The helical flow pump (HFP) is a novel rotary blood pump invented for developing a total artificial heart (TAH). The HFP with a hydrodynamic levitation impeller, which consists of a multi-vane impeller involving rotor magnets, stator coils at the core position, and double helical-volute pump housing, was developed. Between the stator and impeller, a hydrodynamic bearing is formed. Since the helical volutes are formed at both sides of the impeller, blood flows with a helical flow pattern inside the pump. The developed HFP showed maximum output of 19 l/min against 100 mmHg of pressure head and 11 % maximum efficiency. The profile of the H-Q (pressure head vs. flow) curve was similar to that of the undulation pump. Hydrodynamic levitation of the impeller was possible with higher than 1,000 rpm rotation speed. The normalized index of the hemolysis ratio of the HFP to centrifugal pump (BPX-80) was from 2.61 to 8.07 depending on the design of the bearing. The HFP was implanted in two goats with a left ventricular bypass method. After surgery, hemolysis occurred in both goats. The hemolysis ceased on postoperative days 14 and 9, respectively. In the first experiment, no thrombus was found in the pump after 203 days of pumping. In the second experiment, a white thrombus was found in the pump after 23 days of pumping. While further research and development are necessary, we are expecting to develop an excellent TAH with the HFP.
螺旋流泵(HFP)是一种为开发全人工心脏(TAH)而发明的新型旋转式血泵。研发出了一种带有流体动力悬浮叶轮的HFP,该叶轮由一个多叶片叶轮组成,包括转子磁体、位于核心位置的定子线圈以及双螺旋蜗壳泵壳。在定子和叶轮之间形成了一个流体动力轴承。由于在叶轮两侧形成了螺旋蜗壳,血液在泵内以螺旋流模式流动。所研发的HFP在100 mmHg的压头下显示出最大输出量为19 l/min,最大效率为11%。H-Q(压头与流量)曲线的轮廓与波动泵的相似。叶轮在转速高于1000 rpm时可实现流体动力悬浮。根据轴承的设计,HFP与离心泵(BPX-80)的溶血率归一化指数在2.61至8.07之间。采用左心室旁路方法将HFP植入两只山羊体内。手术后,两只山羊均发生了溶血。溶血分别在术后第14天和第9天停止。在第一个实验中,泵送203天后泵内未发现血栓。在第二个实验中,泵送23天后在泵内发现了白色血栓。虽然还需要进一步的研发,但我们期望用HFP开发出一种出色的TAH。