Literature DB >> 22926404

The helical flow pump with a hydrodynamic levitation impeller.

Yusuke Abe1, Kohei Ishii, Takashi Isoyama, Itsuro Saito, Yusuke Inoue, Toshiya Ono, Hidemoto Nakagawa, Emiko Nakano, Kyoko Fukazawa, Kazuhiko Ishihara, Kazuyoshi Fukunaga, Minoru Ono, Kou Imachi.   

Abstract

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.

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Year:  2012        PMID: 22926404     DOI: 10.1007/s10047-012-0659-z

Source DB:  PubMed          Journal:  J Artif Organs        ISSN: 1434-7229            Impact factor:   1.731


  32 in total

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1.  Computational fluid dynamics analysis of the pump parameters in the helical flow pump.

Authors:  Kyohei Hosoda; Kohei Ishii; Takashi Isoyama; Itsuro Saito; Yusuke Inoue; Kouki Ariyoshi; Toshiya Ono; Hidemoto Nakagawa; Kou Imachi; Hiroshi Kumagai; Yusuke Abe
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2.  Hemodynamics of a functional centrifugal-flow total artificial heart with functional atrial contraction in goats.

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3.  Hydrodynamic characteristics of the helical flow pump.

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Review 4.  Journal of Artificial Organs 2012: the year in review.

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5.  Viscosity-adjusted estimation of pressure head and pump flow with quasi-pulsatile modulation of rotary blood pump for a total artificial heart.

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6.  Concept of left atrial pressure estimation using its pulsatile amplitude in the helical flow total artificial heart.

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