Literature DB >> 12790386

Newly developed ventricular assist device with linear oscillatory actuator.

Kazuyoshi Fukunaga1, Akio Funakubo, Yasuhiro Fukui.   

Abstract

The goal of this study was to develop a new direct electromagnetic left ventricular assist device (DEM-LVAD) with a linear oscillatory actuator (LOA). The DEM-LVAD is a pulsatile pump with a pusher plate. The pusher plate is driven directly by the mover of the LOA. The LOA provides reciprocating motion without using any movement converter such as a roller screw or a hydraulic system. It consists of a stator with a single winding excitation coil and a mover with two permanent magnets. The simple structure of the LOA is based on fewer parts to bring about high reliability and smaller size. The mover moves back and forth when forward and backward electric current is supplied to the excitation coil. The pump housings have been designed using three-dimensional computer aided design software and fabricated with the aid of computer aided manufacturing technology. Monostrut valves (Bjork-Shiley #21) were used for the prototype. The DEM-LVAD dimension is 96 mm in diameter and 50 mm thick with a mass of 0.62 kg and a volume of 280 ml. An in vitro test (afterload 100 mm Hg; preload 10 mm Hg; input power 10 W) demonstrated more than 6 L/minute maximum output and 15% maximum efficiency at 130 beats per minute (bpm). Dynamic stroke volume ranged between 40 and 60 ml. The feasibility of the DEM-LVAD was confirmed.

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Year:  2003        PMID: 12790386     DOI: 10.1097/01.mat.0000065372.62948.eb

Source DB:  PubMed          Journal:  ASAIO J        ISSN: 1058-2916            Impact factor:   2.872


  2 in total

1.  Pulsatile blood pump with a linear drive actuator.

Authors:  Kazuyoshi Fukunaga; Akihiko Homma; Akio Funakubo; Eisuke Tatsumi; Yoshiyuki Taenaka; Soichiro Kitamura; Yasuhiro Fukui
Journal:  J Artif Organs       Date:  2007-06-20       Impact factor: 1.731

2.  Development of a miniature motor-driven pulsatile LVAD driven by a fuzzy controller.

Authors:  Eiji Okamoto; Tsutomu Makino; Shuji Tanaka; Takahiko Yasuda; Yuta Akasaka; Makiko Tani; Yusuke Inoue; Ayumu Mitoh; Yoshinori Mitamura
Journal:  J Artif Organs       Date:  2007-09-20       Impact factor: 1.731

  2 in total

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