DocumentCode :
862967
Title :
Development of an implantable motor-driven assist pump system
Author :
Mitamura, Yoshinori ; Okamoto, Eiji ; Hirano, Atsushi ; Mikami, Tomohisa
Author_Institution :
Hokkaido Univ., Sapporo, Japan
Volume :
37
Issue :
2
fYear :
1990
Firstpage :
146
Lastpage :
156
Abstract :
A motor-driven artificial pump and its transcutaneous energy transmission (TET) system are discussed. The artificial pump consists of a high-speed DC brushless motor driving a ball screw and magnetic coupling mechanism between the blood pump and ball screw. The ball screw transfers high-speed rotary motion into low-speed rectilinear motion by a single component. Magnetic coupling enables active blood filling without applying an excess negative pressure to the pump. The transcutaneous transformer is formed from a pair of concave/convex ferrite cores. This design minimizes lateral motion of the external core. Information on motor voltage is transmitted through the skin by infrared pulses. The motor voltage is regulated by controlling the duty ratio of the square pulse supplied to the primary coil. Pump flow of 5.6 l/min was obtained with a mean outlet pressure of 100 mm Hg at a drive rate of 100 b.p.m. under preload of 15 mm Hg.
Keywords :
artificial organs; cardiology; haemodynamics; pumps; 100 mmHg; 15 mmHg; 24 W; ball screw; ferrite cores; high-speed DC brushless motor; high-speed rotary motion; implantable motor-driven assist pump system; infrared pulses; lateral motion minimisation; low-speed rectilinear motion; magnetic coupling mechanism; transcutaneous energy transmission system; transcutaneous transformer; Blood; Brushless motors; Couplings; Fasteners; Ferrites; Filling; Magnetic cores; Mercury (metals); Pulse transformers; Transformer cores; Animals; Dogs; Electric Conductivity; Equipment Design; Heart, Artificial; Hemodynamics;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/10.46254
Filename :
46254
Link To Document :
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