DocumentCode :
1407326
Title :
On the feasibility of detecting flaws in artificial heart valves
Author :
Lepelaars, Eugéne S A M ; Van Ooijen, Willem D R ; Tijhuis, Anton G.
Author_Institution :
TNO Phys. & Electron. Lab., The Hague, Netherlands
Volume :
48
Issue :
11
fYear :
2000
fDate :
11/1/2000 12:00:00 AM
Firstpage :
2165
Lastpage :
2171
Abstract :
Investigates the feasibility of detecting defects in certain artificial heart valves by determining the electromagnetic behavior of some simple models with the aid of thin-wire integral equations. The idea is to use the stationary current that occurs at late times after the excitation of a closed loop as a discriminator. This current exhibits an exponential decay when a resistive load is included that is representative of fatigue or a partial fracture. The decay rate is indicative of the severity of the defect. For a wire with an opening, which is representative of a complete fracture, the late-time current is completely absent. As a simplified model of remote detection by a small loop antenna that could be introduced via a catheter, the authors consider the coupling between two parallel circular wires. In all cases, the dispersive environment of the valve is taken to be homogeneous and filled with blood since this medium exhibits a representative dispersion.
Keywords :
cardiology; flaw detection; integral equations; loop antennas; microwave measurement; prosthetics; artificial heart valves; closed loop discriminator; complete fracture; defect severity; dispersive environment; electromagnetic behavior; exponential decay; fatigue; flaws detection feasibility; homogeneous blood-filled environment; late-time current; parallel circular wires; partial fracture; resistive load; simplified model; thin-wire integral equations; Artificial heart; Blood; Catheters; Dispersion; Fatigue; Heart valves; Integral equations; Leg; Scanning electron microscopy; Wire;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/22.884210
Filename :
884210
Link To Document :
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