DocumentCode
2217243
Title
Elimination of specific transducer influence on signals from intravascular ultrasonic catheters
Author
Schmidt, W. ; Niendorf, M. ; Behrend, D. ; Schmitz, K.-P. ; Urbaszek, W.
Author_Institution
Fa. of Med., Rostock Univ., Germany
Volume
2
fYear
1996
fDate
31 Oct-3 Nov 1996
Firstpage
887
Abstract
A new method for elimination of transducer specific influences on spectral estimation is suggested. The measurement of reference data sets during catheter preparation was carried out. The IVUS echo signals derived from tissue mimicking materials could be corrected in terms of subtraction of reference and IVUS data spectra successfully. Further improvement of signal quality could be achieved by bandpass filtering of the corrected signal. In this way a standardised data basis was created, which allows time-frequency analysis of intravascular echo signals to classify different tissue types of atherosclerotic vessels
Keywords
acoustic signal processing; band-pass filters; biomedical ultrasonics; medical image processing; smoothing methods; spectral analysis; time-frequency analysis; ultrasonic transducers; Wigner-Ville distribution; atherosclerotic vessels; bandpass filtering; catheter preparation; echo signals; impedance functions; intravascular echo signals; intravascular ultrasonic catheter signals; inverse FT; overmodulation effects; reference data sets; signal quality; spectral estimation; standardised data basis; time-frequency analysis; tissue mimicking materials; transducer specific influences elimination; Acoustic transducers; Biomedical imaging; Biomedical transducers; Cardiology; Catheters; Impedance; Resonance; Time frequency analysis; Ultrasonic imaging; Ultrasonic transducers;
fLanguage
English
Publisher
ieee
Conference_Titel
Engineering in Medicine and Biology Society, 1996. Bridging Disciplines for Biomedicine. Proceedings of the 18th Annual International Conference of the IEEE
Conference_Location
Amsterdam
Print_ISBN
0-7803-3811-1
Type
conf
DOI
10.1109/IEMBS.1996.652025
Filename
652025
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