DocumentCode :
1336575
Title :
On the usefulness of singular value decomposition-ARMA models in Doppler ultrasound
Author :
Forsberg, Flemming
Author_Institution :
King´´s Coll. Sch. of Med. & Dentistry, London, UK
Volume :
38
Issue :
5
fYear :
1991
Firstpage :
418
Lastpage :
428
Abstract :
The singular value decomposition (SVD) autoregressive moving average, (ARMA) procedure is applied to computer-generated synthetic Doppler signals as well as in-vivo Doppler data recorded in the carotid artery. Two essential algorithmic parameters (the initially proposed model order and the number of overdetermined equations used) prove difficult to choose. The resulting spectra are very dependent on these two parameters. For the simulated data models orders of (3, 3) provide good results. However, when applying the SVD-ARMA algorithm to in-vivo Doppler signals no single set of model orders was capable of producing consistent spectral estimates throughout the cardiac cycle. Altering the model orders also necessitates the selection of new algorithmic parameters. Hence, the SVD-ARMA approach cannot be considered suitable as a spectral estimation technique, for real-time Doppler ultrasound systems.<>
Keywords :
Doppler effect; acoustic signal processing; biomedical measurement; biomedical ultrasonics; computerised signal processing; haemodynamics; ARMA models; SVD-ARMA algorithm; SVD-ARMA approach; algorithmic parameters; autoregressive moving average; blood flow velocity measurement; cardiac cycle; carotid artery; computer-generated synthetic Doppler signals; overdetermined equations; real-time Doppler ultrasound systems; simulated data models orders; singular value decomposition; spectral estimation technique; Autoregressive processes; Blood flow; Carotid arteries; Doppler shift; Frequency; In vivo; Medical diagnostic imaging; Signal generators; Singular value decomposition; Ultrasonic imaging;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/58.84286
Filename :
84286
Link To Document :
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