DocumentCode :
1540240
Title :
Spectral doppler estimation utilizing 2-D spatial information and adaptive signal processing
Author :
Ekroll, Ingvild K. ; Torp, Hans ; Løvstakken, Lasse
Author_Institution :
Dept. of Circulation & Med. Imaging, Norwegian Univ. of Sci. & Technol. (NTNU), Trondheim, Norway
Volume :
59
Issue :
6
fYear :
2012
fDate :
6/1/2012 12:00:00 AM
Firstpage :
1182
Lastpage :
1192
Abstract :
The trade-off between temporal and spectral resolution in conventional pulsed wave (PW) Doppler may limit duplex/triplex quality and the depiction of rapid flow events. It is therefore desirable to reduce the required observation window (OW) of the Doppler signal while preserving the frequency resolution. This work investigates how the required observation time can be reduced by adaptive spectral estimation utilizing 2-D spatial information obtained by parallel receive beamforming. Four adaptive estimation techniques were investigated, the power spectral Capon (PSC) method, the amplitude and phase estimation (APES) technique, multiple signal classification (MUSIC), and a projection-based version of the Capon technique. By averaging radially and laterally, the required covariance matrix could successfully be estimated without temporal averaging. Useful PW spectra of high resolution and contrast could be generated from ensembles corresponding to those used in color flow imaging (CFI; OW = 10). For a given OW, the frequency resolution could be increased compared with the Welch approach, in cases in which the transit time was higher or comparable to the observation time. In such cases, using short or long pulses with unfocused or focused transmit, an increase in temporal resolution of up to 4 to 6 times could be obtained in in vivo examples. It was further shown that by using adaptive signal processing, velocity spectra may be generated without high-pass filtering the Doppler signal. With the proposed approach, spectra retrospectively calculated from CFI may become useful for unfocused as well as focused imaging. This application may provide new clinical information by inspection of velocity spectra simultaneously from several spatial locations.
Keywords :
Doppler effect; array signal processing; biomedical ultrasonics; covariance matrices; high-pass filters; medical signal processing; 2D spatial information; MUSIC; PSC method; Welch approach; adaptive signal processing; amplitude and phase estimation method; color flow imaging; conventional pulsed wave Doppler estimation; covariance matrix; high-pass filtering; multiple signal classification; parallel receive beamforming; power spectral Capon method; ultrasound system; Covariance matrix; Estimation; Frequency estimation; Image resolution; Imaging; Noise; Signal resolution;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2012.2308
Filename :
6217566
Link To Document :
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