DocumentCode
761858
Title
Clutter filters adapted to tissue motion in ultrasound color flow imaging
Author
Bjaerum, S. ; Torp, Hans ; Kristoffersen, Kjell
Author_Institution
GE Vingined Ultrasound, Horten, Norway
Volume
49
Issue
6
fYear
2002
fDate
6/1/2002 12:00:00 AM
Firstpage
693
Lastpage
704
Abstract
The quality of ultrasound color flow images is highly dependent on sufficient attenuation of the clutter signals originating from stationary and slowly moving tissue. Without sufficient clutter rejection, the detection of low velocity blood flow will be poor, and the velocity estimates will have a large bias. In some situations, e.g., when imaging the coronary arteries or when the operator moves the probe in search for small vessels, there is considerable movement of tissue. It has been suggested that clutter rejection can be improved by mixing down the signal with an estimate of the mean frequency prior to high pass filtering. In this paper, we compare this algorithm with several other adaptive clutter filtering algorithms using both experimental data and simulations. We found that realistic accelerations of the tissue have a large effect on the clutter rejection. The best results were obtained by mixing down the signal with non-constant phase increments estimated from the signal. This adapted the filter to a possibly accelerated tissue motion and produced a significant improvement in clutter rejection.
Keywords
adaptive filters; biological tissues; biomedical ultrasonics; blood flow measurement; blood vessels; clutter; medical signal processing; adaptive clutter filtering algorithm; blood flow; blood vessel; coronary artery; tissue motion; ultrasound color flow imaging; Acceleration; Arteries; Attenuation; Blood flow; Filtering algorithms; Filters; Frequency estimation; Phase estimation; Probes; Ultrasonic imaging; Blood Flow Velocity; Computer Simulation; Equipment Design; Humans; Mathematics; Thyroid Gland; Ultrasonography, Doppler, Color;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/TUFFC.2002.1009328
Filename
1009328
Link To Document