DocumentCode
914907
Title
Estimation of Displacement Location for Enhanced Strain Imaging
Author
Lindop, Joel E. ; Treece, Graham M. ; Gee, Andrew H. ; Prager, Richard W.
Author_Institution
Univ. of Cambridge, Cambridge
Volume
54
Issue
9
fYear
2007
fDate
9/1/2007 12:00:00 AM
Firstpage
1751
Lastpage
1771
Abstract
Ultrasonic strain imaging usually begins with displacement estimates computed using finite-length sections of RF ultrasound signals. Amplitude variations in the ultrasound are known to perturb the location at which the displacement estimate is valid. If this goes uncorrected, it is a significant source of estimation noise, which is amplified when displacement fields are converted into strain images. We present a study of this effect based on theoretical analysis and practical experiments. A correction method based on the analysis is tested on phase zero and correlation coefficient strain imaging, and compared to the amplitude compression techniques of earlier studies. We also test adaptive strain estimation to provide a benchmark, but the performance of our new method matches or surpasses this benchmark under normal scanning conditions. Furthermore, the new correction is suitable for real time applications owing to its extreme computational simplicity.
Keywords
displacement measurement; estimation theory; ultrasonic imaging; RF ultrasound signals; correlation coefficient; displacement location; ultrasonic strain imaging; Acoustic imaging; Benchmark testing; Capacitive sensors; Elasticity; Estimation error; Image analysis; RF signals; Radio frequency; Signal processing; Ultrasonic imaging; Algorithms; Artifacts; Humans; Image Enhancement; Image Interpretation, Computer-Assisted; Imaging, Three-Dimensional; Motion; Reproducibility of Results; Sensitivity and Specificity; Stress, Mechanical; Ultrasonography;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/TUFFC.2007.460
Filename
4337736
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