DocumentCode
2479468
Title
P4B-1 Characterization of a Multiscale Variational Optical Flow Method for Elastography
Author
Sosa-Cabrera, D. ; Gonzalez-Fernandez, J. ; Gomez-Deniz, L. ; Ruiz-Alzola, J.
Author_Institution
Univ. of Las Palmas de Gran Canaria, Las Palmas
fYear
2007
fDate
28-31 Oct. 2007
Firstpage
1949
Lastpage
1952
Abstract
Part of the experiments carried out in our research have been developed using the time-domain cross-correlation estimator (TDE) to obtain the displacement field. When trying to use this method with real phantoms, decorrelation effects, mainly when dealing with pronounced tissue strains, compromises the accuracy of these methods. With this motivation we examined different ways to obtain the displacement field taking advantage of the properties of the B-mode images and the quantity and quality of different algorithms. A Multiscale Variational Optical Flow (MVOF) algorithm adapted to elastography gave the best results. Once the displacement is known, a least- squares strain estimator (LSE) is applied to estimate the tissue strain. To fully characterize the proposed algorithm, the elastographic signal-to-noise ratio (SNRe) and the contrast- to-noise ratio (CNRe) figures of merit are both obtained. It is important to remark that the input data for the algorithm comes from the ultrasound scanner standardized video output, therefore, its clinical implementation is immediate.
Keywords
biological tissues; biomechanics; biomedical ultrasonics; image sequences; least squares approximations; medical image processing; phantoms; B-mode image; contrast-to-noise ratio; decorrelation effect; elastography; least- squares strain estimator; multiscale variational optical flow method; phantom; signal-to-noise ratio; time-domain cross-correlation estimator; tissue strain; ultrasound scanner; Capacitive sensors; Dynamic range; Filters; Image coding; Image motion analysis; Imaging phantoms; Lesions; Signal processing algorithms; Signal resolution; Ultrasonic imaging;
fLanguage
English
Publisher
ieee
Conference_Titel
Ultrasonics Symposium, 2007. IEEE
Conference_Location
New York, NY
ISSN
1051-0117
Print_ISBN
978-1-4244-1384-3
Electronic_ISBN
1051-0117
Type
conf
DOI
10.1109/ULTSYM.2007.490
Filename
4410063
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