DocumentCode :
272851
Title :
Full 3-D transverse oscillations: a method for tissue motion estimation
Author :
Salles, Sebastien ; Liebgott, Hervé ; Garcia, Damien ; Vray, Didier
Author_Institution :
Centre de Rech. en Acquisition et Traitement de l´Image pour la Sante (CREATIS), Inst. Nat. des Sci. Appl. de Lyon (INSA de Lyon), Lyon, France
Volume :
62
Issue :
8
fYear :
2015
fDate :
Aug-15
Firstpage :
1473
Lastpage :
1485
Abstract :
We present a new method to estimate 4-D (3-D + time) tissue motion. The method used combines 3-D phase based motion estimation with an unconventional beamforming strategy. The beamforming technique allows us to obtain full 3-D RF volumes with axial, lateral, and elevation modulations. Based on these images, we propose a method to estimate 3-D motion that uses phase images instead of amplitude images. First, volumes featuring 3-D oscillations are created using only a single apodization function, and the 3-D displacement between two consecutive volumes is estimated simultaneously by applying this 3-D estimation. The validity of the method is investigated by conducting simulations and phantom experiments. The results are compared with those obtained with two other conventional estimation methods: block matching and optical flow. The results show that the proposed method outperforms the conventional methods, especially in the transverse directions.
Keywords :
biological tissues; biomedical ultrasonics; feature extraction; image matching; image sequences; medical image processing; motion estimation; phantoms; ultrasonic imaging; 3D RF volumes; 3D displacement; 3D phase-based motion estimation; 4D (3D+time) tissue motion; axial modulations; block matching; elevation modulations; full 3D transverse oscillations; lateral modulations; optical flow; phantom experiments; phase images; single apodization function; tissue motion estimation; unconventional beamforming strategy; volumes featuring 3D oscillations; Array signal processing; Estimation; Imaging; Motion estimation; Oscillators; Radio frequency; Ultrasonic imaging;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/TUFFC.2015.007050
Filename :
7185014
Link To Document :
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