Title :
Real time US-tagging combined with phase-based optical flow applied to 2D motion estimation of the carotid artery wall
Author :
Salles, Sara ; Zahnd, Guillaume ; Liebgott, H. ; Serusclat, Andre ; Vray, Didier
Author_Institution :
CREATIS, Univ. de Lyon, Lyon, France
Abstract :
Early detection of cardiovascular diseases (CVD) is possible by assessing the dynamic properties of the common carotid artery, i.e. the 2D (radial and longitudinal) motion of the wall layers. B-mode imaging is widely used, however this modality does not provide a high definition in the longitudinal direction (i.e. parallel to the probe) due to the aperture problem and the homogeneity of the tissues. To increase the definition in the longitudinal direction, we present here a specific beamforming method dedicated to estimate the 2D motion of the carotid artery wall. The generated US-tagged images present radiofrequency oscillations in both directions. The 2D motion is assessed with a specific phase-based optical flow method. The method was implemented in real time on a research echograph and applied in vivo on a healthy carotid over 3 cardiac cycles. The results show that our method is more accurate compared to classical block matching on B-mode images. Index Terms- Carotid Artery, US-Tagging, Phased-Based Optical Flow Matching, Motion Estimation, Block Matching, Real Time, Beamforming, RF2D.
Keywords :
blood vessels; cardiovascular system; diseases; echocardiography; image matching; medical image processing; motion estimation; real-time systems; 2D motion estimation; B-mode imaging; aperture problem; cardiovascular disease detection; carotid artery wall; classical block matching; common carotid artery; longitudinal direction; radial direction; radiofrequency oscillation; real time US-tagging; research echograph; specific beamforming method; specific phase-based optical flow method; tissue homogeneity; Acoustics; Array signal processing; Carotid arteries; Image motion analysis; Optical imaging; Oscillators; Trajectory; Beamforming; Block Matching; Carotid Artery; Motion Estimation; Phased-Based Optical Flow Matching; RF2D; Real Time; US-Tagging;
Conference_Titel :
Ultrasonics Symposium (IUS), 2012 IEEE International
Conference_Location :
Dresden
Print_ISBN :
978-1-4673-4561-3
DOI :
10.1109/ULTSYM.2012.0295