DocumentCode
3611985
Title
Plane-wave transverse oscillation for high-frame-rate 2-D vector flow imaging
Author
Lenge, Matteo ; Ramalli, Alessandro ; Tortoli, Piero ; Cachard, Christian ; Liebgott, Herve?Œ??
Author_Institution
Dept. of Inf. Eng., Univ. degli Studi di Firenze, Florence, Italy
Volume
62
Issue
12
fYear
2015
fDate
12/1/2015 12:00:00 AM
Firstpage
2126
Lastpage
2137
Abstract
Transverse oscillation (TO) methods introduce oscillations in the pulse-echo field (PEF) along the direction transverse to the ultrasound propagation direction. This may be exploited to extend flow investigations toward multidimensional estimates. In this paper, the TOs are coupled with the transmission of plane waves (PWs) to reconstruct high-framerate RF images with bidirectional oscillations in the pulse-echo field. Such RF images are then processed by a 2-D phase-based displacement estimator to produce 2-D vector flow maps at thousands of frames per second. First, the capability of generating TOs after PW transmissions was thoroughly investigated by varying the lateral wavelength, the burst length, and the transmission frequency. Over the entire region of interest, the generated lateral wavelengths, compared with the designed ones, presented bias and standard deviation of -3.3 ± 5.7% and 10.6 ± 7.4% in simulations and experiments, respectively. The performance of the ultrafast vector flow mapping method was also assessed by evaluating the differences between the estimated velocities and the expected ones. Both simulations and experiments show overall biases lower than 20% when varying the beam-to-flow angle, the peak velocity, and the depth of interest. In vivo applications of the method on the common carotid and the brachial arteries are also presented.
Keywords
blood vessels; diseases; echocardiography; haemodynamics; ultrasonic propagation; ultrasonic transmission; 2D phase-based displacement estimator; beam-to-flow angle; bidirectional oscillations; blood flow; brachial arteries; burst length; cardiovascular diseases; carotid arteries; high-frame-rate 2D vector flow imaging; high-frame-rate RF images; lateral wavelength; multidimensional estimates; peak velocity; plane-wave transmission; plane-wave transverse oscillation; pulse-echo field; standard deviation; transmission frequency; ultrafast vector flow mapping; ultrasound propagation; Array signal processing; Blood flow; Estimation; Imaging; Manganese; Oscillators; Radio frequency;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/TUFFC.2015.007320
Filename
7348986
Link To Document