DocumentCode
2473922
Title
10B-6 A Composite Imaging Technique for High Frame-Rate and Full-View Cardiovascular Ultrasound and Elasticity Imaging
Author
Wang, Shougang ; Lee, Wei-Ning ; Luo, Jianwen ; Konofagou, Elisa E.
Author_Institution
Columbia Univ., New York
fYear
2007
fDate
28-31 Oct. 2007
Firstpage
880
Lastpage
883
Abstract
The frame-rate of ultrasound radio-frequency (RF) data acquisition is critical for imaging of the pulse wave and electromechanical wave propagation in cardiovascular tissues as well as improving the strain estimation. Therefore, an automated method had been developed to overcome the frame-rate limitations on standard systems by retrospective multi-sector signal acquisition through an electrocardiogram (ECG) gating technique. The method achieved a frame rate of 481 Hz at a 100% field of view, 64 line densities and an imaging depth of 11 cm. The composite full-view images were reconstructed by retrospectively combining seven small-sector RF frames using the ECG-gating technique. The axial displacements of both long-axis and short-axis views of a human left ventricle and a long-axis view of the abdominal aorta were calculated using an RF based speckle-tracking technique comprising ID cross-correlation methods in a 2D search (window size of 6.9 mm and overlap of 80%). Several sequences of electromechanical waves propagating in a left ventricular long-axis and short-axis view, and long-axis view of abdominal aorta were imaged at high frame rates. Currently, the method was implemented on an Ultrasonix RP system (Ultrasonix Medical Corp. Richmond, Canada) and could be potentially implemented on other clinical systems.
Keywords
biological tissues; biomedical ultrasonics; data acquisition; electrocardiography; strain measurement; ultrasonic imaging; Ultrasonix RP system; abdominal aorta; cardiovascular tissues; cardiovascular ultrasound; composite imaging technique; data acquisition; elasticity imaging; electrocardiogram gating; electromechanical wave propagation; frame rate; speckle tracking; strain estimation; Abdomen; Biomedical imaging; Capacitive sensors; Cardiology; Data acquisition; Elasticity; Electrocardiography; Radio frequency; Standards development; 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.2007.225
Filename
4409798
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