High-speed ultrasound volumetric imaging system. I. Transducer design and beam steering
- 1 March 1991
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control
- Vol. 38 (2) , 100-108
- https://doi.org/10.1109/58.68466
Abstract
Transducer design and phased array beam steering are developed for a volumetric ultrasound scanner that enables the 3-D visualization of dynamic structures in real time. The authors describe the design considerations and preliminary evaluation of a high-speed, online volumetric ultrasound imaging system that uses the principles of pulse-echo, phased array scanning with a 2-D array transducer. Several 2-D array designs are analyzed for resolution and main lobe-side lobe ratio by simulation using 2-D fast Fourier transform methods. Fabrication techniques are described for 2-D array transducer. Experimental measurements of pulse-echo point spread responses for 2-D arrays agree with the simulations. Measurements of pulse-echo sensitivity, bandwidth, and crosstalk are included.<>Keywords
This publication has 21 references indexed in Scilit:
- Three-dimensional ultrasonic tissue characterization and imagingUltrasonic Imaging, 1989
- Three-dimensional ultrasound imaging of the female breast and human fetus in utero: Preliminary resultsUltrasonic Imaging, 1989
- Multidimensional ultrasonic imaging for cardiologyProceedings of the IEEE, 1988
- Real-time orthogonal mode scanning of the heart. I. System DesignJournal of the American College of Cardiology, 1986
- Hybrid linear and matrix acoustic arraysUltrasonics, 1981
- Dependence of the electromechanical coupling coefficient on the width-to-thickness ratio of plank-shaped piezoelectric transducers used for electronically scanned ultrasound diagnostic systemsThe Journal of the Acoustical Society of America, 1979
- Cardiac imaging using a phased array ultrasound system. I. System design.Circulation, 1976
- Optical Holographic Three-Dimensional UltrasonographyScience, 1975
- An improved three-dimensional display systemUltrasonics, 1974
- Application of Echo-Ranging Techniques to the Determination of Structure of Biological TissuesScience, 1952