DocumentCode :
1554083
Title :
Time-shift estimation and focusing through distributed aberration using multirow arrays
Author :
Lacefield, James C. ; Waag, Robert C.
Author_Institution :
Dept. of Electr. & Comput. Eng., Rochester Univ., NY, USA
Volume :
48
Issue :
6
fYear :
2001
Firstpage :
1606
Lastpage :
1624
Abstract :
The effects of element height on time-shift estimation and transmit focus compensation are demonstrated experimentally. Multirow ultrasonic transducer arrays were emulated by combining adjacent elements of a 3.0-MHz, 0.6-mm pitch, two-dimensional array to define larger virtual elements. Pulse-echo data were acquired through tissue-mimicking distributed aberrators, and time-shift maps estimated from those data were used for transmit focus compensation. Compensated beams formed by arrays with fine row pitches were similar, but focus restoration was significantly less effective for "1.75-D" arrays with a coarse row pitch. For example, when focus compensation was derived from strongly aberrated random scattering data [70-ns nominal rms arrival time fluctuation with 7 mm FWHM (full-width at half-maximum) correlation length], the mean -20 dB lateral beamwidths were 5.2 mm for f/2.0 arrays with 0.6- and 1.8-mm row pitches and 9.5 mm for an f /2.0 array with 5.4-mm pitch. Time-shift maps estimated from random scattering data acquired with 5.4-mm pitch arrays included large discontinuities caused by low correlation of signals received on vertically and diagonally adjacent emulated elements. The results indicate that multirow arrays designed for use with aberration correction should have element dimensions much less than 75% of the correlation length of the aberration and perhaps as small as 25 to 30% of the correlation length.
Keywords :
aberrations; biomedical transducers; biomedical ultrasonics; compensation; parameter estimation; ultrasonic focusing; ultrasonic imaging; ultrasonic transducer arrays; 0.6 to 9.5 mm; 3 MHz; aberration correction; correlation analysis; diagnostic applications; distributed aberration; element height; focus restoration; geometric focusing; multirow ultrasonic transducer arrays; pulse-echo data; time-shift estimation; tissue-mimicking distributed aberrators; transmit focus compensation; Acoustic distortion; Acoustic scattering; Costs; Fluctuations; Focusing; Image restoration; Phased arrays; Ultrasonic imaging; Ultrasonic transducer arrays; Ultrasonic transducers; Scattering, Radiation; Transducers; Ultrasonography;
fLanguage :
English
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-3010
Type :
jour
DOI :
10.1109/58.971712
Filename :
971712
Link To Document :
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