DocumentCode
1138192
Title
Backscatter coefficient estimation using array transducers
Author
Insana, Michael F. ; Hall, Timothy J. ; Cook, Larry T.
Author_Institution
Dept. of Radiol., Kansas Univ. Med. Center, Kansas City, KS, USA
Volume
41
Issue
5
fYear
1994
Firstpage
714
Lastpage
723
Abstract
This paper describes an extension of our broadband method for estimating backscatter coefficients from random media to include data from array transducers. Four different transducer designs have now been considered: oneand two-dimensional linear arrays, annular arrays, and single-element focused pistons commonly used in mechanical sector scanners. The analysis shows that if the backscatter echo spectrum is properly normalized, the shape of the piezoelectric elements affects only the magnitude and not the frequency dependence of the backscatter coefficient estimates. Experimental data were acquired using laboratory and clinical imaging instrumentation to verify the analysis. We compared backscatter coefficients measured as a function of frequency from well-defined scattering media that were obtained using a 1-D linear array and focused piston transducers. Instrument-independent results were found that matched theoretical predictions within the measurement error between 2 and 12 MHz. We conclude from this study that accurate backscatter coefficient estimates may be easily obtained using current clinical imaging instrumentation.<>
Keywords
acoustic arrays; acoustic imaging; acoustic wave scattering; backscatter; biomedical ultrasonics; echo; piezoelectric transducers; ultrasonic scattering; ultrasonic transducers; 2 to 12 MHz; annular arrays; array transducers; backscatter coefficient; broadband method; clinical imaging instrumentation; echo spectrum; laboratory imaging instrumentation; mechanical sector scanner; one-dimensional linear arrays; piezoelectric elements; random media; scattering media; single-element focused pistons; two-dimensional linear arrays; Backscatter; Focusing; Frequency dependence; Frequency estimation; Instruments; Laboratories; Piezoelectric transducers; Pistons; Random media; Shape;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/58.308508
Filename
308508
Link To Document