DocumentCode
3558700
Title
Triple-beam lens transducers for three-dimensional ultrasonic fluid flow estimation
Author
Hein, Ilmar A.
Author_Institution
Bio-Imaging Res. Inc., Lincolnshire, IL, USA
Volume
42
Issue
5
fYear
1995
Firstpage
854
Lastpage
869
Abstract
This paper reports on estimating the 3-D flow velocity vector of blood with ultrasound triple-beam lens transducers. The design, construction, and characterization of experimental lens transducers is described along with the theory of 3-D flow velocity estimation. A triple beam lens transducer consists of three piezoelectric elements mounted on the top surface of a lens. The lens acts to direct and focus the ultrasound from the elements such that three parallel, closely spaced ultrasound beams are generated. Blood cell scatterers are tracked as they move along the beams and from beam to beam using RF correlation techniques. Lenses from fused quartz and aluminum have been designed and fabricated, and the characteristics of the lenses along with lens design considerations and tradeoffs are discussed. The three-dimensional flow velocity vector of fluid in a blood flow phantom has been experimentally measured with an aluminum lens, indicating that the accurate estimation of the 3-D blood flow velocity vector is possible.<>
Keywords
biomedical equipment; biomedical ultrasonics; blood flow measurement; lenses; piezoelectric transducers; ultrasonic focusing; ultrasonic scattering; ultrasonic transducer arrays; 3-D flow velocity vector; Al; RF correlation techniques; SiO/sub 2/; blood; blood cell scatterers; blood flow phantom; construction; design; fused quartz; parallel closely spaced ultrasound beams; piezoelectric elements; three-dimensional flow velocity vector; three-dimensional ultrasonic fluid flow estimation; top surface; triple-beam lens transducers; ultrasound triple-beam lens transducers; Aluminum; Blood flow; Cells (biology); Lenses; Optical design; Piezoelectric transducers; Scattering; Structural beams; Ultrasonic imaging; Ultrasonic transducers;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/58.464843
Filename
464843
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