DocumentCode
1232296
Title
44-MHz LiNbO/sub 3/ transducers for UBM-guided Doppler ultrasound
Author
Aristizabal, Orlando ; Turnbull, Daniel H.
Author_Institution
Skirball Inst. of Biomolecular Medicine, New York Univ. Sch. of Medicine, NY, USA
Volume
50
Issue
6
fYear
2003
fDate
6/1/2003 12:00:00 AM
Firstpage
623
Lastpage
630
Abstract
In the post genome-sequencing era, physiological phenotyping of genetically engineered mice is critical to further our understanding of the functional consequences of specific genetic defects. We have developed a 40-50 MHz ultrasound biomicroscopy-(UBM) guided, pulsed Doppler system for the sensitive detection of in vivo blood velocity waveforms in the mouse embryonic cardiovascular system. Our approach uses separate transducers for simultaneous imaging and Doppler blood flow measurements. To this end, unfocused, air-backed lithium niobate (LiNbO/sub 3/) transducers provide sensitive Doppler detection and the flexibility of adjusting the axial position of the pulsed Doppler sample volume over many millimeters depth range of the collimated ultrasound beam. In this paper we describe the fabrication and characterization of the electromechanical and ultrasonic beam properties of 44-MHz LiNbO/sub 3/ Doppler transducers. We further demonstrate the utility of these Doppler transducers for interrogating blood vessels such as the dorsal aorta over a range of mouse embryonic stages and axial range-gate depths.
Keywords
Doppler measurement; acoustic microscopy; biomedical transducers; biomedical ultrasonics; blood flow measurement; lithium compounds; ultrasonic imaging; ultrasonic transducers; 44 MHz; Doppler blood flow measurements; LiNbO/sub 3/; LiNbO/sub 3/ transducers; UBM-guided Doppler ultrasound; US biomicroscopy guided pulsed Doppler system; US imaging; axial range-gate depths; collimated ultrasound beam; in vivo blood velocity waveforms; mouse embryonic cardiovascular system; sensitive Doppler detection; ultrasound biomicroscopy; unfocused air-backed transducers; Bioinformatics; Blood; Cardiovascular system; Embryo; Genetic engineering; Genomics; In vivo; Mice; Ultrasonic imaging; Ultrasonic transducers; Animals; Aorta; Blood Flow Velocity; Blood Vessels; Equipment Design; Equipment Failure Analysis; Female; Fetal Monitoring; Mice; Microscopy; Niobium; Oxides; Pregnancy; Transducers; Ultrasonography, Doppler, Pulsed; Ultrasonography, Prenatal;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/TUFFC.2003.1209549
Filename
1209549
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