DocumentCode :
2474272
Title :
10F-4 Self-Focused 1-3 Composite LiNbO3 Single Element Transducers for High Frequency HIFU Applications
Author :
Liu, Ruibin ; Hyung Ham Kim ; Cannata, Jonathan M. ; Chen, Gin-Shin ; Shung, K. Kirk
Author_Institution :
Univ. of Southern California, Los Angeles
fYear :
2007
fDate :
28-31 Oct. 2007
Firstpage :
949
Lastpage :
952
Abstract :
In this paper it is shown that LiNbO3 single crystal may be used as a piezoelectric material for high frequency high intensity focused ultrasound (HIFU) applications for its high Curie temperature and low dielectric constant and superior mechanical properties. Simulation results show that LiNbO3 with a 1-3 composite structure is suitable to make large aperture (diameter 22-24 mm) and high frequency (> 10 MHz) single element transducer with desired impedance and required sustainable driving voltage for the expected acoustic intensity in the focal zone. Prototype transducers with the diameter of 23 mm and a surface curvature designed for f#/l were designed and fabricated. The results are in good agreement with KLM model calculation. The measurement results show that center frequency is 10.5 MHz with the fractional bandwidth larger than 60%. The -6 dB lateral and the axial beam widths were measured by a needle hydrophone and they are 160 mum and 98 mum respectively, which are also in good agreement with theory (147 mum and 83 mum).
Keywords :
acoustic intensity; biomedical ultrasonics; lithium compounds; patient treatment; piezoelectric materials; ultrasonic focusing; ultrasonic transducers; 1-3 composite structure; Curie temperature; HIFU therapy; KLM model calculation; acoustic intensity; dielectric constant; high frequency HIFU applications; high frequency high intensity focused ultrasound applications; mechanical properties; needle hydrophone; piezoelectric material; self-focused composite single element transducers; size 160 mum; size 22 mm to 24 mm; size 98 mum; Acoustic transducers; Apertures; Dielectric constant; Frequency; Mechanical factors; Piezoelectric materials; Piezoelectric transducers; Temperature; Ultrasonic imaging; Ultrasonic transducers;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Ultrasonics Symposium, 2007. IEEE
Conference_Location :
New York, NY
ISSN :
1051-0117
Print_ISBN :
978-1-4244-1384-3
Electronic_ISBN :
1051-0117
Type :
conf
DOI :
10.1109/ULTSYM.2007.242
Filename :
4409815
Link To Document :
بازگشت