DocumentCode :
2772184
Title :
Design of a miniature in-vivo shock wave hydrophone
Author :
Schafer, Mark E. ; Kraynak, Timothy L. ; Lewin, Peter A.
Author_Institution :
Sonic Technol., Horsham, PA, USA
fYear :
1990
fDate :
4-7 Dec 1990
Firstpage :
1623
Abstract :
The authors discuss the development of a miniature precision acoustic sensor (hydrophone) which would survive in an in-vivo shock-wave field. The immediate application of the device is in improving the safety and efficacy of extracorporeal shock-wave lithotripsy (ESWL) treatment of kidney and gallbladder stones. The hydrophone is designed for insertion into the body using a catheter or biopsy needle, to provide reliable in-vivo acoustic pressure measurements of the ESWL. The research efforts include, (1) theoretical modeling to examine design trade-offs associated with material choice and sensor configuration; (2) prototype construction; and (3) acoustical performance characterization. The results of prototype testing are shown and compared to existing hydrophone designs. Performance differences involve bandwidth, directivity, and survivability under shock-wave exposure. The fundamental difficulty is improving survivability without sacrificing bandwidth or signal fidelity
Keywords :
biomedical equipment; biomedical ultrasonics; hydrophones; ultrasonic equipment; acoustical performance characterization; bandwidth; biopsy needle; catheter; design trade-offs; directivity; extracorporeal shock-wave lithotripsy; gallbladder stones; kidney stones treatment; material choice; medical instrumentation; miniature in-vivo shock wave hydrophone; precision acoustic sensor; prototype construction; safety; sensor configuration; signal fidelity; survivability; theoretical modeling; therapeutic ultrasound; Acoustic sensors; Bandwidth; Biopsy; Catheters; Lithotripsy; Needles; Prototypes; Safety devices; Shock waves; Sonar equipment;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Ultrasonics Symposium, 1990. Proceedings., IEEE 1990
Conference_Location :
Honolulu, HI
Type :
conf
DOI :
10.1109/ULTSYM.1990.171643
Filename :
171643
Link To Document :
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