DocumentCode
3493349
Title
Comparison of phased array strategies for ultrasound surgery
Author
Wan, Hong ; VanBaren, Philip ; Ebbini, Emad ; Cain, Charles
Author_Institution
Bioeng. Program, Michigan Univ., Ann Arbor, MI, USA
Volume
2
fYear
1995
fDate
7-10 Nov 1995
Firstpage
1623
Abstract
The possibility of using phased array generated multiple-focus patterns to reduce the overall treatment time in ultrasound surgery while restraining prefocal heating was investigated by simulating the performance of different possible schemes, i.e., single-focus scans, multiple-focus scans, and simultaneous multiple focusing without scanning, when used to “ablate” a 10×10×10 mm 3 volume 100 mm deep. In all cases, forty-one foci were used to cover the treatment volume. Multiple-focus scans were arranged into nine groups which were scanned in a raster fashion, as with single-focus scans. Keeping the treatment time constant, the maximum intensities, maximum thermal doses, dose distributions and prefocal heating zones for the different schemes were compared. It was found that the non-scanned simultaneous multiple-focus case required the smallest maximum intensity and dose, and resulted in the most even dose distribution. Single-focus raster scanning of individual lesions, as currently used with fixed-focus transducer, gave the worst results. These results show that multiple-focus patterns help considerably in reducing the maximum intensity and dose, and in generating a more even dose distribution assuming the same treatment time and prefocal heating. Alternatively they can be used to significantly reduce treatment time while keeping the maximum intensity and prefocal heating below predetermined limits
Keywords
biomedical ultrasonics; radiation therapy; surgery; 100 mm; even dose distribution; individual lesions; maximum intensity; multiple-focus patterns; overall treatment time reduction; phased array strategies; prefocal heating; single-focus raster scanning; single-focus scans; therapeutic US; ultrasound surgery; Biomedical engineering; Computer science; Cooling; Heat engines; Heat treatment; Lesions; Phased arrays; Power generation; Surgery; Ultrasonic imaging;
fLanguage
English
Publisher
ieee
Conference_Titel
Ultrasonics Symposium, 1995. Proceedings., 1995 IEEE
Conference_Location
Seattle, WA
ISSN
1051-0117
Print_ISBN
0-7803-2940-6
Type
conf
DOI
10.1109/ULTSYM.1995.495866
Filename
495866
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