Feasibility of ultrasound hyperthermia with waveguide interstitial applicator

被引:20
作者
Jarosz, BJ
机构
[1] Ottawa-Carleton Institute for Physics, Department of Physics, Carleton University, Ottawa K1S 5B6
关键词
D O I
10.1109/10.541252
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Interstitial and intracavitary ultrasonic hyperthermia applicators facilitate well-controlled power deposition in tissues, In this paper, analysis of temperature elevation and experimental results in tissue phantom, animal tissue in vivo and animal tissue in vitro are presented for a waveguide applicator intended for treatment of brain tumors, It consisted of a G18 hypodermic needle attached via a conical velocity transformer to a 12.7-mm-diameter piezoelectric disk operated at 1.0 MHz. The axial acoustic pressure distribution had a standing-wave pattern with the four cycles/cm spatial periodicity, This periodicity was absent in the temperature distribution in tissue phantoms. The simulations based on a solution to the effective heat conductivity equation indicated that the hyperthermic range can be reached within a 4- and a IO-mm radius around the applicator for a 21- and a 60-mm sample diameters, respectively, with reasonable input power. The first number corresponded closely to the 5-mm radius observed in porcine brain in vivo and the second one came close to the 9-mm radius in porcine brain in vitro, The presented results demonstrate the potential of the ultrasound waveguide interstitial applicator for hyperthermia of small volume tumors.
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页码:1106 / 1115
页数:10
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