Title :
Temperature response analysis based on pulse width irradiation of 2.45 GHz microwave hyperthermia
Author :
Santoso, Imam ; Widodo, Thomas Sri ; Susanto, Adhi ; Tjokronagoro, Maesadjie
Author_Institution :
Electr. Eng., Univ. of Gadjah Mada, Yogyakarta, Indonesia
Abstract :
This paper describes the temperature response analysis due to the heat effect as a result of microwave hyperthermia irradiation in biological medium for a finite duration time. Since we use the on and off irradiation method, realized by pulse width signal with certain duty cycle value, it is important to know whether the on heating duration can generate sufficient desired heat and the off duration decrease significantly. The bioheat transfer equation and its approximation can help us in analyzing the above relation. According to the analysis and real experiment, our proposed pulse width irradiation with 10s pulse period and its duty cycle variation values used in our 2.45 GHz microwave hyperthermia system can provide sufficient temperature increase during on duration and not significant decrease temperature during off duration, to get the required hyperthermia temperature response.
Keywords :
heat transfer; hyperthermia; medical signal processing; bioheat transfer equation; duty cycle value; duty cycle variation value; finite duration time; frequency 2.45 GHz; heat effect; microwave hyperthermia irradiation; microwave hyperthermia system; off heating duration; on heating duration; pulse width irradiation; pulse width signal; temperature response analysis; time 10 s; Electromagnetic heating; Microwave FET integrated circuits; Microwave integrated circuits; Temperature measurement; bioheat transfer equation; duty cycle; microwave hyperthermia; pulse width irradiation;
Conference_Titel :
Information Technology, Computer and Electrical Engineering (ICITACEE), 2014 1st International Conference on
Print_ISBN :
978-1-4799-6431-4
DOI :
10.1109/ICITACEE.2014.7065725