DocumentCode
2034463
Title
Shaping and resizing of multifed slot radiators used in conformal microwave antenna arrays for hyperthermia treatment of large superficial diseases
Author
Maccarini, Paolo F. ; Arunachalam, Kavitha ; Juang, Titania ; De Luca, Valeria ; Rangarao, Sneha ; Neumann, Daniel ; Martins, Carlos Daniel ; Craciunescu, Oana ; Stauffer, Paul R.
Author_Institution
Dept. of Radiat. Oncology, Duke Univ., Durham, NC, USA
fYear
2009
fDate
14-18 Sept. 2009
Firstpage
746
Lastpage
749
Abstract
It has been recently shown that chestwall recurrence of breast cancer and many other superficial diseases can be successfully treated with the combination of radiation, chemotherapy and hyperthermia. Conformal microwave antenna array for hyperthermia treatment of large area superficial diseases can significantly increase patient comfort while at the same time facilitate treatment of larger and more irregularly shaped disease. A large number of small efficient antennas is preferable for improved control of heating, as the disease can be more accurately contoured and the lower power requirement correlates with system reliability, linearity and reduced cost. Thus, starting from the initially proposed square slot antennas, we investigated new designs for multi-fed slot antennas of several shapes that maximize slot perimeter while reducing radiating area, thus increasing antenna efficiency. Simulations were performed with commercial electromagnetic simulation software packages (Ansoft HFSS) to demonstrate that the antenna size reduction method is effective for several dual concentric conductor (DCC) aperture shapes and operating frequencies. The theoretical simulations allowed the development of a set of design rules for multi-fed DCC slot antennas that facilitate conformal heat treatments of irregular size and shape disease with large multi-element arrays. Independently on the shape, it is shown that the perimeter of 10 cm at 915 MHz delivers optimal radiation pattern and efficiency. While the maximum radiation is obtained for a circular pattern the rectangular shape is the one that feels more efficiently the array space.
Keywords
antenna radiation patterns; cancer; hyperthermia; microwave antenna arrays; microwave heating; radiation therapy; Ansoft HFSS; antenna efficiency; antenna operating frequency; antenna radiating area; antenna radiation pattern; antenna slot perimeter; breast cancer chestwall recurrence; chemotherapy; conformal microwave antenna arrays; dual concentric conductor aperture shape; electromagnetic simulation software package; frequency 915 MHz; hyperthermia treatment; large superficial disease; microwave heating control; multifed slot antenna design; multifed slot radiator; radiation therapy; size 10 cm; Breast cancer; Control systems; Diseases; Electromagnetic heating; Hyperthermia; Medical treatment; Microwave antenna arrays; Shape; Slot antennas; Temperature control;
fLanguage
English
Publisher
ieee
Conference_Titel
Electromagnetics in Advanced Applications, 2009. ICEAA '09. International Conference on
Conference_Location
Torino
Print_ISBN
978-1-4244-3385-8
Electronic_ISBN
978-1-4244-3386-5
Type
conf
DOI
10.1109/ICEAA.2009.5297299
Filename
5297299
Link To Document