Heating Characteristics of Developed Rectangular Resonant Cavity Applicator for Non-contact Hyperthermia Treatments

Author:

ICHISHIMA YASUHITO1,SHINDO YASUHIRO2,ISEKI YUYA3,KATO KAZUO4

Affiliation:

1. Graduate School of Science Technology, Meiji University

2. Faculty of Science & Engineering, Toyo University

3. Department of Mechanical Engineering, Hachinohe National College of Technology

4. Department of Mechanical Engineering Informatics, Meiji University

Publisher

Japanese Society for Thermal Medicine

Reference13 articles.

1. 1) Matsuda J., Kato K., Saitoh Y.: The application of a re-entrant type resonant cavity application to deep and concentrated hyperthermia. Jpn Hyperthermia Oncol, 4: 111-118, 1988. (Japanese)

2. 2) Kato K., Yabuhara T., Wadamori N., Matsuda J.: Design and construction of resonant cavity applicator for deep tumor hyperthermia treatment without contact: Part 1: Analysis of temperature distribution by computer simulations. J Jpn Soc Des Eng, 39: 37-43, 2004. (Japanese)

3. 3) Kato K., Wadamori N., Matsuda J., Takahashi H., Uzuka T., Tanaka R.: Design and construction of resonant cavity applicator for deep tumor hyperthermia treatment without contact: Part 2: Experimental heating results of agar phantom using developed heating system. J Jpn Soc Des Eng, 39: 44-49, 2004. (Japanese)

4. 4) Kato K., Wadamori N., Matsuda J., Takahashi H., Uzuka T., Tanaka R.: Design and construction of resonant cavity applicator for deep tumor hyperthermia treatment without contact: Part 3: Experimental heating results of human shape agar phantom and animal using developed heating system. J Jpn Soc Des Eng, 39: 49-53, 2004. (Japanese)

5. 5) Shigihara T., Kato K., Yabuhara T., Kohara T., Uzuka T., Takahashi H., Tanaka R.: Improvement of the resonant cavity applicator for brain tumor hyperthermia -Computer simulation results-. Conf Proc IEEE Eng Med Biol Soc, 2005: 220-223, 2005.

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