Development of Computational Model for Rabbit Eye and Its Application to Temperature Calculation for Near-Field Microwave Exposures
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概要
- 論文の詳細を見る
This paper deveplops a computational model for calculating the temperature increase in a rabbit eye for microwave exposures. A rabbit phantom is comprised of 12 tissues (including 7 eye tissues) with the resolution of 1 mm. Thermal constants of the rabbit are derived by comparing measured and calculated temperatures. For intense microwave exposed to the rabbit eye, time course of calculated and measured temperatures is in good agreement. In particular, our attention is paid to the effect of anesthesia on the temperature increases in the eye. Comparison between measured and computed results suggests the reduction of blood flow around the eye due to the application of anesthesia, leading to enhanced temperature increase.
- 社団法人電子情報通信学会の論文
- 2004-12-03
著者
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Kojima Masami
Department Of Ophthalmology Kanazawa Medical University
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Kojima Masami
金沢医科大学 眼科学
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Kojima Masami
Kanazawa Medical University
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Watanabe Soichi
NICT
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TAKI Masao
Department of Electrical Engineering, Graduate School of Engineering, Tokyo Metropolitan University
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SASAKI Kazuyuki
Department of Ophthalmology, Kanazawa Medical University
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WATANABE Soichi
National Institute of Information and Communications Technology
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Kojima Masami
Depart Of Information And Communication Engineering Tohoku Institute Of Technology
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Hirata A
Department Of Communications Engineering Osaka University
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Hirata A
Osaka Univ. Suita‐shi Jpn
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Hirata Akimasa
Department Of Computer Science And Engineering Nagoya Institute Of Technology
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Shiozawa Toshiyuki
Department of Communication Engineering, Osaka University
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Sasaki Kazuyuki
Visual Science Course Department Of Rehabilitation Tohoku Bunka Gakuen University
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Sasaki Kazuyuki
Department Of Ophthalmology Kanazawa Medical University
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Watanabe So-ichi
Department of Communications Engineering, Osaka University
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Hata Ikuho
Department of Communications Engineering, Osaka University
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Wake Kanako
Department of Communications Engineering, Osaka University
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Yamanaka Yukio
Department of Communications Engineering, Osaka University
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Hata Ikuho
Division Of Vision Research For Environmental Health Medical Research Institute Kanazawa Medical Uni
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Shiozawa Toshiyuki
Chubu University
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Shiozawa Toshiyuki
Department Of Communication Engineering Graduate School Of Engineering
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Kojima Masami
金沢医科大学 感覚機能病態学眼科学教室
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Taki M
Department Of Electrical Engineering Tokyo Metropolitan University
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Hirata Akimasa
Nagoya Inst. Technol. Nagoya
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Hirata Akimasa
Department Of Communication Engineering Graduate School Of Engineering Osaka University
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Wake Kanako
Department Of Communications Engineering Osaka University
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Taki Masao
Department Of Electrical Engineering Graduate School Of Engineering Tokyo Metropolitan University
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Taki Masao
Department Of Electrical Engineering Tokyo Metropolitan University
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Taki Masao
Department Of Electric Engineering Faculty Of Engineering Tokyo Met. Univ.
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Yamanaka Yukio
Department Of Communications Engineering Osaka University
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Sasaki Kazuyuki
Department Of Applied Chemistry Faculty Of Engineering Kogakuin Univ.
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Shiozawa Toshiyuki
Department of Communications Engineering, Osaka University
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Sasaki Kazuyuki
Department of Communications Engineering, Osaka University
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Kojima Masami
Department of Communications Engineering, Osaka University
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Taki Masao
Department of Communications Engineering, Osaka University
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