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Computational verification of anesthesia effect on temperature variations in rabbit eyes exposed to 2.45 GHz microwave energy

✍ Scribed by Akimasa Hirata; Soichi Watanabe; Masami Kojima; Ikuho Hata; Kanako Wake; Masao Taki; Kazuyuki Sasaki; Osamu Fujiwara; Toshiyuki Shiozawa


Publisher
John Wiley and Sons
Year
2006
Tongue
English
Weight
466 KB
Volume
27
Category
Article
ISSN
0197-8462

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✦ Synopsis


Abstract

This paper computationally verifies the effect of anesthesia on temperature variations in the rabbit eye due to microwave energy. The main reason for this investigation is that our previous paper suggested a reduction in blood flow due to the administration of anesthesia, resulting in an overestimated temperature increase. However, no quantitative investigation has yet been conducted. The finite‐difference time‐domain (FDTD) method is used for calculating power absorption and temperature variation in rabbits. For this purpose, we used a computational rabbit phantom, which is comprised of 12 tissues (including 6 eye tissues) with a resolution of 1 mm. Thermal constants of the rabbit were derived by comparing measured and calculated temperatures. For intense microwave exposure to the rabbit eye, time courses of calculated and measured temperatures were in good agreement for cases both with and without the administration of anesthesia. The point to be stressed is that under anesthesia the thermoregulatory response was inactivated and blood flow and basal metabolism was reduced. Bioelectromagnetics 27:602–612, 2006. © 2006 Wiley‐Liss, Inc.


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