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905兆赫兹下受约束的射频暴露小鼠的反应、热调节阈值和热击穿阈值。

Response, thermal regulatory threshold and thermal breakdown threshold of restrained RF-exposed mice at 905 MHz.

作者信息

Ebert S, Eom S J, Schuderer J, Apostel U, Tillmann T, Dasenbrock C, Kuster N

机构信息

Swiss Federal Institute of Technology (ETH), Zurich, 8092 Zurich, Switzerland.

出版信息

Phys Med Biol. 2005 Nov 7;50(21):5203-15. doi: 10.1088/0031-9155/50/21/017. Epub 2005 Oct 19.

Abstract

The objective of this study was the determination of the thermal regulatory and the thermal breakdown thresholds for in-tube restrained B6C3F1 and NMRI mice exposed to radiofrequency electromagnetic fields at 905 MHz. Different levels of the whole-body averaged specific absorption rate (SAR = 0, 2, 5, 7.2, 10, 12.6 and 20 W kg(-1)) have been applied to the mice inside the 'Ferris Wheel' exposure setup at 22 +/- 2 degrees C and 30-70% humidity. The thermal responses were assessed by measurement of the rectal temperature prior, during and after the 2 h exposure session. For B6C3F1 mice, the thermal response was examined for three different weight groups (20 g, 24 g, 29 g), both genders and for pregnant mice. Additionally, NMRI mice with a weight of 36 g were investigated for an interstrain comparison. The thermal regulatory threshold of in-tube restrained mice was found at SAR levels between 2 W kg(-1) and 5 W kg(-1), whereas the breakdown of regulation was determined at 10.1 +/- 4.0 W kg(-1)(K = 2) for B6C3F1 mice and 7.7 +/- 1.6 W kg(-1)(K = 2) for NMRI mice. Based on a simplified power balance equation, the thresholds show a clear dependence upon the metabolic rate and weight. NMRI mice were more sensitive to thermal stress and respond at lower SAR values with regulation and breakdown. The presented data suggest that the thermal breakdown for in-tube restrained mice, whole-body exposed to radiofrequency fields, may occur at SAR levels of 6 W kg(-1)(K = 2) at laboratory conditions.

摘要

本研究的目的是确定在905兆赫射频电磁场中,管内束缚的B6C3F1和NMRI小鼠的热调节阈值和热崩溃阈值。在“摩天轮”暴露装置中,于22±2摄氏度、湿度30 - 70%的条件下,将不同水平的全身平均比吸收率(SAR = 0、2、5、7.2、10、12.6和20瓦/千克)施加于小鼠。通过在2小时暴露期间及暴露前后测量直肠温度来评估热反应。对于B6C3F1小鼠,针对三个不同体重组(20克、24克、29克)、雌雄两性以及怀孕小鼠检查热反应。此外,还研究了体重为36克的NMRI小鼠以进行种间比较。发现管内束缚小鼠的热调节阈值在SAR水平2瓦/千克至5瓦/千克之间,而B6C3F1小鼠在10.1±4.0瓦/千克(K = 2)时调节功能崩溃,NMRI小鼠在7.7±1.6瓦/千克(K = 2)时调节功能崩溃。基于简化的功率平衡方程,这些阈值明显依赖于代谢率和体重。NMRI小鼠对热应激更敏感,在较低的SAR值时就会出现调节和崩溃反应。所呈现的数据表明,在实验室条件下,全身暴露于射频场的管内束缚小鼠,其热崩溃可能发生在SAR水平6瓦/千克(K = 2)时。

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