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描述自由活动的 C57BL/6 小鼠对 1.95GHz 全身射频电磁场的核心体温反应。

Characterising core body temperature response of free-moving C57BL/6 mice to 1.95 GHz whole-body radiofrequency-electromagnetic fields.

机构信息

School of Medical, Indigenous and Health Sciences, Molecular Horizons, University of Wollongong, Wollongong, Australia.

Wollongong Bioelectromagnetics Laboratory, Wollongong, Australia.

出版信息

Bioelectromagnetics. 2024 Dec;45(8):387-398. doi: 10.1002/bem.22527. Epub 2024 Oct 14.

Abstract

The present study investigated the core body temperature (CBT) response of free-moving adult male and female C57BL/6 mice, during and following a 2-h exposure to 1.95 GHz RF-EMF within custom-built reverberation chambers, using temperature capsules implanted within the intraperitoneal cavity and data continuously logged and transmitted via radiotelemetry postexposure. Comparing RF-EMF exposures (WBA-SAR of 1.25, 2.5, 3.75, and 5 W/kg) to the sham-exposed condition, we identified a peak in CBT within the first 16 min of RF-EMF exposure (+0.15, +0.31, +0.24, +0.37°C at 1.25, 2.5, 3.75, and 5 W/kg respectively; statistically significant at WBA-SAR ≥ 2.5 W/kg only), which largely dissipated for the remainder of the exposure period. Immediately before the end of exposure, only the CBT of the 5 W/kg condition was statistically differentiable from sham. Based on our findings, it is apparent that mice are able to effectively compensate for the increased thermal load at RF-EMF strengths up to 5 W/kg. In addition, the elevated CBT at the end of the exposure period in the 5 W/kg condition was statistically significantly reduced compared to the sham condition immediately after RF-EMF exposure ceased. This would indicate that measures of CBT following the end of an RF-EMF exposure period may not reflect the actual change in the CBT of mice caused by RF-EMF exposure in mice.

摘要

本研究调查了自由活动的成年雄性和雌性 C57BL/6 小鼠在定制的混响室中暴露于 1.95GHz RF-EMF 2 小时期间和之后的核心体温(CBT)反应,使用植入腹腔内的温度胶囊和通过无线电遥测术在暴露后连续记录和传输的数据。将 RF-EMF 暴露(WBA-SAR 为 1.25、2.5、3.75 和 5 W/kg)与假暴露条件进行比较,我们在 RF-EMF 暴露的前 16 分钟内发现 CBT 峰值(分别为 1.25、2.5、3.75 和 5 W/kg 时为+0.15、+0.31、+0.24 和+0.37°C;仅在 WBA-SAR≥2.5 W/kg 时具有统计学意义),这在暴露期间的其余时间内基本消散。在暴露结束前,只有 5 W/kg 条件下的 CBT 与假暴露条件具有统计学差异。根据我们的发现,很明显,在 RF-EMF 强度高达 5 W/kg 的情况下,小鼠能够有效地补偿增加的热负荷。此外,与 RF-EMF 暴露停止后立即的假暴露条件相比,5 W/kg 条件下暴露结束时的 CBT 升高明显降低。这表明在 RF-EMF 暴露结束后测量 CBT 可能无法反映 RF-EMF 暴露引起的小鼠 CBT 的实际变化。

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