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Life-Time Dosimetric Assessment for Mice and Rats Exposed in Reverberation Chambers of the 2-Year NTP Cancer Bioassay Study on Cell Phone Radiation

机译:两年期NTP癌症生物测定法对手机辐射的混响室中暴露的小鼠和大鼠的终生剂量学评估

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摘要

In this paper, we present the detailed life-time dosimetry analysis for rodents exposed in the reverberation exposure system designed for the two-year cancer bioassay study conducted by the National Toxicology Program of the National Institute of Environmental Health Sciences. The study required the well-controlled and characterized exposure of individually housed, unrestrained mice at 1900 MHz and rats at 900 MHz, frequencies chosen to give best uniformity exposure of organs and tissues. The wbSAR, the peak spatial SAR and the organ specific SAR as well as the uncertainty and variation due to the exposure environment, differences in the growth rates, and animal posture were assessed. Compared to the wbSAR, the average exposure of the high-water-content tissues (blood, heart, lung) were higher by ~4 dB, while the low-loss tissues (bone and fat) were less by ~9 dB. The maximum uncertainty over the exposure period for the SAR was estimated to be <49% (k=2) for the rodents whereas the relative uncertainty between the group was <14% (k=1). The instantaneous variation (averaged over 1 min) was <13% (k=1), which is small compared to other long term exposure research projects. These detailed dosimetric results empowers comparison with other studies and provides a reference for studies of long-term biological effects of exposure of rodents to RF energy.
机译:在本文中,我们提供了详细的生命周期剂量学分析,用于对由美国环境健康科学研究所的国家毒理学计划进行的为期两年的癌症生物测定研究设计的混响接触系统中的啮齿动物。这项研究要求对单独饲养的,不受约束的小鼠在1900 MHz和900 MHz下的老鼠进行良好控制和表征的暴露,选择这些频率以使器官和组织获得最佳的均匀暴露。评估了wbSAR,峰值空间SAR和器官特异性SAR以及由于暴露环境,生长速度差异和动物姿势引起的不确定性和变化。与wbSAR相比,高含水量组织(血液,心脏,肺)的平均暴露量高约4 dB,而低损耗组织(骨和脂肪)的平均暴露量低约9 dB。啮齿类动物在SAR暴露期间的最大不确定度估计为<49%(k = 2),而两组之间的相对不确定度为<14%(k = 1)。瞬时变化(平均超过1分钟)<13%(k = 1),与其他长期接触研究项目相比,这是很小的。这些详细的剂量学结果可与其他研究进行比较,并为啮齿动物暴露于RF能量的长期生物学效应研究提供参考。

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