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研究 1.5GHz 和 2.856GHz 微波对 Wistar 大鼠认知功能的剂量依赖性、频率依赖性和累积效应。

Study on dose-dependent, frequency-dependent, and accumulative effects of 1.5 GHz and 2.856 GHz microwave on cognitive functions in Wistar rats.

机构信息

Department of Experimental Pathology, Beijing Institute of Radiation Medicine, Beijing, P. R. China.

Division of Radiation Protection and Health Physics, Beijing Institute of Radiation Medicine, Beijing, P. R. China.

出版信息

Sci Rep. 2017 Sep 7;7(1):10781. doi: 10.1038/s41598-017-11420-9.

Abstract

Many studies have revealed the cognitive decline induced by microwave radiation. However, the systematic study on dose-dependent, frequency-dependent and accumulative effects of microwave exposure at different frequencies was lacking. Here, we studied the relationship between the effects and the power and frequency of microwave and analyzed the accumulative effects of two different frequency microwaves with the same average power density. After microwave radiation, declines in spatial learning and memory and fluctuations of brain electric activities were found in the 10 mW/cm single frequency exposure groups and accumulative exposure groups. Meanwhile, morphological evidences in hippocampus also supported the cognitive dysfunction. Moreover, the decrease of Nissl contents in neurons indicated protein-based metabolic disorders in neurons. By detecting the key functional proteins of cholinergic transmitter metabolism, cytokines, energy metabolism and oxidative stress in the hippocampus, we found that microwave could lead to multiple metabolic disorders. Our results showed that microwave-induced cognitive decline was largely determined by its power rather than frequency. Injury effects were also found in accumulative exposure groups. We particularly concerned about the safety dose, injury effects and accumulative effects of microwaves, which might be very valuable in the future.

摘要

许多研究已经揭示了微波辐射引起的认知能力下降。然而,对于不同频率的微波暴露在剂量依赖性、频率依赖性和累积效应方面的系统研究还很缺乏。在这里,我们研究了微波的功率和频率与作用之间的关系,并分析了相同平均功率密度的两种不同频率微波的累积效应。微波辐射后,在 10mW/cm 的单一频率暴露组和累积暴露组中,空间学习和记忆能力下降,脑电活动波动。同时,海马区的形态学证据也支持认知功能障碍。此外,神经元中尼氏小体含量的减少表明神经元中的蛋白质代谢紊乱。通过检测海马中胆碱能递质代谢、细胞因子、能量代谢和氧化应激的关键功能蛋白,我们发现微波可导致多种代谢紊乱。我们的研究结果表明,微波引起的认知能力下降在很大程度上取决于其功率,而不是频率。在累积暴露组中也发现了损伤效应。我们特别关注微波的安全剂量、损伤效应和累积效应,这在未来可能是非常有价值的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/635d/5589914/ca8e39dc7dd6/41598_2017_11420_Fig1_HTML.jpg

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