Department of Experimental Toxicology and Modeling (TEAM), Institut National de l'Environnement Industriel et des Risques (INERIS), Parc Technologique Alata, BP 2, 60550 Verneuil-en-Halatte, France.
PériTox Laboratory (UMR_I 01), INERIS/UPJV, INERIS, 60550 Verneuil en Halatte, France.
Int J Environ Res Public Health. 2023 Sep 21;20(18):6793. doi: 10.3390/ijerph20186793.
Following the recent deployment of fifth-generation (5G) radio frequencies, several questions about their health impacts have been raised. Due to the lack of experimental research on this subject, the current study aimed to investigate the bio-physiological effects of a generated 3.5 GHz frequency. For this purpose, the wake electroencephalograms (EEG) of 34 healthy volunteers were explored during two "real" and "sham" exposure sessions. The electromagnetic fields were antenna-emitted in an electrically shielded room and had an electrical field root-mean-square intensity of 2 V/m, corresponding to the current outdoor exposure levels. The sessions were a maximum of one week apart, and both contained an exposure period of approximately 26 min and were followed by a post-exposure period of 17 min. The power spectral densities (PSDs) of the beta, alpha, theta, and delta bands were then computed and corrected based on an EEG baseline period. This was acquired for 17 min before the subsequent phases were recorded under two separate conditions: eyes open (EO) and eyes closed (EC). A statistical analysis showed an overall non-significant change in the studied brain waves, except for a few electrodes in the alpha, theta, and delta spectra. This change was translated into an increase or decrease in the PSDs, in response to the EO and EC conditions. In conclusion, this studhy showed that 3.5 GHz exposure, within the regulatory levels and exposure parameters used in this protocol, did not affect brain activity in healthy young adults. Moreover, to our knowledge, this was the first laboratory-controlled human EEG study on 5G effects. It attempted to address society's current concern about the impact of 5G exposure on human health at environmental levels.
随着第五代(5G)无线电频率的最近部署,人们对其健康影响提出了一些疑问。由于缺乏对此主题的实验研究,本研究旨在调查产生的 3.5GHz 频率的生物生理效应。为此,在两个“真实”和“假”暴露过程中探索了 34 名健康志愿者的清醒脑电图(EEG)。电磁场通过电屏蔽室中的天线发射,电场均方根强度为 2V/m,相当于当前的室外暴露水平。两次实验的间隔最长不超过一周,并且都包含大约 26 分钟的暴露期和 17 分钟的暴露后观察期。然后计算了β、α、θ和δ频带的功率谱密度(PSD),并根据 EEG 基线期进行了校正。在记录后续阶段之前,先获取 17 分钟的 EEG 数据,这些阶段是在两种不同条件下记录的:睁眼(EO)和闭眼(EC)。统计分析显示,除了少数几个电极的α、θ和δ频谱外,研究中的脑电波总体上没有显著变化。这种变化表现为 PSD 的增加或减少,这是对 EO 和 EC 条件的响应。总之,本研究表明,在本实验方案中使用的监管水平和暴露参数下,3.5GHz 暴露不会影响健康年轻成年人的大脑活动。此外,据我们所知,这是首次针对 5G 效应的实验室控制人类 EEG 研究。它试图解决当前社会对环境水平下 5G 暴露对人类健康影响的担忧。