Wallace Jasmina, Yahia-Cherif Lydia, Gitton Christophe, Hugueville Laurent, Lemaréchal Jean-Didier, Selmaoui Brahim
Department of Experimental Toxicology and Modeling (TEAM), Institut National de l'Environnement Industriel et des Risques (INERIS), Verneuil-en-Halatte, France.
PériTox Laboratory, UMR-I 01 INERIS, Université de Picardie Jules Verne, Amiens, France.
Int J Radiat Biol. 2022;98(5):986-995. doi: 10.1080/09553002.2021.2009146. Epub 2021 Dec 6.
With the extensive use of mobile phone (MP), several studies have been realized to investigate the effects of radiofrequency electromagnetic fields (RF-EMF) exposure on brain activity at rest via electroencephalography (EEG), and the most consistent effect has been seen on the alpha band power spectral density (PSD). However, some studies reported an increase or a decrease of the PSD, while others showed no effect. It has been suggested that these differences might partly be due to a variability of the physiological state of the brain between subjects. So, the aim of this study was to investigate the alpha band modulation, exploring the impact of the alpha band frequency ranges applied in the PSD analysis.
Twenty-one healthy volunteers took part to the study with a double-blind, randomized and counterbalanced crossover design, during which eyes-open (EO) and eyes-closed (EC) resting-state EEG was recorded. The exposure system was a sham or a real GSM (global system for mobile) 900 MHz MP (pulse modulated at 217 Hz, mean power of 250 mW and 2 W peak, with a maximum specific absorption rate of 0.70 W/kg on 1 g tissue). The experimental protocol presented a baseline recording phase without MP exposure, an exposure phase during which the exposure system was placed against the left ear, and the post-exposure phase without MP. EEG data from baseline and exposure phases were analyzed and PSD was computed for the alpha band in the fixed range of 8-12 Hz and for the individual alpha band frequency range (IAF).
Results showed a trend in decrease or increase of EEG power of both alpha oscillations during exposure in relation to EC and EO recording conditions, respectively, but not reaching statistical significance. Findings did not provide evidence for a different sensitivity to RF-EMF MP related to individual variability in the frequency of the alpha band.
In conclusion, these results did not show alpha band activity modulation during resting-state under RF-EMF. It might be argued the need of a delay after the exposure in order to appreciate an EEG spectral power modulation related to RF-EMF exposure.
随着手机(MP)的广泛使用,已经开展了多项研究,通过脑电图(EEG)来探究射频电磁场(RF-EMF)暴露对静息状态下大脑活动的影响,其中最一致的影响体现在α波段功率谱密度(PSD)上。然而,一些研究报告PSD增加或减少,而其他研究则显示无影响。有人认为,这些差异可能部分归因于受试者大脑生理状态的变异性。因此,本研究的目的是探究α波段调制,探讨PSD分析中应用的α波段频率范围的影响。
21名健康志愿者参与了这项采用双盲、随机和平衡交叉设计的研究,在此期间记录了睁眼(EO)和闭眼(EC)静息状态下的脑电图。暴露系统为模拟或真实的全球移动通信系统(GSM)900兆赫手机(脉冲调制频率为217赫兹,平均功率为250毫瓦,峰值功率为2瓦,在1克组织上的最大比吸收率为0.70瓦/千克)。实验方案包括一个无手机暴露的基线记录阶段、一个将暴露系统置于左耳处的暴露阶段以及一个无手机的暴露后阶段。对基线和暴露阶段的脑电图数据进行分析,并计算8 - 12赫兹固定范围内以及个体α波段频率范围(IAF)的α波段PSD。
结果显示,在暴露期间,两种α振荡的脑电图功率相对于EC和EO记录条件分别呈现出下降或上升趋势,但未达到统计学显著性。研究结果未提供证据表明与α波段频率的个体变异性相关的对RF-EMF手机的不同敏感性。
总之,这些结果未显示在RF-EMF下静息状态期间α波段活动调制。可能有人认为需要在暴露后有一段延迟时间,以便观察到与RF-EMF暴露相关的脑电图频谱功率调制。