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/UPJV, INERIS, Verneuil en Halatte, France.
Exp Physiol. 2024 Dec;109(12):2122-2133. doi: 10.1113/EP092083. Epub 2024 Oct 15.
Following the global progressive deployment of 5G networks, considerable attention has focused on assessing their potential impact on human health. This study aims to investigate autonomous nervous system changes by exploring skin temperature and electrodermal activity (EDA) among 44 healthy young individuals of both sexes during and after exposure to 3.5 GHz antenna-emitted signals, with an electrical field intensity ranging from 1 to 2 V/m. The study employed a randomized, cross-over design with triple-blinding, encompassing both 'real' and 'sham' exposure sessions, separated by a maximum interval of 1 week. Each session comprised baseline, exposure and postexposure phases, resulting in the acquisition of seven runs. Each run initiated with a 150 s segment of EDA recordings stimulated by 10 repeated beeps. Subsequently, the collected data underwent continuous decomposition analysis, generating specific indicators assessed alongside standard metrics such as trough-to-peak measurements, global skin conductance and maximum positive peak deflection. Additionally, non-invasive, real-time skin temperature measurements were conducted to evaluate specific anatomical points (hand, head and neck). The study suggests that exposure to 3.5 GHz signals may potentially affect head and neck temperature, indicating a slight increase in this parameter. Furthermore, there was a minimal modulation of certain electrodermal metrics after the exposure, suggesting a potentially faster physiological response to auditory stimulation. However, while the results are significant, they remain within the normal physiological range and could be a consequence of an uncontrolled variable. Given the preliminary nature of this pilot study, further research is needed to confirm the effects of 5G exposure.
随着全球 5G 网络的逐步部署,人们对其对人类健康潜在影响的评估给予了极大关注。本研究旨在通过探究 44 名健康的年轻男女在暴露于 3.5GHz 天线发射信号期间和之后皮肤温度和皮肤电活动(EDA)的变化,来研究自主神经系统的变化。该研究采用随机、交叉设计,采用三重盲法,包括“真实”和“假”暴露期,间隔最长不超过 1 周。每个期包括基线、暴露和暴露后阶段,总共采集 7 个运行。每个运行都以 10 次重复哔哔声刺激的 150 秒 EDA 记录片段开始。随后,对采集的数据进行连续分解分析,生成与标准指标(如波谷到波峰测量、整体皮肤电导和最大正峰偏移)一起评估的特定指标。此外,还进行了非侵入性、实时皮肤温度测量,以评估特定解剖点(手、头和颈部)。研究表明,暴露于 3.5GHz 信号可能会潜在地影响头颈部温度,表明该参数略有增加。此外,暴露后某些皮肤电指标的调制最小,表明对听觉刺激可能存在更快的生理反应。然而,尽管结果显著,但它们仍处于正常生理范围内,可能是由于未控制变量的结果。鉴于这项初步研究的性质,需要进一步研究来确认 5G 暴露的影响。