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Sleep EEG alterations: effects of pulsed magnetic fields versus pulse-modulated radio frequency electromagnetic fields

机译:睡眠脑电图改变:脉冲磁场与脉冲调制射频电磁场的影响

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摘要

Studies have repeatedly shown that electroencephalographic power during sleep is enhanced in the spindle frequency range following radio frequency electromagnetic field exposures pulse-modulated with fundamental frequency components of 2, 8, 14 or 217 Hz and combinations of these. However, signals used in previous studies also had significant harmonic components above 20 Hz. The current study aimed: (i) to determine if modulation components above 20 Hz, in combination with radio frequency, are necessary to alter the electroencephalogram; and (ii) to test the demodulation hypothesis, if the same effects occur after magnetic field exposure with the same pulse sequence used in the pulse-modulated radio frequency exposure. In a randomized double-blind crossover design, 25 young healthy men were exposed at weekly intervals to three different conditions for 30 min before sleep. Cognitive tasks were also performed during exposure. The conditions were a 2-Hz pulse-modulated radio frequency field, a 2-Hz pulsed magnetic field, and sham. Radio frequency exposure increased electroencephalogram power in the spindle frequency range. Furthermore, delta and theta activity (non-rapid eye movement sleep), and alpha and delta activity (rapid eye movement sleep) were affected following both exposure conditions. No effect on sleep architecture and no clear impact of exposure on cognition was observed. These results demonstrate that both pulse-modulated radio frequency and pulsed magnetic fields affect brain physiology, and the presence of significant frequency components above 20 Hz are not fundamental for these effects to occur. Because responses were not identical for all exposures, the study does not support the hypothesis that effects of radio frequency exposure are based on demodulation of the signal only.
机译:研究反复表明,在以2、8、14或217 Hz的基频分量及其组合进行脉冲调制的射频电磁场暴露后,睡眠期间的脑电图功率会在主轴频率范围内增强。但是,先前研究中使用的信号在20 aboveHz以上也具有明显的谐波分量。当前的研究目标是:(i)确定是否有必要在20 Hz以上的调制分量与射频结合来改变脑电图; (ii)测试解调假设,如果磁场暴露在脉冲调制射频暴露中使用的相同脉冲序列后产生了相同的效果。在随机双盲交叉设计中,有25位年轻的健康男性每周一次在三种不同的条件下暴露30分钟,然后入睡。暴露过程中也执行了认知任务。条件是2 Hz脉冲调制射频场,2 Hz脉冲磁场和伪信号。射频暴露在心轴频率范围内增加了脑电图功率。此外,在两种暴露条件下,δ和θ活动(快速眼动睡眠)和α和δ活动(快速眼动睡眠)均受到影响。没有观察到对睡眠结构的影响,也没有观察到暴露对认知的明显影响。这些结果表明,脉冲调制的射频和脉冲磁场均会影响大脑生理,并且20 Hz以上的重要频率成分的存在并不是这些影响发生的基础。由于对于所有曝光响应都不相同,因此该研究不支持以下假设:射频曝光的影响仅基于信号的解调。

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