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Mobile Phone Chips Reduce Increases in EEG Brain Activity Induced by Mobile Phone-Emitted Electromagnetic Fields

机译:手机芯片减少了手机发出的电磁场引起的脑电图大脑活动的增加

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摘要

Recent neurophysiological studies indicate that exposure to electromagnetic fields (EMFs) generated by mobile phone radiation can exert effects on brain activity. One technical solution to reduce effects of EMFs in mobile phone use is provided in mobile phone chips that are applied to mobile phones or attached to their surfaces. To date, there are no systematical studies on the effects of mobile phone chip application on brain activity and the underlying neural mechanisms. The present study investigated whether mobile phone chips that are applied to mobile phones reduce effects of EMFs emitted by mobile phone radiation on electroencephalographic (EEG) brain activity in a laboratory study. Thirty participants volunteered in the present study. Experimental conditions (mobile phone chip, placebo chip, no chip) were set up in a randomized within-subjects design. Spontaneous EEG was recorded before and after mobile phone exposure for two 2-min sequences at resting conditions. During mobile phone exposure, spontaneous EEG was recorded for 30 min during resting conditions, and 5 min during performance of an attention test (d2-R). Results showed increased activity in the theta, alpha, beta and gamma bands during EMF exposure in the placebo and no chip conditions. Application of the mobile phone chip reduced effects of EMFs on EEG brain activity and attentional performance significantly. Attentional performance level was maintained regarding number of edited characters. Further, a dipole analysis revealed different underlying activation patterns in the chip condition compared to the placebo chip and no chip conditions. Finally, a correlational analysis for the EEG frequency bands and electromagnetic high-frequency (HF) emission showed significant correlations in the placebo chip and no chip condition for the theta, alpha, beta, and gamma bands. In the chip condition, a significant correlation of HF with the theta and alpha bands, but not with the beta and gamma bands was shown. We hypothesize that a reduction of EEG beta and gamma activation constitutes the key neural mechanism in mobile phone chip use that supports the brain to a degree in maintaining its natural activity and performance level during mobile phone use.
机译:最近的神经生理学研究表明,暴露于手机辐射产生的电磁场(EMF)会对大脑活动产生影响。应用于手机或附着在手机表面的手机芯片中提供了一种降低EMF在手机使用中影响的技术解决方案。迄今为止,还没有关于手机芯片应用对大脑活动和潜在神经机制的影响的系统研究。本研究在实验室研究中调查了应用于手机的手机芯片是否能降低手机辐射发射的EMF对脑电图(EEG)脑部活动的影响。 30名参与者自愿参加了本研究。实验条件(手机芯片,安慰剂芯片,无芯片)在受试者内部随机设计中设置。在静止条件下,在手机暴露前后两个2分钟的序列中记录自发性EEG。在手机暴露期间,在静息状态下记录自发性EEG 30分钟,在进行注意力测试(d2-R)期间记录5分钟。结果显示,在安慰剂的EMF暴露过程中,θ,α,β和γ谱带中的活性增加,且无芯片情况。手机芯片的应用大大降低了EMF对EEG脑活动和注意力表现的影响。关于已编辑字符的数量,保持了关注的性能水平。此外,偶极分析显示与安慰剂芯片相比,在芯片状态下没有潜在的激活模式,而没有芯片状态。最后,对EEG频段和电磁高频(HF)发射的相关分析表明,安慰剂芯片中存在显着的相关性,θ,α,β和gamma频段没有芯片条件。在芯片状态下,显示出HF与theta和alpha波段显着相关,而与β和gamma波段没有显着相关。我们假设,EEGβ和γ激活的减少构成了手机芯片使用中的关键神经机制,该机制在一定程度上支持大脑在手机使用过程中保持其自然活动和性能水平。

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