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首页> 外文期刊>Clinical neurophysiology >Mobile phone emission modulates event-related desynchronization of alpha rhythms and cognitive-motor performance in healthy humans
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Mobile phone emission modulates event-related desynchronization of alpha rhythms and cognitive-motor performance in healthy humans

机译:手机发射调节健康人的与事件相关的阿尔法节律失步和认知运动表现

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摘要

Objectives: It has been shown that electromagnetic fields of Global System for Mobile Communications phone (GSM-EMFs) affect human brain rhythms (Vecchio et al., 2007, 2010), but it is not yet clear whether these effects are related to alterations of cognitive functions. Methods: Eleven healthy adults underwent two electroencephalographic (EEG) sessions separated by 1 week, following a cross-over, placebo-controlled, double-blind paradigm. In both sessions, they performed a visual goo-go task before real exposure to GSM-EMFs or after a sham condition with no EMF exposure. In the GSM real session, temporal cortex was continuously exposed to GSM-EMFs for 45. min. In the sham session, the subjects were not aware that the EMFs had been switched off for the duration of the experiment. In the goo-go task, a central fixation stimulus was followed by a green (50% of probability) or red visual stimulus. Subjects had to press the mouse button after the green stimuli (go trials). With reference to a baseline period, power decrease of low- (about 8-10. Hz) and high-frequency (about 10-12. Hz) alpha rhythms indexed the cortical activity. Results: It was found less power decrease of widely distributed high-frequency alpha rhythms and faster reaction time to go stimuli in the post- than pre-exposure period of the GSM session. No effect was found in the sham session. Conclusions: These results suggest that the peak amplitude of alpha ERD and the reaction time to the go stimuli are modulated by the effect of the GSM-EMFs on the cortical activity. Significance: Exposure to GSM-EMFs for 45. min may enhance human cortical neural efficiency and simple cognitive-motor processes in healthy adults.
机译:目的:已经表明,全球移动通信电话系统(GSM-EMFs)的电磁场会影响人的大脑节律(Vecchio et al。,2007,2010),但目前尚不清楚这些影响是否与人类大脑节律有关。认知功能。方法:11名健康成人接受了两次脑电图(EEG)治疗,相隔1周,采用交叉,安慰剂对照,双盲范例。在这两次会议中,他们都在实际暴露于GSM-EMF之前或在没有EMF暴露的伪造条件之后执行了可视的执行/不执行任务。在GSM真实会话中,颞皮质连续暴露于GSM-EMF 45分钟。在假实验中,受试者不知道在实验过程中EMF已关闭。在执行/不执行任务中,中央注视刺激之后是绿色(概率为50%)或红色视觉刺激。在绿色刺激之后,受试者必须按下鼠标按钮(进行试验)。参照基线期,低(约8-10。Hz)和高频(约10-12。Hz)α节奏的功率下降指示了皮层活动。结果:发现与GSM会话的暴露前期相比,广泛分布的高频α节律的功率降低较小,并且对刺激产生反应的反应时间更快。在虚假会话中未发现任何影响。结论:这些结果表明,α-ERD的峰值幅度和对去刺激的反应时间受GSM-EMF对皮层活动的影响。启示:在健康成年人中,接触GSM-EMF 45分钟可能会增强人类皮质神经的效率和简单的认知运动过程。

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