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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Experimental simulation of the effects of sudden increases in geomagnetic activity upon quantitative measures of human brain activity: Validation of correlational studies
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Experimental simulation of the effects of sudden increases in geomagnetic activity upon quantitative measures of human brain activity: Validation of correlational studies

机译:地磁活动突然增加对人脑活动定量测量的影响的实验模拟:相关研究的验证

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摘要

Previous correlations between geomagnetic activity and quantitative changes in electroencephalographic power revealed particular associations with the right parietal lobe for theta activity and the right frontal region for gamma activity. In the present experiment subjects were exposed to either no field (sham conditions) or to either 20. nT or 70. nT, 7. Hz, amplitude modulated (mHz range) magnetic fields for 30. min. Quantitative electroencephalographic (QEEG) measurements were completed before, during, and after the field exposures. After about 10. min of exposure theta power over the right parietal region was enhanced for the 20. nT exposure but suppressed for the 70. nT exposure relative to sham field exposures. The effect dissipated by the end of the exposure. These results support the contention that magnetic field fluctuations were primarily responsible for the significant geomagnetic-QEEG correlations reported in several studies.
机译:地磁活动与脑电图功率定量变化之间的先前相关性揭示了与theta活动的右顶叶和γ活动的右额叶区域特别相关。在本实验中,受试者不暴露于任何磁场(假条件)或暴露于20. nT或70. nT,7 Hz,振幅调制(mHz范围)的磁场中30分钟。脑电图定量(QEEG)测量在野外暴露之前,期间和之后完成。暴露约10分钟后,相对于假田暴露,右顶壁区域的theta功率对于20 nT暴露有所增强,但对于70 nT暴露却受到抑制。曝光结束后,效果消失了。这些结果支持以下论点:磁场波动是造成几项研究报告的重要地磁与QEEG相关性的主要原因。

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