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当每日地磁活动超过15 - 20纳特斯拉时,人类在短暂部分感觉剥夺期间的前庭体验会增强。

Vestibular experiences of humans during brief periods of partial sensory deprivation are enhanced when daily geomagnetic activity exceeds 15-20 nT.

作者信息

Persinger M A, Richards P M

机构信息

Department of Psychology, Laurentian University, Sudbury, Ontario, Canada.

出版信息

Neurosci Lett. 1995 Jul 14;194(1-2):69-72. doi: 10.1016/0304-3940(95)11729-g.

Abstract

The intensity of reported vestibular experiences by normal volunteers (n = 127, over a 4-year period) increased significantly in a step-like manner during partial sensory deprivation when the daily geomagnetic activity exceeded about 15 nT; the effect size was equivalent to a correlation of about 0.33. Post hoc analyses indicated that the geomagnetic activity during the 3-h period at the beginning of the previous sleep cycle was the single greatest contributor. The enhanced occurrences of experiences that are similar to those associated with complex partial epileptic seizures suggests that specific stimuli associated with geomagnetic activity above about 15 nT affects specific regions of the human brain; the vulnerability occurs during the subsequent 24 h. However, in non-epileptic individuals these experiences must be amplified neurocognitively by removing input from auditory and visual modalities.

摘要

正常志愿者(n = 127,历时4年)报告的前庭体验强度,在部分感觉剥夺期间,当日地磁活动超过约15纳特斯拉时,以阶梯状显著增加;效应大小相当于约0.33的相关性。事后分析表明,前一个睡眠周期开始时的3小时期间的地磁活动是最大的单一贡献因素。与复杂部分性癫痫发作相关的类似体验的发生率增加,表明与高于约15纳特斯拉的地磁活动相关的特定刺激会影响人类大脑的特定区域;易损性发生在随后的24小时内。然而,在非癫痫个体中,这些体验必须通过去除听觉和视觉模态的输入而在神经认知上得到放大。

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