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Influence of Electric Magnetic and Electromagnetic Fields on the Circadian System: Current Stage of Knowledge

机译:电场磁场和电磁场对昼夜节律系统的影响:当前知识阶段

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摘要

One of the side effects of each electrical device work is the electromagnetic field generated near its workplace. All organisms, including humans, are exposed daily to the influence of different types of this field, characterized by various physical parameters. Therefore, it is important to accurately determine the effects of an electromagnetic field on the physiological and pathological processes occurring in cells, tissues, and organs. Numerous epidemiological and experimental data suggest that the extremely low frequency magnetic field generated by electrical transmission lines and electrically powered devices and the high frequencies electromagnetic radiation emitted by electronic devices have a potentially negative impact on the circadian system. On the other hand, several studies have found no influence of these fields on chronobiological parameters. According to the current state of knowledge, some previously proposed hypotheses, including one concerning the key role of melatonin secretion disruption in pathogenesis of electromagnetic field induced diseases, need to be revised. This paper reviews the data on the effect of electric, magnetic, and electromagnetic fields on melatonin and cortisol rhythms—two major markers of the circadian system as well as on sleep. It also provides the basic information about the nature, classification, parameters, and sources of these fields.
机译:每个电气设备工作的副作用之一是在其工作场所附近产生的电磁场。包括人类在内的所有生物每天都受到该领域不同类型的影响,这些影响具有各种物理参数。因此,重要的是准确确定电磁场对细胞,组织和器官中发生的生理和病理过程的影响。大量的流行病学和实验数据表明,电传输线和电动设备产生的极低频磁场以及电子设备发出的高频电磁辐射会对昼夜节律系统产生潜在的负面影响。另一方面,一些研究发现这些领域对年代生物学参数没有影响。根据目前的知识水平,一些先前提出的假设,包括有关褪黑激素分泌中断在电磁场诱发疾病的发病机理中的关键作用的假设,需要加以修改。本文回顾了有关电场,磁场和电磁场对褪黑激素和皮质醇节律的影响的数据,褪黑素和皮质醇节律是昼夜节律和睡眠的两个主要标志。它还提供有关这些字段的性质,分类,参数和来源的基本信息。

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