微波电磁辐射的生物效应:登记与防护方法

A. Dmitriev, A. Artamonov, D. Guryev, N. Smetanina, S. Rodneva, A. Tsishnatti, D. Molodtsova, Y. Fedotov
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引用次数: 0

摘要

现代电子、通信、高科技生产等技术的发展,使微波电磁辐射强度显著增加。本文讨论了登记(包括生物检测)和防止微波电磁辐射的问题。考虑微波电磁辐射强度的整体生物和仪器记录方法,并评估使用带无线电全息天线的无源多频重发射器发生器(商标EQVILUM)的保护方法。通过对γ - h2ax修复蛋白的聚焦,测定DNA (DS DNA)双链断裂的数量,并对人肺成纤维细胞(MRC5系)在屏蔽和不屏蔽频率为1200 MHz的微波电磁辐射下培养3小时后的增殖活性和克隆生成能力进行了评价。结果表明,在实验细胞中没有发现DS DNA水平的变化,然而,在没有遮挡的情况下,在其高增殖活性的背景下,观察到辐照细胞的克隆生成能力下降。观察到的细胞效应形成的机制尚不清楚,我们认为它们可能与受辐射细胞代谢的变化和电磁辐射(EMR)触发的某些细胞内机制有关。这项研究使人们有可能确定对微波电磁辐射的生物效应进行综合评估的有效方法以及对其进行防护的方法。薄膜微电路——一种带有无线电全息天线(EQVILUM商标)的无源多频再发射发生器的自主模块,在防护人造微波电磁辐射方面表现出了很高的效率,可以推荐作为一种额外的有效防护手段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biological effect of microwave electromagnetic radiation: methods of registration and protection
The development of modern electronics, communications, high-tech production and other technologies lead to a significant increase in the intensity of microwave electromagnetic radiation. This article discusses the problem of registration (including biological detection) and protection from microwave electromagnetic radiation. To consider the method of integral biological and instrumental recording of the intensity of microwave electromagnetic radiation and to evaluate the method of protection using a passive multifrequency re-emitter generator with a radio holographic antenna (trade mark EQVILUM). A series of experiments were carried out to determine the number of double-strand breaks in DNA (DS DNA) by the foci of γH2AX repair proteins, to assess proliferative activity and clonogenic ability after 3 hours of exposure to microwave electromagnetic radiation with a frequency radiation of 1200 MHz both with shielding and without it on a culture of human lung fibroblasts (MRC5 line). It is shown that no changes in the level of DS DNA were revealed in experimental cells, however, a decrease in the clonogenic ability of irradiated cells without shielding was observed against the background of their high proliferative activity. The mechanisms of the observed cellular effects formation are unclear and we suppose that they can be associated with both a change in the metabolism of irradiated cells and with the triggering of certain intracellular mechanisms initiated by electromagnetic radiation (EMR). This study made it possible to identify effective ways of integral assessment of the biological effects of microwave electromagnetic radiation as well as ways of protection against it. A film microcircuit – an autonomous module of a passive multi-frequency re-emitter generator with a radio holographic antenna (EQVILUM trademark) has shown its high efficiency in protection against man-made microwave electromagnetic radiation and can be recommended as an additional means of effective protection.
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