Biological Correlates of Low-Level Electromagnetic-Field Exposure

J. Behari
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引用次数: 10

Abstract

Biological effects of electromagnetic-field exposure have been a subject of continuing concern for a number of reasons. The effects have been broadly divided into two parts: thermal and nonthermal, though the demarcation between the two is not well defined. Recently, a large amount of experimental data has accumulated, indicating a variety of biological effects much below the accepted criteria for safe exposure. The biological effects, which may or may not involve health implications, are many. This includes the blood-brain barrier, ornithidine decarboxylase, the role of Ca2+, melatonin, DNA strand breakage and free-radical formation. Some of these parameters are often implicated in tumour promotion. Propagation of the signal through plasma membrane has raised questions regarding the modality of its amplification. While a number of mechanisms have been proposed (e.g. stochastic resonance, cooperativism, etc.), they may be active separately or in unison to bring about the desired amplification and control the cellular function. The formulation for setting the criteria for safety standards then needs further scrutiny, particularly for health risks from microwave exposure from wireless communication. The role of other exposure parameters, such as frequency, modulation, polarization and intermittence of exposure, may also be considered. This then suggests the necessity to have a re-look at the concept of specific absorption rate (SAR) defining dosimetry and criteria for safety standards. The possibility of application of cross fields to restrict the formation of free radicals, and possibly cancer promotion, is also presented. Keywords: electromagnetic field; mobile phone; dosimetry; biomarkers; infertility; stochastic resonance; tumour promotion; DNA strand break; free-radical formation; calcium efflux
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低强度电磁场暴露的生物学相关性
由于种种原因,暴露在电磁场中的生物效应一直是人们持续关注的问题。这些效应大致分为两部分:热效应和非热效应,尽管两者之间的界限并没有很好地界定。近年来积累的大量实验数据表明,各种生物效应远低于公认的安全暴露标准。生物效应有很多,可能涉及也可能不涉及健康问题。这包括血脑屏障、鸟苷脱羧酶、Ca2+的作用、褪黑素、DNA链断裂和自由基的形成。其中一些参数通常与肿瘤促进有关。信号通过质膜的传播提出了有关其放大方式的问题。虽然已经提出了许多机制(如随机共振、合作主义等),但它们可能单独或一致地起作用,以实现所需的放大和控制细胞功能。因此,制定安全标准的标准需要进一步审查,特别是无线通信中微波暴露的健康风险。其他曝光参数的作用,如频率、调制、偏振和曝光间歇,也可以考虑。因此,这表明有必要重新审视确定剂量学和安全标准标准的特定吸收率的概念。还提出了应用交叉场来限制自由基的形成,并可能促进癌症的可能性。关键词:电磁场;移动电话;剂量测定法;生物标志物;不孕症;随机共振;肿瘤推广;DNA链断裂;自由基的形成;钙流出
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