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首页> 外文期刊>Radiation Research: Official Organ of the Radiation Research Society >Biophysical mechanisms: A component in the weight of evidence for health effects of power-frequency electric and magnetic fields
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Biophysical mechanisms: A component in the weight of evidence for health effects of power-frequency electric and magnetic fields

机译:生物物理机制:证据证明功率频率电场和磁场对健康有影响

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摘要

Comparatively high exposures to power-frequency electric and magnetic fields produce established biological effects that are explained by accepted mechanisms and that form the basis of exposure guidelines. Lower exposures to magnetic fields (< 1 mu T average in the home) are classified as '' possibly carcinogenic '' on the basis of epidemiological studies of childhood leukemia. This classification takes into consideration largely negative laboratory data. Lack of biophysical mechanisms operating at such low levels also argues against causality. We survey around 20 biophysical mechanisms that have been pro- posed to explain effects at such low levels, with particular emphasis on plausibility: the principle that to produce biological effects, a mechanism must produce a '' signal '' larger than the '' noise '' that exists naturally. Some of the mechanisms are impossible, and some require specific conditions for which there is limited or no evidence as to their existence in a way that would make them relevant to human exposure. Others are predicted to become plausible above some level of field. We conclude that effects below 5 mu T are implausible. At about 50 mu T, no specific mechanism has been identified, but the basic problem of implausibility is removed. Above about 500 mu T, there are established or likely effects from accepted mechanisms. The absence of a plausible biophysical mechanism at lower fields cannot be taken as proof that health effects of environmental electric and magnetic fields are impossible. Nevertheless, it is a relevant consideration in assessing the overall evidence on these fields. (c) 2006 by Radiation Research Society.
机译:相对较高的工频电场和磁场暴露会产生确定的生物学效应,这可以通过公认的机理加以解释,并构成暴露准则的基础。根据儿童白血病的流行病学研究,较低的磁场暴露量(家庭平均<1μT)被归类为“可能致癌”。此分类主要考虑了负面的实验室数据。缺乏如此低水平的生物物理机制也反对因果关系。我们调查了大约20种生物物理机制,这些机制旨在解释这种低水平的效应,特别强调了合理性:产生生物效应的原理是,一种机制所产生的“信号”必须大于噪声。 ``自然存在。其中一些机制是不可能的,而某些则需要特定条件,对于这些条件而言,其存在或存在的证据有限或缺乏使其与人类接触有关的方式。预计在某些领域之上,其他方面似乎是合理的。我们得出结论,低于5亩T的影响是不可信的。在约50亩T时,尚未发现具体的机制,但消除了难以置信的基本问题。超过约500亩的吨,已经建立或可能受到公认机制的影响。在较低的场上缺乏合理的生物物理机制,不能作为证明环境电场和磁场对健康的影响是不可能的证据。然而,在评估这些领域的总体证据时,这是一个相关的考虑因素。 (c)辐射研究学会,2006年。

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