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DNA 是电磁场中的分形天线。

DNA is a fractal antenna in electromagnetic fields.

机构信息

Department of Physiology, Columbia University, New York 10032, USA.

出版信息

Int J Radiat Biol. 2011 Apr;87(4):409-15. doi: 10.3109/09553002.2011.538130. Epub 2011 Feb 28.

Abstract

PURPOSE

To review the responses of deoxyribonucleic acid (DNA) to electromagnetic fields (EMF) in different frequency ranges, and characterise the properties of DNA as an antenna.

MATERIALS AND METHODS

We examined published reports of increased stress protein levels and DNA strand breaks due to EMF interactions, both of which are indicative of DNA damage. We also considered antenna properties such as electronic conduction within DNA and its compact structure in the nucleus.

RESULTS

EMF interactions with DNA are similar over a range of non-ionising frequencies, i.e., extremely low frequency (ELF) and radio frequency (RF) ranges. There are similar effects in the ionising range, but the reactions are more complex.

CONCLUSIONS

The wide frequency range of interaction with EMF is the functional characteristic of a fractal antenna, and DNA appears to possess the two structural characteristics of fractal antennas, electronic conduction and self symmetry. These properties contribute to greater reactivity of DNA with EMF in the environment, and the DNA damage could account for increases in cancer epidemiology, as well as variations in the rate of chemical evolution in early geologic history.

摘要

目的

回顾脱氧核糖核酸(DNA)在不同频率范围内对电磁场(EMF)的反应,并描述 DNA 作为天线的特性。

材料和方法

我们检查了由于 EMF 相互作用而导致的应激蛋白水平升高和 DNA 链断裂的已发表报告,这两者都表明 DNA 受损。我们还考虑了天线的特性,例如 DNA 内的电子传导及其在核内的紧凑结构。

结果

在非电离频率范围内(即极低频(ELF)和射频(RF)范围),EMF 与 DNA 的相互作用相似。在电离范围内也有类似的影响,但反应更为复杂。

结论

与 EMF 相互作用的宽频率范围是分形天线的功能特征,而 DNA 似乎具有分形天线的两个结构特征,即电子传导和自对称。这些特性导致 DNA 对环境中 EMF 的反应性增强,并且 DNA 损伤可能导致癌症流行病学的增加,以及早期地质历史中化学进化速度的变化。

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