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环境光及其与生物分子相互作用的电磁共振的关系,如共振识别模型所预测的那样。

Environmental Light and Its Relationship with Electromagnetic Resonances of Biomolecular Interactions, as Predicted by the Resonant Recognition Model.

作者信息

Cosic Irena, Cosic Drasko, Lazar Katarina

机构信息

College of Science, Engineering and Health, RMIT University, La Trobe Street, Melbourne, Victoria 3000, Australia.

AMALNA Consulting, 46 Second St., Black Rock, Victoria 3193, Australia.

出版信息

Int J Environ Res Public Health. 2016 Jun 29;13(7):647. doi: 10.3390/ijerph13070647.

Abstract

The meaning and influence of light to biomolecular interactions, and consequently to health, has been analyzed using the Resonant Recognition Model (RRM). The RRM proposes that biological processes/interactions are based on electromagnetic resonances between interacting biomolecules at specific electromagnetic frequencies within the infra-red, visible and ultra-violet frequency ranges, where each interaction can be identified by the certain frequency critical for resonant activation of specific biological activities of proteins and DNA. We found that: (1) the various biological interactions could be grouped according to their resonant frequency into super families of these functions, enabling simpler analyses of these interactions and consequently analyses of influence of electromagnetic frequencies to health; (2) the RRM spectrum of all analyzed biological functions/interactions is the same as the spectrum of the sun light on the Earth, which is in accordance with fact that life is sustained by the sun light; (3) the water is transparent to RRM frequencies, enabling proteins and DNA to interact without loss of energy; (4) the spectrum of some artificial sources of light, as opposed to the sun light, do not cover the whole RRM spectrum, causing concerns for disturbance to some biological functions and consequently we speculate that it can influence health.

摘要

利用共振识别模型(RRM)分析了光对生物分子相互作用进而对健康的意义和影响。RRM提出,生物过程/相互作用基于红外、可见光和紫外频率范围内特定电磁频率下相互作用的生物分子之间的电磁共振,其中每种相互作用可通过对蛋白质和DNA特定生物活性的共振激活至关重要的特定频率来识别。我们发现:(1)各种生物相互作用可根据其共振频率分为这些功能的超家族,从而能够更简单地分析这些相互作用,并进而分析电磁频率对健康的影响;(2)所有分析的生物功能/相互作用的RRM光谱与地球上太阳光的光谱相同,这与生命由太阳光维持这一事实相符;(3)水对RRM频率是透明的,使蛋白质和DNA能够相互作用而不损失能量;(4)与太阳光相反,一些人造光源的光谱并未覆盖整个RRM光谱,这引发了对某些生物功能受到干扰的担忧,因此我们推测它可能会影响健康。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d246/4962188/9ae83e324e2d/ijerph-13-00647-g001.jpg

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