Baranov A N, Kiselev V F, Rozanov V V, Saletskiĭ A M
Aviakosm Ekolog Med. 1995;29(6):45-9.
The effect of the weak variation magnetic fields on the model biological systems; i.e. the solution of dyes and proteins is investigated. The structural change of these systems under the action of the variation magnetic field of 156.4 Hz and the amplitude of 12.3 A/m was determined by the method of absorbtion and luminescent spectroscopy. It is suggested that this effect realizes through the hypothesis using the method of correlation spectroscopy of scattered light, there have been performed the studies of the structure of water and its changes at different temperatures; on dissolving of non-electrolytes and on exposure to the magnetic field of variable frequency. The accumulated data are indicative of changing the structure of water after the effect of resonance magnetic field. The influence of the weak magnetic fields on the structure of water is due to the clusters which are presented in water and controlled the optical heterogeneity of the medium. The cluster dimensions were evaluated.
研究了弱变化磁场对模型生物系统(即染料和蛋白质溶液)的影响。通过吸收光谱和发光光谱法确定了这些系统在156.4 Hz、振幅为12.3 A/m的变化磁场作用下的结构变化。有人提出,这种效应是通过利用散射光相关光谱法的假设来实现的,已经对不同温度下水的结构及其变化、非电解质的溶解以及暴露于变频磁场下进行了研究。积累的数据表明,共振磁场作用后水的结构发生了变化。弱磁场对水结构的影响归因于水中存在的团簇,这些团簇控制着介质的光学不均匀性。对团簇尺寸进行了评估。