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The bioeffects of extremely weak power-frequency alternating magnetic fields

机译:极弱的工频交变磁场的生物效应

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We report the results of a study of the influence of extremely-weak alternating magnetic fields (EW AMF) directed co-linearly to the static Earth's magnetic field on the rate of regeneration in planarians and also on the rate of gravitropic response in the stem segments of flax. In particular we obtained the data on the dependence of the value of bioeffects on the amplitude (at fixed 60 Hz—frequency) and on the frequency (at fixed 1.6 μT—amplitude) of the alternating component. Our data show unambiguously that EW AMF substantially affect the properties of the biosystems. The experimental data may be approximated by the theoretical expression following directly from a general formula, derived in the theory of magnetic parametric resonance. Our data indicate that the nuclear spins of hydrogen atoms serve as the primary targets for the action of the EW AMF on the biosystems. The values of bioeffects of combined magnetic fields with extremely weak alternating component are completely determined by the parameter γB_(AC)/f, where 'γ = 42.578 Hz/μT—gyromagnetic ratio of the nuclear spins of hydrogen atoms, and B_(AC) and f correspond to magnetic induction and frequency of the alternating magnetic component. The dependence of bioeffect's value on γB_(AC)/f—parameter is polyextremal: well expressed maxima are observed at γB_(AC)/f = 0.9,2.75 and minor maxima at γB_(AC)/f = 4.5,6.1. The bioeffects are absent at γB_(AC)/f = 1.8, 3.8, 5.3, 6.7. At the values of B_(AC) > 8--10μT the bioeffect changes its sign—activation of planarian's regeneration starts to be replaced by its inhibition. The inhibition takes place for the range of the amplitudes from 10 to 140 μT. The observed change in the sign of the effect may result to the prevalence of the effects caused by the induction of the alternating currents in the test-system at relatively high B_(AC)—amplitudes. These results provide the basis for planning of the epidemiological studies and interpretation of the corresponding results.
机译:我们报告的研究结果对共线指向静态地球磁场的极弱交变磁场(EW AMF)的影响对刨刀的再生速率以及对茎段的重力响应速率的影响亚麻特别是,我们获得了有关生物效应值对交替分量的振幅(在固定的60 Hz-频率处)和频率(在固定的1.6μT-振幅处)的依赖性的数据。我们的数据清楚地表明,EW AMF会严重影响生物系统的特性。可以直接根据从磁参量共振理论中推导的通式通过理论表达式来近似实验数据。我们的数据表明,氢原子的核自旋充当了EW AMF对生物系统作用的主要目标。交变极弱的组合磁场的生物效应值完全由参数γB_(AC)/ f确定,其中'γ= 42.578 Hz /μT-氢原子核自旋的旋磁比,B_(AC)和f对应于磁感应强度和交变磁性分量的频率。生物效应值对γB_(AC)/ f参数的依赖性是极值的:在γB_(AC)/ f = 0.9,2.75处观察到表达良好的最大值,在γB_(AC)/ f = 4.5,6.1处观察到较小的最大值。 γB_(AC)/ f = 1.8、3.8、5.3、6.7时没有生物效应。当B_(AC)>8--10μT时,生物效应改变其符号-涡虫再生的激活开始被其抑制作用所取代。抑制发生在10到140μT的幅度范围内。在相对较高的B_(AC)振幅下,观察到的效应迹象变化可能会导致由测试系统中的交流电感应引起的效应盛行。这些结果为计划流行病学研究和解释相应结果提供了基础。

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