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The frequency-dependent effect of extremely low-frequency electromagnetic field and mechanical vibration at infrasound frequency on the growth, division and motility of Escherichia coli K-12

机译:次低频超低频电磁场和机械振动的频率依赖性效应对大肠杆菌K-12的生长,分裂和运动

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The aim of this work was to investigate the frequency-dependent effects of extremely low-frequency electromagnetic field (ELF-EMF) and mechanical vibration at infrasound frequency (MV at IS frequency or MV) on growth and development of Escherichia coli K-12, by using classical microbiological (counting colony forming units), isotopic, spectrophotometric and electronmicro-scopic methods. The frequency-dependent effects of MV and ELF-EMF were shown that they could either stimulate or inhibit the growth and the division of microbes depending on the periods following exposure. However, the mechanism through which the MV and ELF-EMF effects affect the bacteria cell is not clear yet. It was suggested that the aqua medium could serve a target through which the biological effect of MV and ELF-EMF on microbes could be realized. To check this hypothesis, the frequency-dependent effects (2, 4, 6, 8, 10 Hz) of both MV and ELF-EMF on the bacterial growth, division and their motility in cases of exposure, the preliminary treated microbes-free medium and microbes containing medium were studied. Both MV and ELF-EMF effect on microbes have frequency and post-exposure period duration-dependent characters. The [~3H]-thymidine involving experiments shown that EMF at 4 Hz exposure has pronounced stimulation effect on cell proliferation while 4 Hz MV has inhibition effect. But at 8-10 Hz, the both EMF and MV have inhibitory effects on cell proliferation. It is suggested that 4 and 8 Hz EMF have different biological effects on microbes.
机译:这项工作的目的是研究极低频电磁场(ELF-EMF)和次声频率下的机械振动(IS频率下的MV或MV)对大肠杆菌K-12生长发育的频率依赖性影响,通过使用经典的微生物学(计算菌落形成单位),同位素,分光光度法和电子显微镜方法。 MV和ELF-EMF的频率依赖性效应表明,根据暴露后的时间,它们可以刺激或抑制微生物的生长和分裂。但是,MV和ELF-EMF效应影响细菌细胞的机制尚不清楚。有人提出,水介质可以作为目标,通过该目标可以实现MV和ELF-EMF对微生物的生物学作用。为了检验这一假设,在暴露,使用经过初步处理的无微生物培养基的情况下,MV和ELF-EMF的频率依赖性效应(2、4、6、8、10 Hz)对细菌的生长,分裂及其运动性有影响对含微生物的培养基进行了研究。 MV和ELF-EMF对微生物的影响均具有频率和暴露后持续时间相关的特征。 [〜3H]-胸腺嘧啶核苷的实验表明,暴露于4 Hz的EMF对细胞增殖具有明显的刺激作用,而4 Hz MV具有抑制作用。但是在8-10 Hz时,EMF和MV对细胞增殖均具有抑制作用。建议4和8 Hz电动势对微生物具有不同的生物学效应。

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