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In-vivo study on the harmful effect of the extremely low frequency unipolar pulsating magnetic field in mice.

机译:极低频单极脉动磁场对小鼠的有害作用的体内研究。

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摘要

We studied the biological effect of a magnetic field on murine brain and kidney. Magnetic field we used was generated by Magno-DR apparatus (Hanil Co., Korea) which produced a high density unipolar square pulsating magnetic field, about 0.3 approximately 0.5 Tesla at 7 Hertz. Animals were placed in the chamber of the machine for various times from 4 hours to 24 hours. Histological sections of brain and kidney were made after perfusion fixation with paraformaldehyde. The light microscopic examination showed eosinophilic change of cytoplasm and positive immunohistochemical reaction to amyloid precursor protein in the neurons of the cerebral cortex. However, the thalamus and brain stem were less affected. The changes in the brain was seen in the mouse exposed more than 12 hours. The renal tubular epithelium showed degenerated tubules scattered in cortical area but little change was noted in glomeruli in the cortex and collecting tubules in the medulla. Immunohistochemistry of the kidney showed weakly positive reaction for the amyloid precursor protein in the distal tubular epithelium after 4 hours of exposure. These data suggest that strong pulsating magnetic fields could induce deleterious effect on the murine brain tissue and renal cortical tubules.
机译:我们研究了磁场对鼠脑和肾脏的生物学作用。我们使用的磁场是由Magno-DR仪器(韩国,Hanil公司)产生的,该仪器在7赫兹时产生了高密度单极方脉动磁场,大约0.3到0.5特斯拉。从4小时到24小时,将动物放置在机器的腔室中不同的时间。用低聚甲醛灌注固定后,进行脑和肾脏的组织学切片。光学显微镜检查显示,胞浆的嗜酸性改变和对大脑皮层神经元中淀粉样蛋白前体蛋白的阳性免疫组织化学反应。但是,丘脑和脑干受到的影响较小。在暴露超过12小时的小鼠中可以看到大脑的变化。肾小管上皮显示退化的肾小管散布在皮质区域,但在皮质的肾小球和髓质中的收集肾小管未见变化。暴露4小时后,肾脏的免疫组织化学显示远端管状上皮中淀粉样前体蛋白的弱阳性反应。这些数据表明强的脉动磁场可能对鼠脑组织和肾皮质小管产生有害作用。

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