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Effect of extremely low frequency electromagnetic fields on the diameter of seminiferous tubules in mice

机译:极低频电磁场对小鼠生精小管直径的影响

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Electromagnetic field radiation has the potential to disrupt the reproductive system, especially spermatogenesis, because the more superficial position of the male testes compared with the female ovaries increases the chance of exposure. Therefore, this study aimed to determine the effect of extremely low frequency electromagnetic field exposure on the diameter of seminiferous tubules over 3 generations of Swiss Webster mice. Using an experimental study design, we exposed the mice to 3 different voltages and magnetic fields: 3 kV/10 cm with a magnetic field of 5.5 ìT; 4 kV/10 cm with a magnetic field of 5.4 ìT; and 5 kV/10 cm with a magnetic field of 5.3 ìT. The data were analyzed using the Kruskal–Wallis or Mann–Whitney test, as appropriate, and significance was set at an α value of 0.05 with 95% confidence intervals. This study found a significant decrease in the diameter of the seminiferous tubules in the intervention group compared with the control group (p 0.05), and this decrease tended to be in direct proportion with increasing voltage and number of generations.
机译:电磁场辐射有可能破坏生殖系统,特别是精子发生,因为雄性睾丸比雌性卵巢更浅的位置增加了暴露的机会。因此,本研究旨在确定3代Swiss Webster小鼠中极低频电磁场暴露对生精小管直径的影响。通过实验研究设计,我们将小鼠暴露于3种不同的电压和磁场下:3 kV / 10 cm,磁场5.5ìT。 4 kV / 10 cm,磁场为5.4ìT;和5 kV / 10 cm,磁场为5.3ìT。酌情使用Kruskal-Wallis或Mann-Whitney检验对数据进行了分析,并将显着性设置为α值为0.05,置信区间为95%。这项研究发现,与对照组相比,干预组的生精小管直径明显减小(p <0.05),并且这种减小趋势与电压和世代数的增加成正比。

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