首页> 外文期刊>Bioelectromagnetics. >Multigenerational effects of whole body exposure to 2.14 GHz W-CDMA cellular phone signals on brain function in rats
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Multigenerational effects of whole body exposure to 2.14 GHz W-CDMA cellular phone signals on brain function in rats

机译:大鼠脑功能对2.14GHz W-CDMA细胞电话信号的全身暴露的多血效应

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摘要

The present experimental study was carried out with rats to evaluate the effects of whole body exposure to 2.14 GHz band code division multiple access (W-CDMA) signals for 20 h a day, over three generations. The average specific absorption rate (SAR, in unit of W/kg) for dams was designed at three levels: high (0.24 W/kg), low (0.08 W/kg), and 0 (sham exposure). Pregnant mothers (4 rats/group) were exposed from gestational day (GD) 7 to weaning and then their offspring (F1 generation, 4 males and 4 females/dam, respectively) were continuously exposed until 6 weeks of age. The F1 females were mated with F1 males at 11 weeks old, and then starting from GD 7, they were exposed continuously to the electromagnetic field (EMF; one half of the F1 offspring was used for mating, that is, two of each sex per dam and 8 males and 8 females/group, except for all offspring for the functional development tests). This protocol was repeated in the same manner on pregnant F2 females and F3 pups; the latter were killed at 10 weeks of age. No abnormalities were observed in the mother rats (F0, F1, and F2) and in the offspring (F1, F2, and F3) in any biological parameters, including neurobehavioral function. Thus, it was concluded that under the experimental conditions applied, multigenerational whole body exposure to 2.14 GHz W-CDMA signals for 20 h/day did not cause any adverse effects on the F1, F2, and F3 offspring. Bioelectromagnetics 35:497-511, 2014.
机译:本实验研究与大鼠进行了大鼠,以评估全身暴露于2.14GHz带码分多次访问(W-CDMA)信号的影响20小时,超过三代。坝的平均特定吸收率(SAR为W / kg单位)在三个水平下设计:高(<0.24W / kg),低(<0.08W / kg)和0(假暴露)。怀孕的母亲(4只大鼠/组)从妊娠日(GD)7暴露于断奶,然后他们的后代(F1代,4个男性和4名女性/大坝)持续暴露在6周龄。 F1女性在11周龄,然后从GD 7开始,它们连续地暴露于电磁场(EMF; F1后代的一半用于交配,即每次中的两个大坝和8名男性和8个女性/小组,除了功能发展测试的所有后代)。在怀孕的F2女性和F3幼崽上以相同的方式重复该方案;后者在10周龄后杀死。在任何生物参数中,在任何生物参数中,在任何生物参数中,在任何生物参数中,在任何生物学参数中,在任何生物学参数中,没有观察到异常,包括神经表达功能。因此,得出结论,在应用的实验条件下,多粒整体暴露于2.14GHz W-CDMA信号20小时/天不会对F1,F2和F3后代产生任何不利影响。生物电磁学35:497-511,2014。

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  • 来源
    《Bioelectromagnetics.》 |2014年第7期|共15页
  • 作者单位

    Department of Experimental Pathology and Tumor Biology Graduate School of Medical Sciences Nagoya;

    DIMS Institute of Medical ScienceIchinomiya Aichi Japan;

    Department of Computer Science and Engineering Graduate School of Engineering Nagoya Institute of;

    Department of Experimental Pathology and Tumor Biology Graduate School of Medical Sciences Nagoya;

    DIMS Institute of Medical ScienceIchinomiya Aichi Japan;

    Electromagnetic Compatibility Group Applied Electromagnetic Research Center National Institute of;

    Electromagnetic Compatibility Group Applied Electromagnetic Research Center National Institute of;

    Electromagnetic Compatibility Group Applied Electromagnetic Research Center National Institute of;

    DIMS Institute of Medical ScienceIchinomiya Aichi Japan;

    Department of Computer Science and Engineering Graduate School of Engineering Nagoya Institute of;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物物理学;
  • 关键词

    Brain function; Electromagnetic field; Multigeneration; Rat; Whole-body exposure;

    机译:脑功能;电磁场;多粒;大鼠;全身曝光;

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