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The Effects of Prenatal Exposure to a 900 Megahertz Electromagnetic Field on Hippocampus Morphology and Learning Behavior in Rat Pups

机译:产前暴露于900兆赫兹电磁场对大鼠幼仔海马形态和学习行为的影响

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The purpose of this study was to examine the effect on hippocampus morphology and learning behavior in rat pups following prenatal exposure to a 900 megahertz (MHz) electromagnetic field (EMF). Female Sprague Dawley rats weighing 180-250 g were left to mate with males. The following day, pregnant rats identified as such by the vaginal smear test were divided into two groups, control (n=3) and EMF (n=3). No procedures were performed on the control group. The rats in the EMF group were exposed to 900 MHz EMF on days 13 to 21 of pregnancy, for 1 h a day. Female rat pups were removed from their mothers at 22 days old. We then established two newborn rat groups, a 13 member control group and a 10 member EMF group. Radial arm maze and passive avoidance tests were used to measure rat pups’ learning and memory performance. All rats were decapitated on the postnatal 32nd day. Routine histological procedures were performed on the brain tissues, and sections were stained with Cresyl fast violet. The radial arm maze (p=0.007) and passive avoidance (p=0.032) tests were administered to both groups under identical conditions, and compromised learning behavior was determined in the EMF group rats. Morphological compromise was also determined in the EMF group sections. Our results show that the application of a 900 MHz EMF in the prenatal period adversely affected female pups’ learning behavior and also resulted in histopathological changes appearing in the hippocampus.NeuroQuantology | December 2013 | Volume 11 | Issue 4 | Page 582-590
机译:这项研究的目的是检查产前暴露于900兆赫兹(MHz)的电磁场(EMF)对大鼠幼崽海马形态和学习行为的影响。将重180-250g的雌性Sprague Dawley大鼠与雄性交配。第二天,将经阴道涂片检查鉴定为妊娠的大鼠分为两组,即对照组(n = 3)和EMF(n = 3)。对照组未进行任何手术。 EMF组的大鼠在怀孕的第13至21天每天暴露于900 MHz EMF中,每天1 h。在22天大时,将雌性幼崽从其母亲身上移除。然后,我们建立了两个新生大鼠组,一个有13个成员的对照组和一个有10个成员的EMF组。臂迷宫和被动回避测试用于测量幼崽的学习和记忆能力。在出生后第32天将所有大鼠断头。在脑组织上进行常规的组织学操作,并用Cresyl耐久紫罗兰染色切片。在相同条件下对两组进行了arm臂迷宫(p = 0.007)和被动回避(p = 0.032)测试,并在EMF组大鼠中确定了受损的学习行为。在EMF组部分中也确定了形态折衷。我们的结果表明,在产前应用900 MHz EMF会对雌性幼崽的学习行为产生不利影响,并导致海马体出现组织病理学变化。 2013年12月|第11卷|第4期第582-590页

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