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手机辐射范围内电磁辐射对大鼠行为的影响。

The effect of electromagnetic radiation in the mobile phone range on the behaviour of the rat.

机构信息

Department of Human Physiology, University of KwaZulu-Natal, Westville Campus, Durban, 4000, South Africa.

出版信息

Metab Brain Dis. 2009 Dec;24(4):629-41. doi: 10.1007/s11011-009-9164-3. Epub 2009 Oct 13.

Abstract

Electromagnetic radiation (EMR) is emitted from electromagnetic fields that surround power lines, household appliances and mobile phones. Research has shown that there are connections between EMR exposure and cancer and also that exposure to EMR may result in structural damage to neurons. In a study by Salford et al. (Environ Health Perspect 111:881-883, 2003) the authors demonstrated the presence of strongly stained areas in the brains of rats that were exposed to mobile phone EMR. These darker neurons were particularly prevalent in the hippocampal area of the brain. The aim of our study was to further investigate the effects of EMR. Since the hippocampus is involved in learning and memory and emotional states, we hypothesised that EMR will have a negative impact on the subject's mood and ability to learn. We subsequently performed behavioural, histological and biochemical tests on exposed and unexposed male and female rats to determine the effects of EMR on learning and memory, emotional states and corticosterone levels. We found no significant differences in the spatial memory test, and morphological assessment of the brain also yielded non-significant differences between the groups. However, in some exposed animals there were decreased locomotor activity, increased grooming and a tendency of increased basal corticosterone levels. These findings suggested that EMR exposure may lead to abnormal brain functioning.

摘要

电磁辐射(EMR)是由围绕电源线、家用电器和手机的电磁场发射的。研究表明,EMR 暴露与癌症之间存在联系,并且 EMR 暴露可能导致神经元结构损伤。在 Salford 等人的研究中(Environ Health Perspect 111:881-883, 2003),作者证明了暴露于手机 EMR 的大鼠大脑中存在强烈染色区域。这些较暗的神经元在大脑的海马区特别常见。我们的研究旨在进一步研究 EMR 的影响。由于海马体参与学习和记忆以及情绪状态,我们假设 EMR 将对受试者的情绪和学习能力产生负面影响。随后,我们对暴露和未暴露的雄性和雌性大鼠进行了行为、组织学和生化测试,以确定 EMR 对学习和记忆、情绪状态和皮质酮水平的影响。我们在空间记忆测试中没有发现显著差异,大脑的形态评估也没有发现组间的显著差异。然而,在一些暴露的动物中,运动活性降低,梳理增加,基础皮质酮水平升高的趋势。这些发现表明,EMR 暴露可能导致大脑功能异常。

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