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10赫兹电磁场的时间依赖性对大鼠空间学习和记忆的影响

The Effect of Time-Dependence of 10 Hz Electromagnetic Field on Spatial Learning and Memory in Rats.

作者信息

Zarrin Farzaneh, Mahdavi Seyed Mohammad, Modarresi Chahardehi Amir, Razzaghi Zahra, Ahmadi Nayebali

机构信息

Department of Bioscience and Biotechnology, Malek Ashtar University of Technology, Tehran, Iran.

Cognitive Neuroscience Research Center, AJA University of Medical Sciences, Tehran, Iran.

出版信息

J Lasers Med Sci. 2022 Dec 12;13:e64. doi: 10.34172/jlms.2022.64. eCollection 2022.

Abstract

In everyday life, electrical devices are the primary sources of extremely low-frequency electromagnetic fields (ELF-EMF), and the human body may be a great conductor of these fields. We chose alpha band power, especially at 10 Hz frequency, due to its prior beneficial role in memory. The purpose was to clarify whether there is a relationship between ELF-EMF exposure and cognitive deficits in rats, clinical signs, behavioral analysis, and the impact of ELF-EMF during different times of exposure on neuroplasticity via the expression of BDNF. Forty adult male rats were selected randomly. The rats were exposed to ELF-EMF (10 Hz, 4 mT) for 7 days and 30 days, one hour daily. The expression of BDNF proteins in the hippocampus was evaluated after sacrificing animals to assess learning and memory function. The body weight of rats in the long-term exposed group differed significantly (<0.05). The level of BDNF mRNA in the hippocampus was found by the RT-PCR method. Our findings indicate that exposure to ELF-EMF affects spatial learning and memory and can improve memory, especially with long-term exposure. In addition, we discovered a significant difference in the long-term exposed group (<0.05), where radiation for 30 days resulted in a substantial rise in BDNF levels. After prolonged exposure, male rats spent more time and traveled a greater percentage of their distance in the target quadrant, demonstrating that long-term exposure improves spatial memory and that 10 Hz might be safe.

摘要

在日常生活中,电气设备是极低频电磁场(ELF - EMF)的主要来源,而人体可能是这些电磁场的良好导体。由于α波段功率在记忆方面先前具有有益作用,我们选择了它,尤其是10赫兹频率的。目的是阐明ELF - EMF暴露与大鼠认知缺陷、临床症状、行为分析之间是否存在关系,以及ELF - EMF在不同暴露时间通过脑源性神经营养因子(BDNF)的表达对神经可塑性的影响。随机选择40只成年雄性大鼠。大鼠每天暴露于ELF - EMF(10赫兹,4毫特斯拉)1小时,持续7天和30天。在处死动物后评估海马体中BDNF蛋白的表达,以评估学习和记忆功能。长期暴露组大鼠的体重有显著差异(<0.05)。通过逆转录聚合酶链反应(RT - PCR)方法检测海马体中BDNF mRNA的水平。我们的研究结果表明,暴露于ELF - EMF会影响空间学习和记忆,并且可以改善记忆,尤其是长期暴露。此外,我们发现长期暴露组存在显著差异(<0.05),其中30天的辐射导致BDNF水平大幅上升。长期暴露后,雄性大鼠在目标象限花费更多时间且行进距离占比更大,表明长期暴露可改善空间记忆,并且10赫兹可能是安全的。

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