Effect of Short-time Exposure of Local Extremely Low-Frequency Magnetic Fields on Sleepiness in Male Rats.

IF 1 Q4 NEUROSCIENCES Basic and Clinical Neuroscience Pub Date : 2022-07-01 DOI:10.32598/bcn.2022.2610.1
Elnaz Azizi, Fatemeh Ayoobi, Ali Shamsizadeh, Amir Moghadam-Ahmadi, Seyed Ali Shafiei, Alireza Khoshdel, Mohammad Reza Mirzaei
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引用次数: 1

Abstract

Introduction: Lack of high-quality sleep causes severe side effects like anxiety and changes in plasma concentration of oxalate. The current study investigated the impact of local extremely low-frequency magnetic fields (ELF-MFs) on inducing sleep (sleepiness) and anxiety in male rats.

Methods: In this experimental study, 40 male rats were divided into four groups (n=10 for each group). The ELF-MF exposure (0, 10, and 18 Hz) was applied with an intensity of 200μT for three days (10 min/d). The sham-treated animal did not receive ELF-MF. Serum levels of oxalic acid (OA) and sleepiness were measured before and after the last exposure to ELF-MF or sham. Anxiety, sleepiness, and OA were measured using the elevated plus maze, open-field test (OFT), and ELISA test.

Results: A comparison of oxalate levels before and after exposure to ELF-MF revealed that ELF-MF (10 Hz) decreased the serum level of oxalate (P<0.05). Comparing open/closed arm entry (in an elevated plus maze) between before and after exposure to ELFMF revealed significant differences. Also, frequency, velocity, and distance moved were decreased in the open-field test.

Conclusion: Results of the present study demonstrated that ELF-MF with short-time exposure may modulate the metabolism of OA and may modulate anxiety-like behavior or kind of induction of sleepiness in male rats.

Highlights: Oxalate acid concentration may reduce after short time ELF-MF exposure.Locomotor activity in male rats may decrease after the ELF-MF exposure.Short time ELF-MF exposure may induce sleepiness in male rats that may be used to treat sleep disorders.

Plain language summary: It is necessary for a person to have good sleep to feel happy during the day. The usual way to treat the patient's sleep disorders is drug therapy, but there are some non-pharmacological treatments such as cognitive behavioral therapy and proper diet. In this study we decided to evaluate the effect of ELF-MFs on sleep induction (sleepiness) in male rats by assessing behavioral tests and measuring oxalate acid density. The results showed that the activity of rats and oxalate acid concentration reduced after ELF-MF exposure. This was consistent with results of the plus maze test and the reduction of velocity, frequency and in the open-field test can be attributed to sleepiness. The results of this research showed that ELF-MF with short time exposure may modulate the anxiety-like behavior or kind of induction of sleepiness in male rats. This effect may be used to treat sleep disorders and requires further human studies.

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局部极低频磁场短时间照射对雄性大鼠嗜睡的影响。
引言:缺乏高质量的睡眠会导致严重的副作用,如焦虑和血浆草酸盐浓度的变化。目前的研究调查了局部极低频磁场(ELF-MFs)对雄性大鼠诱导睡眠(嗜睡)和焦虑的影响。方法:将40只雄性大鼠分为4组,每组10只。以200μT的强度对0、10和18 Hz的ELF-MF照射3天(10 min/d)。假治疗的动物没有接受ELF-MF。在最后一次暴露于ELF-MF或假手术前后测量血清草酸(OA)水平和嗜睡程度。焦虑、嗜睡和OA采用升高加迷宫、开放场试验(OFT)和ELISA检测。短句来源结果:低频-低频(10hz)可降低草酸盐浓度(p)。结论:短时间低频-低频可调节OA代谢,并可调节雄性大鼠的焦虑样行为或嗜睡诱导。草酸浓度在短时间的ELF-MF暴露后会降低。ELF-MF暴露后,雄性大鼠的运动活性降低。短时间的低频-中频暴露可诱导雄性大鼠嗜睡,可用于治疗睡眠障碍。简单的语言总结:对于一个人来说,良好的睡眠是白天感到快乐的必要条件。通常治疗患者睡眠障碍的方法是药物治疗,但也有一些非药物治疗,如认知行为治疗和适当的饮食。在这项研究中,我们决定通过评估行为测试和测量草酸浓度来评估elf - mf对雄性大鼠睡眠诱导(嗜睡)的影响。结果表明,ELF-MF暴露后,大鼠的活性降低,草酸浓度降低。这与正迷宫测试的结果一致,速度、频率和在开放场地测试中的降低可归因于嗜睡。本研究结果表明,短时间暴露的低频-中频可能调节雄性大鼠的焦虑样行为或某种嗜睡诱导。这种效果可能用于治疗睡眠障碍,需要进一步的人体研究。
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来源期刊
CiteScore
2.60
自引率
0.00%
发文量
64
审稿时长
4 weeks
期刊介绍: BCN is an international multidisciplinary journal that publishes editorials, original full-length research articles, short communications, reviews, methodological papers, commentaries, perspectives and “news and reports” in the broad fields of developmental, molecular, cellular, system, computational, behavioral, cognitive, and clinical neuroscience. No area in the neural related sciences is excluded from consideration, although priority is given to studies that provide applied insights into the functioning of the nervous system. BCN aims to advance our understanding of organization and function of the nervous system in health and disease, thereby improving the diagnosis and treatment of neural-related disorders. Manuscripts submitted to BCN should describe novel results generated by experiments that were guided by clearly defined aims or hypotheses. BCN aims to provide serious ties in interdisciplinary communication, accessibility to a broad readership inside Iran and the region and also in all other international academic sites, effective peer review process, and independence from all possible non-scientific interests. BCN also tries to empower national, regional and international collaborative networks in the field of neuroscience in Iran, Middle East, Central Asia and North Africa and to be the voice of the Iranian and regional neuroscience community in the world of neuroscientists. In this way, the journal encourages submission of editorials, review papers, commentaries, methodological notes and perspectives that address this scope.
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