Ubiquitous extremely low frequency electromagnetic fields induces anxiety-like behavior: mechanistic perspectives.

IF 1.6 4区 生物学 Q3 BIOLOGY Electromagnetic Biology and Medicine Pub Date : 2024-07-29 DOI:10.1080/15368378.2024.2380305
Ehsan Hosseini
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Abstract

Anxiety is an adaptive condition characterized by heightened uneasiness, which in the long term can cause complications such as reducing the quality of life and problems related to the mental and physical health. Concerns have been raised regarding the potential dangers of extremely low frequency electromagnetic fields (ELF-EMF) ranging from 3 to 3000 Hz, which are omnipresent in our daily lives and there have been studies about the anxiogenic effects of these fields. Studies conducted in this specific area has revealed that ELF-EMF can have an impact on various brain regions, such as the hippocampus. In conclusion, studies have shown that ELF-EMF can interfere with hippocampus-prefrontal cortex pathway, inducing anxiety behavior. Also, ELF-EMF may initiate anxiety behavior by generating oxidative stress in hypothalamus and hippocampus. Moreover, ELF-EMF may induce anxiety behavior by reducing hippocampus neuroplasticity and increasing the NMDA2A receptor expression in the hippocampus. Furthermore, supplementation with antioxidants could serve as an effective protective measure against the adverse effects of FLF-FMF in relation to anxiety behavior.

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无处不在的极低频电磁场诱发焦虑样行为:机理视角。
焦虑是一种适应性症状,其特点是高度不安,长期焦虑会导致并发症,如降低生活质量以及与身心健康有关的问题。人们对 3 至 3000 赫兹的极低频电磁场(ELF-EMF)的潜在危险表示担忧,因为这些电磁场在我们的日常生活中无处不在,而且已有关于这些电磁场致焦虑效应的研究。在这一特定领域进行的研究表明,ELF-EMF 会对大脑的不同区域(如海马体)产生影响。总之,研究表明,ELF-EMF 可干扰海马-前额叶皮层通路,诱发焦虑行为。此外,ELF-EMF 还可能通过在下丘脑和海马产生氧化应激而引发焦虑行为。此外,ELF-EMF 还可能通过降低海马神经可塑性和增加海马中 NMDA2A 受体的表达来诱发焦虑行为。此外,补充抗氧化剂可有效防止FLF-FMF对焦虑行为的不良影响。
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来源期刊
CiteScore
3.60
自引率
11.80%
发文量
33
审稿时长
>12 weeks
期刊介绍: Aims & Scope: Electromagnetic Biology and Medicine, publishes peer-reviewed research articles on the biological effects and medical applications of non-ionizing electromagnetic fields (from extremely-low frequency to radiofrequency). Topic examples include in vitro and in vivo studies, epidemiological investigation, mechanism and mode of interaction between non-ionizing electromagnetic fields and biological systems. In addition to publishing original articles, the journal also publishes meeting summaries and reports, and reviews on selected topics.
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