Farashi Sajjad
a Faculty of Medicine , Shahid Beheshti University of Medical Sciences , Tehran , Iran.
Electromagn Biol Med. 2017;36(4):341-356. doi: 10.1080/15368378.2017.1389751. Epub 2017 Oct 31.
Interaction between biological systems and environmental electric or magnetic fields has gained attention during the past few decades. Although there are a lot of studies that have been conducted for investigating such interaction, the reported results are considerably inconsistent. Besides the complexity of biological systems, the important reason for such inconsistent results may arise due to different excitation protocols that have been applied in different experiments. In order to investigate carefully the way that external electric or magnetic fields interact with a biological system, the parameters of excitation, such as intensity or frequency, should be selected purposefully due to the influence of these parameters on the system response. In this study, pancreatic β cell, the main player of blood glucose regulating system, is considered and the study is focused on finding the natural frequency spectrum of the system using modeling approach. Natural frequencies of a system are important characteristics of the system when external excitation is applied. The result of this study can help researchers to select proper frequency parameter for electrical excitation of β cell system. The results show that there are two distinct frequency ranges for natural frequency of β cell system, which consist of extremely low (or near zero) and 100-750 kHz frequency ranges. There are experimental works on β cell exposure to electromagnetic fields that support such finding.
在过去几十年中,生物系统与环境电场或磁场之间的相互作用受到了关注。尽管已经进行了大量研究来调查这种相互作用,但报告的结果却相当不一致。除了生物系统的复杂性之外,导致这种不一致结果的重要原因可能是不同实验中应用了不同的激发方案。为了仔细研究外部电场或磁场与生物系统相互作用的方式,由于这些参数对系统响应有影响,因此应特意选择激发参数,如强度或频率。在本研究中,我们考虑了血糖调节系统的主要参与者——胰腺β细胞,并专注于使用建模方法来找到该系统的固有频率谱。当施加外部激发时,系统的固有频率是系统的重要特征。本研究结果可以帮助研究人员为β细胞系统的电激发选择合适的频率参数。结果表明,β细胞系统的固有频率有两个不同的频率范围,即极低频(或接近零)和100 - 750千赫兹频率范围。有关于β细胞暴露于电磁场的实验工作支持这一发现。