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在线极低频电磁场刺激对体外培养的大鼠海马CA1神经元电生理特性的影响。

Influence of the on-line ELF-EMF stimulation on the electrophysiological properties of the rat hippocampal CA1 neurons in vitro.

作者信息

Zheng Yu, Ma Wei, Dong Lei, Dou Jun-Rong, Gao Yang, Xue Jing

机构信息

School of Electronics and Information Engineering, Tianjin Polytechnic University, Tianjin 300387, China.

State Key Laboratory of Precision Measurement Technology and Instruments, Tianjin University, Tianjin 300072, China.

出版信息

Rev Sci Instrum. 2017 Oct;88(10):105106. doi: 10.1063/1.5006520.

Abstract

The extremely low frequency electromagnetic fields (ELF-EMFs) have been shown to have an environmentally negative effect on humans' health; however, its treatment effect is beneficial for patients suffering from neurological disorders. Despite this success, the application of ELF-EMF has exceeded in the understanding of its internal mechanism. Recently, it was found that on-line magnetic stimulation may offer advantages over off-line magnetic exposure and has proven to be effective in activating the prefrontal cortex pyramidal neurons in vitro. Here, we perform computational simulations of the stimulation coils in COMSOL modeling to describe the uniformity of the distribution of the on-line magnetic field. Interestingly, the modeling data and actual measurements showed that the densities of the magnetic flux that was generated by the on-line stimulation coils were similar. The on-line magnetic stimulator induced sodium channel currents as well as field excitatory postsynaptic potentials of the rat hippocampal CA1 neurons and successfully demonstrated its extensive applications to activate neuronal tissue. These findings further raise the possibility that the instrument of on-line magnetic stimulation may be an effective alternative for studies in the field of bioelectromagnetics.

摘要

极低频电磁场(ELF - EMFs)已被证明对人类健康有环境负面影响;然而,其治疗效果对患有神经疾病的患者有益。尽管取得了这一成功,但ELF - EMF的应用在对其内部机制的理解方面已经滞后。最近,人们发现在线磁刺激可能比离线磁暴露具有优势,并且已证明在体外激活前额叶皮质锥体神经元方面是有效的。在此,我们在COMSOL建模中对刺激线圈进行计算模拟,以描述在线磁场分布的均匀性。有趣的是,建模数据和实际测量结果表明,在线刺激线圈产生的磁通量密度相似。在线磁刺激器诱导了大鼠海马CA1神经元的钠通道电流以及场兴奋性突触后电位,并成功证明了其在激活神经元组织方面的广泛应用。这些发现进一步增加了在线磁刺激仪器可能成为生物电磁学领域研究的有效替代方法的可能性。

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