School of Life Sciences, Tiangong University, Tianjin, China.
School of Biomedical Engineering, Tianjin Medical University, Tianjin, China.
Bioelectromagnetics. 2023 Apr;44(3-4):63-70. doi: 10.1002/bem.22437. Epub 2023 Feb 14.
The subthreshold magnetic modulation technique stimulates cells with mT extremely low-frequency magnetic fields (ELF-MFs), which are insufficient to induce neuronal action potentials. Although they cannot directly induce resting neurons to discharge, mT magnetic stimulation can regulate the excitability of the nervous system, which regulates learning and memory by some unknown mechanisms. Herein, we describe the regulation of mT ELF-MFs with different parameters on synaptic plasticity in hippocampal neurons. Additionally, we summarize the latest research on the possible mechanism of the effect of ELF-MFs on synaptic plasticity. Some studies have shown that ELF-MFs are able to inhibit long-term potentiation (LTP) by increasing concentration of intracellular Ca concentration ([Ca ] ), as well as concentration of reactive oxygen species. The research in this paper has significance for the comprehensive understanding of relevant neurological mechanisms of learning and memory by mT ELF-MFs stimulation. However, more high-quality research is necessary to determine the regulatory mechanism of mT ELF-MFs on synaptic plasticity in order to optimize this technique as a treatment for neurological diseases. © 2023 Bioelectromagnetics Society.
阈下磁调制技术使用毫特斯拉(mT)极低频磁场(ELF-MFs)刺激细胞,这些磁场强度低到不足以引发神经元动作电位。尽管它们不能直接诱导静息神经元放电,但 mT 磁刺激可以调节神经系统的兴奋性,通过一些未知的机制来调节学习和记忆。在此,我们描述了不同参数的 mT ELF-MFs 对海马神经元突触可塑性的调节。此外,我们总结了 ELF-MFs 对突触可塑性影响的可能机制的最新研究。一些研究表明,ELF-MFs 通过增加细胞内钙浓度 ([Ca ]) 和活性氧浓度来抑制长时程增强(LTP)。本文的研究对于全面了解 mT ELF-MFs 刺激对学习和记忆相关神经机制具有重要意义。然而,为了确定 mT ELF-MFs 对突触可塑性的调节机制,以优化该技术作为治疗神经疾病的方法,还需要更多高质量的研究。© 2023 生物电磁学学会。