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[40赫兹脉冲磁场对痴呆小鼠线粒体动力学及心率变异性的影响]

[Effect of 40 Hz pulsed magnetic field on mitochondrial dynamics and heart rate variability in dementia mice].

作者信息

Zhang Lifan, Geng Duyan, Xu Guizhi, An Hongxia

机构信息

School of Health Sciences and Biomedical Engineering, Hebei University of Technology, Tianjin 300130, P. R. China.

Tianjin Key Laboratory of Bioelectromagnetic Technology and Intelligent Health, Hebei University of Technology, Tianjin 300130, P. R. China.

出版信息

Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2025 Aug 25;42(4):707-715. doi: 10.7507/1001-5515.202501061.

Abstract

Alzheimer's disease (AD) is the most common degenerative disease of the nervous system. Studies have found that the 40 Hz pulsed magnetic field has the effect of improving cognitive ability in AD, but the mechanism of action is not clear. In this study, APP/PS1 double transgenic AD model mice were used as the research object, the water maze was used to group dementia, and 40 Hz/10 mT pulsed magnetic field stimulation was applied to AD model mice with different degrees of dementia. The behavioral indicators, mitochondrial samples of hippocampal CA1 region and electrocardiogram signals were collected from each group, and the effects of 40 Hz pulsed magnetic field on mouse behavior, mitochondrial kinetic indexes and heart rate variability (HRV) parameters were analyzed. The results showed that compared with the AD group, the loss of mitochondrial crest structure was alleviated and the mitochondrial dynamics related indexes were significantly improved in the AD + stimulated group ( < 0.001), sympathetic nerve excitation and parasympathetic nerve inhibition were improved, and the spatial cognitive memory ability of mice was significantly improved ( < 0.05). The preliminary results of this study show that 40 Hz pulsed magnetic field stimulation can improve the mitochondrial structure and mitochondrial kinetic homeostasis imbalance of AD mice, and significantly improve the autonomic neuromodulation ability and spatial cognition ability of AD mice, which lays a foundation for further exploring the mechanism of ultra-low frequency magnetic field in delaying the course of AD disease and realizing personalized neurofeedback therapy for AD.

摘要

阿尔茨海默病(AD)是最常见的神经系统退行性疾病。研究发现,40Hz脉冲磁场对AD具有改善认知能力的作用,但其作用机制尚不清楚。本研究以APP/PS1双转基因AD模型小鼠为研究对象,采用水迷宫对痴呆进行分组,并对不同程度痴呆的AD模型小鼠施加40Hz/10mT脉冲磁场刺激。收集每组的行为指标、海马CA1区线粒体样本和心电图信号,分析40Hz脉冲磁场对小鼠行为、线粒体动力学指标和心率变异性(HRV)参数的影响。结果显示,与AD组相比,AD+刺激组线粒体嵴结构的丢失得到缓解,线粒体动力学相关指标显著改善(<0.001),交感神经兴奋和副交感神经抑制得到改善,小鼠的空间认知记忆能力显著提高(<0.05)。本研究初步结果表明,40Hz脉冲磁场刺激可改善AD小鼠的线粒体结构和线粒体动力学稳态失衡,显著提高AD小鼠的自主神经调节能力和空间认知能力,为进一步探索超低频磁场延缓AD病程的机制及实现AD的个性化神经反馈治疗奠定了基础。

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