磁场对神经系统疾病影响的简要综述。

Richard H W Funk, Manfred Fähnle
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引用次数: 7

摘要

本研究综述了磁场和电磁场(EMF)、脉冲电磁场(PEMF)和经颅磁刺激(TMS)在帕金森病、阿尔茨海默病(AD)或多发性硬化症(MS)中的应用。引言根据临床观察综述了电磁场、脉冲电磁场和经颅磁刺激。接下来是对这些治疗的基本原理的描述,以及对描述这些治疗与生物反应耦合的可能机制的文献综述。这些反应机制包括细胞膜及其嵌入的受体、通道和泵,以及细胞内的信号级联和与细胞器的连接。我们还讨论了磁对耦合EMF的贡献,以及最近发现的隐花色素作为一种假定的磁传感器。我们的结论总结了电磁场引发的复杂的因果因素网络,如通过信号级联引起的细胞膜自由基、一氧化氮、生长因子、隐色素和其他涉及表观遗传和遗传变化的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A short review on the influence of magnetic fields on neurological diseases.

This study reviews the use of magnetic and electromagnetic fields (EMF), pulsed electromagnetic fields (PEMF), and transcranial magnetic stimulation (TMS) in Parkinson's disease, Alzheimer's disease (AD), or Multiple Sclerosis (MS). The Introduction provides a review of EMF, PEMF, and TMS based on clinical observations. This is followed by a description of the basic principles of these treatments and a literature review on possible mechanisms describing the coupling of these treatments with biological responses. These response mechanisms include the cell membrane and its embedded receptors, channels and pumps, as well as signaling cascades within the cell and links to cell organelles. We also discuss the magnetic contribution to coupling EMF, as well as the recent finding of cryptochrome as a putative magnetosensor. Our conclusion summarizes the complex network of causal factors elicited by EMF such as those arising from the cell membrane via signaling cascades to radical oxygen species, nitric oxide, growth factors, cryptochromes and other mechanisms involving epigenetic and genetic changes.

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