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生物电磁医学:共振信号的作用。

Bioelectromagnetic medicine: the role of resonance signaling.

作者信息

Foletti Alberto, Grimaldi Settimio, Lisi Antonella, Ledda Mario, Liboff Abraham R

机构信息

Institute of Translational Pharmacology - CNR , Rome , Italy.

出版信息

Electromagn Biol Med. 2013 Dec;32(4):484-99. doi: 10.3109/15368378.2012.743908. Epub 2013 Jan 16.

Abstract

Only recently has the critical importance of electromagnetic (EM) field interactions in biology and medicine been recognized. We review the phenomenon of resonance signaling, discussing how specific frequencies modulate cellular function to restore or maintain health. The application of EM-tuned signals represents more than merely a new tool in information medicine. It can also be viewed in the larger context of EM medicine, the all-encompassing view that elevates the EM over the biochemical. The discovery by Zhadin that ultrasmall magnetic intensities are biologically significant suggests that EM signaling is endogenous to cell regulation, and consequently that the remarkable effectiveness of EM resonance treatments reflects a fundamental aspect of biological systems. The concept that organisms contain mechanisms for generating biologically useful electric signals is not new, dating back to the nineteenth century discovery of currents of injury by Matteucci. The corresponding modern-day version is that ion cyclotron resonance magnetic field combinations help regulate biological information. The next advance in medicine will be to discern and apply those EM signaling parameters acting to promote wellness, with decreasing reliance on marginal biochemical remediation and pharmaceuticals.

摘要

直到最近,电磁场(EM)相互作用在生物学和医学中的关键重要性才得到认可。我们回顾共振信号现象,讨论特定频率如何调节细胞功能以恢复或维持健康。电磁调谐信号的应用不仅仅代表信息医学中的一种新工具。它也可以在电磁医学的更广泛背景下看待,这种全面的观点将电磁置于生化之上。扎丁发现超小磁强度具有生物学意义,这表明电磁信号是细胞调节的内在因素,因此电磁共振治疗的显著效果反映了生物系统的一个基本方面。生物体包含产生生物有用电信号的机制这一概念并不新鲜,可追溯到19世纪马泰ucci发现损伤电流。相应的现代版本是离子回旋共振磁场组合有助于调节生物信息。医学的下一个进展将是识别并应用那些有助于促进健康的电磁信号参数,同时减少对边缘生化修复和药物的依赖。

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