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On the Influence of Weak Magnetic and Electric Fields on the Fluctuations of Ionic Electric Currents in Blood Circulation

2009/04/07 by Zakirjon Kanokov, Jürn W. P. Schmelzer, Juern W. P. Schmelzer +5
Biochemistry, Genetics and Molecular Biology · Medicine · Physics and Astronomy · #Biofield Effects and Biophysics #Biological Physics (physics.bio-ph) #Electromagnetic Fields and Biological Effects #FOS: Biological sciences #FOS: Physical sciences #Medical Physics (physics.med-ph) #Subcellular Processes (q-bio.SC) #physics.bio-ph #physics.med-ph #q-bio.SC #stochastic dynamics and bifurcation

paper · pdf · doi:10.48550/arxiv.0904.1198

11 pages

arxiv created 2009/04/07 · openalex publication_date 2009/04/07 · arxiv updated 2009/12/01 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28

Abstract

An analysis of a variety of existing experimental data leads to the conclusion on the existence of a resonance mechanism allowing weak magnetic fields to affect biological processes. These fields may either be static magnetic fields comparable in magnitude with the magnetic field of the earth or weak ultra-low frequency time-dependent fields. So far, a generally accepted theoretical model allowing one to understand the effect of magnetic and electric fields on biological processes is not available. By this reason, it is not clear which characteristics of the fields, like magnetic and electric field strength, frequency of change of the field, shape of the electromagnetic wave, the duration of the magnetic or electric influence or some particular combination of them, are responsible for the biological effect. In the present analysis it is shown that external time-independent magnetic fields may cause a resonance amplification of ionic electric currents in biological tissues and, in particular, in the vasculature system due to a Brownian motion of charges. These resonance electric currents may cause necrotic changes in the tissues or blood circulation and in this way significantly affect the biological organism. The magnitude of the magnetic fields leading to resonance effects is estimated, it is shown that it depends significantly on the radius of the blood capillaries.

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