[Paper Review] Magnetic resonance as a channel of directed transmission of electromagnetic energy in animate nature
The paper proposes that magnetic resonance (NMR/ESR) serves as a natural, selective channel for directed electromagnetic energy transfer in biological systems, enabling precise control over biochemical processes via resonant frequencies in Earth's geomagnetic field. It suggests that electrons and nuclei act as 'magnetic antennas' tuned to specific H, ν, and γ parameters, offering a physical basis for regulating cellular functions and enabling novel medical applications such as targeted therapy and bioelectromagnetic communication.
The phenomenon of magnetic resonance (either NMR or ESR) is a responce of atomic (molecular) system to the external electromagnetic effect. Electrons and nuclei, which possess magnetic moment, are the "magnetic antennas" in the biosystem "human being". They are able to receive (radiate) electromagnetic energy selectively in coordinates $H$ (magnetic field), $ν$ (frequency) and $γ$ (gyromagnetic ratio). Tuning of these antennas mirrors the state of an atomic system and its environment. The sea of electromagnetic waves of both natural and artificial origin surrounds a "human being". It contains the set of frequencies, which fulfill the resonance condition in the geomagnetic field. This phenomenon is universal for a lot of nuclei and electrons, which participate in many vital biochemical reactions and processes. The above allows one to speak about the existence of a natural channel for energy (information) transfer using the radio-frequency range. This channel exists both inside a biosystem and for communication outside. The possible ways of realization of such a channel and trends of its application are discussed.
Motivation & Objective
- To establish magnetic resonance as a fundamental mechanism for selective electromagnetic energy exchange between living organisms and their environment.
- To explain biological processes such as enzymatic catalysis, DNA replication, and biorhythms through the lens of magnetic resonance phenomena.
- To explore the potential of using NMR and ESR as tools for non-invasive medical diagnostics and targeted therapy.
- To investigate the role of magnetic resonance in explaining phenomena like telepathy, aura, and homeostasis disruption due to environmental EM fields.
- To develop a framework for using resonance parameters (H, ν, γ) to control biochemical reactions at the atomic-molecular level.
Proposed method
- Modeling the interaction of atomic systems (nuclei and electrons) with external electromagnetic fields under Earth's geomagnetic field (H ≈ 0.7 Gauss).
- Applying the resonance condition ν = (γ/2π)H to identify frequencies that match natural and artificial EM backgrounds.
- Using quantum mechanical principles to describe Zeeman splitting and transitions between magnetic energy levels.
- Proposing that circularly polarized RF radiation selectively excites spins based on polarization direction and precession sense.
- Introducing the concept of 'magnetic phased receiving arrays' composed of paramagnetic species (e.g., free radicals, unpaired electrons) to enable selective energy absorption.
- Suggesting the use of NMR-T imaging and spin-echo techniques (T1, T2) to localize pathological tissues and guide targeted electromagnetic treatment.
Experimental results
Research questions
- RQ1Can magnetic resonance serve as a universal, naturally occurring channel for directed electromagnetic energy transfer in biological systems?
- RQ2How do resonance parameters (H, ν, γ) govern the selective absorption and emission of electromagnetic energy by biological molecules?
- RQ3What role does magnetic resonance play in regulating the speed and direction of biochemical reactions, particularly those involving hydrogen bonds and free radicals?
- RQ4Can the Earth's natural electromagnetic background, including frequencies like 3 Hz, 7.8 Hz, and 1420 MHz, be resonantly coupled to biological systems via NMR/ESR?
- RQ5To what extent can magnetic resonance explain phenomena such as biorhythms, telepathy, and the effects of geomagnetic fluctuations on human health?
Key findings
- The Earth's geomagnetic field enables resonance conditions for multiple biologically relevant nuclei (e.g., 1H, 13C, 31P, 19F) and electrons, creating a natural channel for EM energy transfer.
- Resonance frequencies in the radiofrequency range (e.g., 3 Hz, 7.8 Hz, 1420 MHz, 22000 MHz) correspond to transitions in biological systems and may influence vital processes.
- Electrons and nuclei with magnetic moments act as selective 'magnetic antennas' that can absorb or emit energy based on H, ν, and γ tuning, enabling precise control over biochemical reactions.
- Magnetic resonance provides a physical mechanism for explaining the influence of geomagnetic field fluctuations and solar activity on human biorhythms and health.
- The paper proposes that NMR/ESR can be used to selectively treat diseases by localizing energy delivery to pathological cells using T1/T2 contrast in NMR imaging.
- The concept of 'magnetized water' and hemosorption via NMR/ESR is suggested as a potential method for activating healthy cells or inhibiting diseased ones.
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This review was created by AI and reviewed by human editors.