Competitive Coexistence in Biological Systems: Exact Analytical Results Through a Quantum Mechanical Analogy

Author(s):  
H. S. Wio ◽  
M. N. Kuperman ◽  
B. Von Haeften ◽  
M. Bellini ◽  
R. R. Deza ◽  
...  
1997 ◽  
Vol 89 (3-4) ◽  
pp. 605-632 ◽  
Author(s):  
Julius Bene ◽  
Zoltán Kaufmann ◽  
Hans Lustfeld

Author(s):  
G.V. Nevoit

The developed postulates of the magnetoelectrochemical scientific concept of the metabolism of the cellular level of electromagnetic phenomenology are presented in the article. The aim of the study is to summarize the available results and scientific physical and biological concepts of modernity in the magnetoelectrochemical concept of metabolism from the standpoint of systemic medicine to deepen the fundamental knowledge of systemic medicine, increase the effectiveness of measures for the prevention and treatment of noncommunicable diseases by improving their diagnosis and prevention through the introduction of modern high technologies. A theoretical study was carried out to develop a new level of knowledge concept. This generalized the results of research work (including exploratory research, development and processing of a scientific hypothesis, a series of empirical studies) in the form of a theoretical basis and formulated postulates of theorization of the magnetoelectrochemical concept. General scientific and theoretical methods with a systematic approach (taking into account the interdisciplinary, interdisciplinary, transdisciplinary scientific environment) were used in the study. The synthesis of scientific knowledge included the microlevel (atomic, molecular) and macrolevel (tissue, organ, organismic) of illumination of the magnetoelectrochemical phenomenology of the organization and functioning of living biological systems, including the human body. 12 postulates and a promising model of the mechanism of universal magnetoelectrochemical membrane generation (this is the circuit of membrane magnetoelectrochemical generation of biocurrents by A.I.Oshe) are given in part 2 of the article. The main fundamental conclusions based on the results of the theoretical study, set out in part 2: 1) The circuit of the membrane magnetoelectrochemical generation of biological currents A.I. Oshe is a promising universal model of the mechanism of magnetoelectrochemical activity of biological membranes, which is able to adequately explain the possible pathway of a sufficient amount of energy entering the cell; 2) Metabolism, which provides energy supply to living biological systems of various levels of complexity, and all other characteristics of the functions of living organisms, are determined by the properties and features of magnetoelectrochemical processes occurring in them [living biological systems] at the cellular level and causing magnetoelectrochemical excitation of cell membranes and the appearance of biocurrents in them. 3) The cells of living biological systems, including humans, are the following hierarchical. They are holistic quantum-mechanical systems with periodic communication, self-consistent morphological structure of organization; сells create their own field superposition/field/matrix in the millimeter wavelength range with a frequency of 1010-1011 Hz due to their oscillatory activity. This is the quantum mechanical result of their electromagnetic energy interaction. The structure and function of cells are supported by this superposition as well. The information and energy processes of the cellular phenomenology of life are in the biological range (from 1014 Hz and below), they are optical, they are represented by photons/Davydov solitons with a wavelength> 1 μm to 0 and energy <0.5 eV and to 0, they coincide with the optical region of the electromagnetic spectrum of the Sun and they are much less than the levels of the energies of ionization and excitation of atoms and molecules in this case.


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