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Properties of millimeter wave radiation from human body at norm and pathology

Keywords:

S.V. Savel’ev - Ph.D. (Phys.-Math.), Senior Research Scientist, Fryazino Institute Radio Engineerings and Electronic Engineers n.a. V.A. Kotelnikov of RAS
E-mail: savelyev@ms.ire.rssi.ru
O.V. Betskii - Dr.Sc. (Phys.-Math), Professor, Scientific Consultant, Fryazino Institute Radio Engineerings and Electronic Engineers n.a. V.A. Kotelnikov of RAS
E-mail: betskii@yandex.ru
L.A. Morozova - Leading Engineer, Fryazino Institute Radio Engineerings and Electronic Engineers n.a. V.A. Kotelnikov of RAS
V.S. Vasil’ev - Junior Research Scientst, Fryazino Institute Radio Engineerings and Electronic Engineers n.a. V.A. Kotelnikov of RAS


The article analyzes the results of studying the physical properties of millimeter-wave radiation at a wavelength of 8 mm (37.5 GHz). The technique of diagnostics of a condition of an organism at a rate and a pathology is generalized. The physical properties of milli-meter radiation of a person at a frequency of 7.1 mm (42.2 GHz) in the direction of increasing the informativeness of the obtained diagnostic results are investigated. The basic regularities of the properties of electromagnetic radiation are established in the pres-ence and absence of pathological conditions of internal organs and the organism as a whole. It is noted that the presence of patholo-gies is evidenced by a change in the dynamics of the human body, that is, the transition from single-frequency dynamics to a two-frequency one, as evidenced by the Fourier spectrum of the envelope of the radiation received from man, and in the presence of certain pathologies, the transition to chaotic dynamics, which confirms the continuous Fourier- spectrum without explicit allocation of frequency components. Examples of temporal realizations of millimeter radiation and their Fourier spectra of informationally signifi-cant biologically active point V13 of fei-shu corresponding to normal and pathological conditions of the human body are given.
In the work it was noted that in the absence of pathologies, the behavior of the biological system under investigation (human) is cha-racterized by single-frequency dynamics. In the presence of pathologies, the dynamics of the biological system under investigation (man) becomes more complex – from two-frequency to chaotic. It was noted that one of the ways to further increase the informa-tive value of the method for determining the pathological state of the body and human organs is the use of non-autonomous detec-tion of MM and THz radiation not only of BAT but also of previously irradiated points closest to the expected pathologies, which will allow more clearly fixing the physical properties of human EMV, and means to determine the types of observed pathologies.

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