Preview

Health care of Tajikistan

Advanced search

Technology for the treatment of human diseases based on the use of simulated microwave radiation from the sun

https://doi.org/10.52888/0514-2515-2022-354-3-26-34

Abstract

Aim. Substantiation of the most probable reason for the increase in viral activity and disclosure of the main content of nature-like technology for the treatment of human diseases using simulated microwave radiation from the Sun reaching the Earth’s surface.

Materials and methods. A description of the hardware and software tools for simulating solar microwave radiation is given, which makes it possible to simulate “bursts” of solar microwave radiation from several seconds to tens of minutes, both with linear and chaotic polarization in the frequency range of 4.0–4.3 GHz. In this case, the amplitude spectrum of such radiation can vary in width, shape, and intensity, which does not exceed 100 μW/cm2.

Results and discussion. The mechanism of the corrective action of the above radiation on the human body is studied. It is associated with the conversion of electromagnetic energy absorbed by the body into the energy of lowintensity broadband elastic oscillations. This makes it possible to activate inactivated enzyme complexes under hypoxic conditions to restore the free energy potential in cellular structures.

Conclusions. The evidence on the validity of the use of this radiation against inflammation at the clinical, preclinical, and microbiological levels gives grounds for predicting that it will also be effective in human viral diseases.

About the Authors

S. N. Darovskikh
South Ural State University
Russian Federation

Department of “Infocommunication Technologies”

Chelyabinsk



P. M. Shonazarov
South Ural State University
Russian Federation

Shonazarov Parviz Mahmadnazarovich - postgraduate student of the Department of “Infocommunication technologies”.

454080, Russian Federation, Chelyabinsk, Lenin Ave. 76 Tel.: +7(962)4873499



N. V. Vdovina
South Ural State University
Russian Federation

Department of “Infocommunication Technologies”

Chelyabinsk



Yu. S. Shishkova
South Ural State Medical University
Russian Federation

Department of Microbiology, Virology and Immunology

Chelyabinsk



I. I. Prokopov
South Ural State University
Russian Federation

Department of “Infocommunication Technologies”

Chelyabinsk



References

1. Alimov A.A. Ekologicheskaya bezopasnost i mirovaya politika: chto proiskhodit, kto vinovat i chto delat? [Environmental Security and World Politics: What’s Happening, Who’s to Blame, and What to Do?]. Vestnik MGIMO - Bulletin of Moscow State Institute of International Relations, 2011, Vol. 4, No. 19, pp. 226-232.

2. Bublikova A.A. Sotovaya svyaz i zdorove detey [Сотовая связь и здоровье детей]. Molodezhnyy innovatsionnyy vestnik - Innovative Bulletin for Young, 2018, Vol. 3, No. 7, pp. 19.

3. Golovanova I.L. Deystvie magnitnogo polya i medi na aktivnost gidroliticheskikh fermentov u segoletok plotvy Rutilusrutilus [Effect of magnetic field and copper on the activity of hydrolytic enzymes in roach minnows Rutilusrutilus]. Voprosy ikhtiologii - Issues of ichthuology, 2013, Vol. 2, No. 53, pp. 227-227.

4. Grigorev Yu.G. Printsipialno novoe elektromagnitnoe zagryaznenie okruzhayushchey sredy i otsutstvie adekvatnoy normativnoy bazy k otsenke riska (analiz sovremennykh otechestvennykh i zarubezhnykh dannykh) [Fundamentally new electromagnetic pollution of the environment and the lack of an adequate regulatory framework for risk assessment. (analysis of modern domestic and foreign data)]. Gigiena i sanitariya - Hygiene and sanitation, 2014, Vol. 3, No. 93, pp. 11-16.

5. Darovskikh S.N. O korrelyatsionnoy svyazi spectra muzykalnykh proizvedeniy izvestnykh kompozitorov s nizkochastotnymi fluktuatsiyami mikrovolnovogo izlucheniya Solntsa [On the correlation between the spectrum of musical works of famous composers and low-frequency fluctuations of the microwave radiation of the Sun]. Sistemy analiza i obrabotki dannykh - Data analysis and processing systems, 2020, Vol. 1, No. 78, pp. 165-174.

6. Darovskikh S.N. Mikrovolnovaya geliobiologiya [Microwave heliobiology]. Chelyabinsk, Tsentr YUUrGU Publ., 2016.

7. Koshmarov M.Yu. Ekonomicheskie teorii i evolyutsiya propagandy [Economic Theories and the Evolution of Propaganda]. Mir Novoy Ekonomiki - New Economics World, 2017, Vol. 4, pp. 48-54.

8. Semenova B.F. Vaktsiny i vaktsinatsiya: natsionalnoe rukovodstvo [Vaccines and Vaccination: A National Guide]. Moscow, GEOTAR-Media Publ., 2013.

9. Safonova V.Yu. Vliyanie sverkhvysokochastotnogo izlucheniya nizkoy intensivnosti na soderzhanie T- i V-limfotsitov v krovi podopytnykh zhivotnykh [Effect of low-intensity ultrahigh-frequency radiation on the content of T- and B-lymphocytes in the blood of experimental animals]. Izvestiya Orenburgskogo gosudarstvennogo agrarnogo universiteta - Bulletin of Orenburg State agricultural university, 2019, Vol. 2, No. 76, pp. 165-167.

10. Isaeva N.M. Bioinformatsionnyy analiz posledstviy vozdeystviya magnitnykh poley na protsessy zhiznedeyatelnosti mlekopitayushchikh [Bioinformatic analysis of the effects of magnetic fields on mammalian life processes]. Mezhdunarodnyy zhurnal prikladnykh i fundamentalnykh issledovaniy - International Journal of Applied and Basic Research, 2014, Vol. 1-2, pp. 284-286.

11. Foerster M. A prospective cohort study of adolescents’ memory performance and individual brain dose of microwave radiation from wireless communication. Environmental health perspectives, 2018, No. 126 (7), pp. 077007.

12. Belpomme D. Thermal and non-thermal health effects of low intensity non-ionizing radiation: An international perspective. Environmental pollution, 2018, No. 242, pp. 643-658.

13. Rubik B., Brown R.R. Evidence for a connection between coronavirus disease-19 and exposure to radiofrequency radiation from wireless communications including 5G. Journal of Clinical and Translational Research, 2021, No. 7 (5), pp. 666-681.


Review

For citations:


Darovskikh S.N., Shonazarov P.M., Vdovina N.V., Shishkova Yu.S., Prokopov I.I. Technology for the treatment of human diseases based on the use of simulated microwave radiation from the sun. Health care of Tajikistan. 2022;(3):26-34. (In Russ.) https://doi.org/10.52888/0514-2515-2022-354-3-26-34

Views: 1642


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 0514-2415 (Print)