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PREPARATION OF ENTANGLED STATES FOR PERFORMING CONVALESCENCE OF NOSOLOGICAL FORMS (ON THE EXAMPLE OF MULTIPLE SCLEROSIS)
1. Gavrilov V. Y., Antipova T. A., Vlasov Y. V., Ardatov S. V., Ardatova A. S. 2020. TELEPORTATION OF SARS-COV-2 INFORMATION AND QUANTUM ENTANGLEMENT OF THE COVID-19 PANDEMIC PROCESS (SOME PHYSICAL MEANINGS). PREPRINTS.RU. DOI: https://doi.org/10.24108/preprints-3112047
2. Antipova T. A., Ardatov S. V., Ardatova A. S., Vlasov Ya. V., Gavrilov V.Yu. Review of some interdisciplinary approaches to the study of quantum information teleportation in macro-and ecosystems of the biogeosphere // Modern scientific research and innovation. 2020. № 3 [Electronic resource] URL: http://web.snauka.ru/issues/2020/03/91665 (accessed: 21.03.2020).
3. Certificate of registration and Deposit of the work-the object of copyright (related) rights №300. Technology for recording and broadcasting information about the physical properties of material objects, based on a special method for processing crystals, semiconductors, etc. active media [Text] / Gavrilov V. Yu., Neganov V. A., Osipov O. V., Pryanikov I. V., Savransky V. V. Registered in the Register for No. 1100300 of 07.02.2007 LLC "law firm Gorodissky and Partners".
4. Ardatov S. V., Ardatova A. S., Vlasov Ya. V., Gavrilov V. Yu., Shchankina A.V. the Concept of creating functional 4 D holographic loci of a new type of non-volatile memory - as a carrier and storage of various modes of preserved entangled quantum States // Modern scientific research and innovation. 2019. # 5 [Electronic resource] URL: http://web.snauka.ru/issues/2019/05/89228 (accessed: 14.05.2019).
5. From Wikipedia, the free encyclopedia (Redirected from Multielectrode array) – [From the resource]: https://en.wikipedia.org/wiki/Multielectrode_array
6. Mukhina I. V. Physiology and Biophysics of excitable systems. Educational and methodological material for the advanced training program "Storage and processing of information in biological systems". Nizhny Novgorod, 2007, 105 p. – [From the resource]: http://www.unn.ru/pages/issues/aids/2007/31.pdf
7. Schumann's RESONANCE // MATERIAL FROM WIKIPEDIA – FREE ENCYCLOPEDIA [Electronic resource] URL: https://ru.wikipedia.org/wiki/Резонанс_Шумана
8. SPACE OBSERVING SYSTEM // DATA of COMPLEX MONITORING IN the city of TOMSK / SCHUMANN RESONANCES [Electronic resource] : URL: http://sosrff.tsu.ru/?page_id=7
9. SCHUMANN RESONANCE [Electronic resource] URL: http://dostoyanieplaneti.ru/5627-rezonans-shumana
10. Sokolov A. A., Sakharov K. Yu, Mikheev O. V., Turkin, V. A., Aleshko A.I., "Radiators of Ultrashort Electromagnetic Pulses," Ultrawideband and Ultrashort Impulse Signals, The Third International Conference , pp.203-205, Sept. 2006, Sevastopol, Ukraine
11. Device for input of high-voltage voltage pulses into the TEM-horn antenna: Pat. 2185012 Russian Federation. No. 2001111370/09; application no. 26.04.01; publ. 10.07.02, bul. no. 19-5 p.
12. Sakharov K. Yu., Turkin V. A., Mikheev O. V., Dobrotvorsky M. I., Sukhov A. V. A picosecond pulsed electric field strength measuring transducer // Measurement Techniques. 2014 V. 57 N. 2 P. 201-205.
13. DE BROGLIE WAVE / MATERIAL FROM WIKIPEDIA - FREE ENCYCLOPEDIA [Electronic resource] URL: https://ru.wikipedia.org/wiki/Волна_де_Бройля
14. DE BROGLIE'S HYPOTHESIS. De BROGLIE WAVES [Electronic resource] URL: https://cito.mgsu.ru/COURSES/course781/files/pdf/teoria_21_4ast_1.pdf
15. DE BROGLIE'S HYPOTHESIS // "Wave properties of microparticles of matter" [Electronic resource] URL: http://ens.tpu.ru/posobie_fis_kusnКвантовая%20оптика.%20Атомная%20и%20ядерная%20физика.%20Физика%20элементарных%20частиц/03-1.htm
16. DE BROGLIE'S HYPOTHESIS // MARTINSON L. K. SMIRNOV E. V. QUANTUM PHYSICS / BAUMAN Moscow state technical University [Electronic resource] URL: http://fn.bmstu.ru/dataphysics/library/physbook/tom5/ch2/texthtml/ch2_1.htm
17. Baretto Lemos G., Borish V., Cole G. D., Ramelow S., Lapkiewicz R., Zeilinger A. Quantum imaging with undetected photons [Text] // Nature, 2014. – V. 512. – P. 409-412.
18. Zakharov A.V., Vlasov Ya. V., Poverennova I. E., Khivintseva E. V., Antipov O. I. Features of postural disorders in patients with multiple sclerosis // Journal of neurology and psychiatry named after C. C. Korsakov. 2014. T. 114. № 2-2. P. 55-58.
19. Manuela Zapka, Dominik Heyers, Christine M. Hein, Svenja Engels, Nils-Lasse Schneider, Jörg Hans, Simon Weiler, David Dreyer, Dmitry Kishkinev, J. Martin Wild & Henrik Mouritsen Visual but not trigeminal mediation of magnetic compass information in a migratory bird – Nature. – 461. – P. 1274–1277 (29 October 2009) | doi:10.1038/nature08528.
20. Journal of the Royal Society Interface//Atticus Pinzon-Rodriguez, Staffan Bensch and Rachel Muheim. Expression patterns of cryptochrome genes in avian retina suggest involvement of Cry4 in light-dependent magnetoreception. Published: 28 March 2018 https://doi.org/10.1098/rsif.2018.0058 [Electronic resource]: https://royalsocietypublishing.org/doi/full/10.1098/rsif.2018.0058
21. Current Biology//Anja Günther, Angelika Einwich, Emil Sjulstok, Karl-Wilhelm Koch, Ilia A. Solov’yov, Henrik Mouritsen. Double-Cone Localization and Seasonal Expression Pattern Suggest a Role in Magnetoreception for European Robin Cryptochrome 4. Published: January 04, 2018 DOI: https://doi.org/10.1016/j.cub.2017.12.003 [Electronic resource]: https://www.cell.com/current-biology/fulltext/S0960-9822(17)31605-6 -
22. NewScientist// Scorn over claim of teleported DNA. [Electronic resource]: https://www.newscientist.com/article/mg20927952-900-scorn-over-claim-of-teleported-dna/?ignored=irrelevant
23. Montagnier, L., Aïssa, J., Ferris, S. et al. Electromagnetic signals are produced by aqueous nanostructures derived from bacterial DNA sequences. InterdiscipSciComputLifeSci 1, 81–90 (2009). DOI: https://doi.org/10.1007/s12539-009-0036-7
24. Bo-Sture K Skagerstam, Karl-Erik Eriksson and Per K Rekdal Causality in quantumfield theory with classical sources//Journal of Physics Communications. 3 (2019) 8, 082001 DOI: 10.1088/2399-6528/ab3c1c [Electronic resource]. URL: https://inspirehep.net/literature/1651252