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Bezruchko, Boris Petrovich

Statistics Math-Net.Ru
Total publications: 22
Scientific articles: 22

Number of views:
This page:629
Abstract pages:2535
Full texts:868
References:270
Professor
Doctor of physico-mathematical sciences
E-mail:

https://www.mathnet.ru/eng/person45134
List of publications on Google Scholar
List of publications on ZentralBlatt
https://orcid.org/0000-0002-6691-8653

Publications in Math-Net.Ru Citations
2022
1. E. V. Navrotskaya, A. S. Karavaev, M. V. Sinkin, E. I. Borovkova, B. P. Bezruchko, “Adaptation of the method of coupling analysis based on phase dynamics modeling to EEG signals during an epileptic seizure in comatose patients”, Izv. Sarat. Univ. Physics, 22:1 (2022),  4–14  mathnet 1
2021
2. A. V. Kurbako, E. I. Borovkova, A. R. Kiselev, V. V. Skazkina, V. I. Ponomarenko, B. P. Bezruchko, A. S. Karavaev, “The method for diagnostics of the phase synchronization of the vegetative control of blood circulation in real time”, Izv. Sarat. Univ. Physics, 21:3 (2021),  213–221  mathnet
3. D. D. Kulminskij, A. V. Kurbako, V. V. Skazkina, M. D. Prokhorov, V. I. Ponomarenko, A. R. Kiselev, B. P. Bezruchko, A. S. Karavaev, “Development of a digital finger photoplethysmogram sensor”, Izv. Sarat. Univ. Physics, 21:1 (2021),  58–68  mathnet 3
4. A. V. Kurbako, D. D. Kulminskij, E. I. Borovkova, A. R. Kiselev, V. V. Skazkina, V. I. Ponomarenko, M. D. Prokhorov, B. P. Bezruchko, V. I. Gridnev, A. S. Karavaev, “Increasing the sensitivity of real-time method for diagnostic of autogenerators phase synchronization based on their non-stationary time series”, Izvestiya VUZ. Applied Nonlinear Dynamics, 29:6 (2021),  892–904  mathnet
5. B. P. Bezruchko, V. I. Ponomarenko, Y. P. Seleznev, “Experimental studies of chaotic dynamics near the theorist”, Izvestiya VUZ. Applied Nonlinear Dynamics, 29:1 (2021),  88–135  mathnet
2019
6. E. V. Navrotskaya, D. A. Smirnov, B. P. Bezruchko, “The reconstruction of the couplings structure in the ensemble of oscillators according to the time series via phase dynamics modeling”, Izvestiya VUZ. Applied Nonlinear Dynamics, 27:1 (2019),  41–52  mathnet  elib 4
7. S. N. Krylov, D. A. Smirnov, B. P. Bezruchko, “The influence of observational noise on the effect of spurious coupling between oscillators as estimated from their time series”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 45:16 (2019),  6–9  mathnet  elib; Tech. Phys. Lett., 45:8 (2019), 797–800
2017
8. J. M. Ishbulatov, A. S. Karavaev, V. I. Ponomarenko, A. R. Kiselev, S. A. Sergeev, Y. P. Seleznev, B. P. Bezruchko, M. D. Prokhorov, “Phase synchronization of elements of autonomic control in mathematical model of cardiovascular system”, Nelin. Dinam., 13:3 (2017),  381–397  mathnet  elib 9
2016
9. E. V. Sidak, D. A. Smirnov, G. V. Osipov, B. P. Bezruchko, “Influence of nonlinear amplitude dynamics on estimated delay time of coupling between self-oscillatory systems”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 42:6 (2016),  20–26  mathnet  elib; Tech. Phys. Lett., 42:3 (2016), 287–290 3
2015
10. E. V. Sidak, D. A. Smirnov, B. P. Bezruchko, “Phase dynamics modeling technique for estimation of delayed couplings between nonlinear oscillators accounting for influence of amplitudes”, Izv. Sarat. Univ. Physics, 15:4 (2015),  28–37  mathnet
11. J. M. Ishbulatov, A. S. Karavaev, V. I. Ponomarenko, M. D. Prokhorov, B. P. Bezruchko, “Model of cardiovascular system autonomic regulation with a circuit of baroreflectory control of mean arterial pressure in the form of delayed-feedback oscillator”, Izv. Sarat. Univ. Physics, 15:2 (2015),  32–38  mathnet 1
2014
12. B. P. Bezruchko, A. A. Koronovskii, D. I. Trubetskov, A. E. Khramov, “Route to synerge­tics: Excursus in ten lectures”, Izvestiya VUZ. Applied Nonlinear Dynamics, 22:6 (2014),  137–140  mathnet
13. Maxim V. Kornilov, Ilya V. Sysoev, Boris P. Bezrychko, “Optimal selection of parameters of the forecasting models used for the nonlinear Granger causality method in application to the signals with a main time scales”, Nelin. Dinam., 10:3 (2014),  279–295  mathnet 5
2008
14. B. P. Bezruchko, V. I. Ponomarenko, M. D. Prokhorov, D. A. Smirnov, P. A. Tass, “Modeling nonlinear oscillatory systems and diagnostics of coupling between them using chaotic time series analysis: applications in neurophysiology”, UFN, 178:3 (2008),  323–329  mathnet; Phys. Usp., 51:3 (2008), 304–310  isi  scopus 47
2006
15. B. P. Bezruchko, D. A. Smirnov, “Contemporary problems in modeling from time series”, Izv. Sarat. Univ. Physics, 6:1 (2006),  3–27  mathnet 2
1990
16. B. P. Bezruchko, Yu. V. Gulyaev, O. B. Pudovochkin, Y. P. Seleznev, “Multistability in oscillation systems with period doubling and unidirectional coupling”, Dokl. Akad. Nauk SSSR, 314:2 (1990),  332–336  mathnet  mathscinet; Dokl. Math., 35:9 (1990), 807–809
17. V. V. Astakhov, B. P. Bezruchko, E. N. Erastova, Y. P. Seleznev, “TYPES OF OSCILLATIONS AND THEIR EVOLUTION IN DISSIPATIVELY-RELATED FEIGENBAUM SYSTEMS”, Zhurnal Tekhnicheskoi Fiziki, 60:10 (1990),  19–26  mathnet 4
1989
18. B. P. Bezruchko, E. N. Erastova, “О возможности появления хаотических решений в модели узкозонного полупроводника в режиме ударной ионизации”, Fizika i Tekhnika Poluprovodnikov, 23:9 (1989),  1707–1709  mathnet
19. V. V. Astakhov, B. P. Bezruchko, Yu. V. Gulyaev, Y. P. Seleznev, “MULTISTABLE STATES OF DISSIPATIVELY-CONNECTED FEIGENBAUM SYSTEM”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 15:3 (1989),  60–65  mathnet 3
1988
20. V. V. Astakhov, B. P. Bezruchko, S. P. Kuznetsov, Y. P. Seleznev, “PECULIARITIES OF ORIGINATION OF QUASIPERIODIC MOMENTS IN THE DISSIPATIVELY RELATED NONLINEAR OSCILLATOR SYSTEM UNDER THE OUTER PERIODIC EFFECT”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 14:1 (1988),  37–41  mathnet 1
1987
21. V. V. Astakhov, B. P. Bezruchko, Y. P. Seleznev, “Change of the structure of stochastic-system plane breakdown under the excitation of additional mode”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 13:8 (1987),  449–452  mathnet
1986
22. B. P. Bezruchko, Yu. V. Gulyaev, S. P. Kuznetsov, Y. P. Seleznev, “A new type of critical behavior in coupled systems at the transition to chaos”, Dokl. Akad. Nauk SSSR, 287:3 (1986),  619–622  mathnet

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