-
V. P. Reutov, N. V. Samosudova, E. G. Sorokina, “A Model of Glutamate Neurotoxicity and Mechanisms of the Development of the Typical Pathological Process”, BIOPHYSICS, 64:2 (2019), 233
-
V. M. Eskov, V. F. Pyatin, V. V. Eskov, L. K. Ilyashenko, “The Heuristic Work of the Brain and Artificial Neural Networks”, BIOPHYSICS, 64:2 (2019), 293
-
A. I. Kolosova, M. A. Filatov, E. V. Maistrenko, L. K. Ilyashenko, “An Analysis of the Attention Indices in Students from Surgut and Samara Oblast from the Standpoint of Stochastics and Chaos”, BIOPHYSICS, 64:4 (2019), 662
-
Martyushev L.M., “Living Systems Do Not Minimize Free Energy Comment on “Answering Schrodinger'S Question: a Free-Energy Formulation” By Maxwell James Desormeau Ramstead et Al”, Phys. Life Rev., 24 (2018), 40–41
-
Bronshtein E.M., Fatkhiev O.M., “A Note on St. Petersburg Paradox”, Zh. Novaya Ekon. Assotsiatsiya, 2018, no. 2, 48–53
-
А. В. Москаленко, Р. К. Тетуев, С. А. Махортых, “История становления математической физики сердца в России”, Препринты ИПМ им. М. В. Келдыша, 2018, 061, 32 с.
-
Г. Р. Иваницкий, “Робот и Человек. Где находится предел их сходства?”, УФН, 188:9 (2018), 965–991
; G. R. Ivanitskii, “The robot and the human. Where's their similarity limit?”, Phys. Usp., 61:9 (2018), 871–895
-
В. В. Аристов, О. В. Ильин, “Методы и задачи кинетического подхода для моделирования биологических структур”, Компьютерные исследования и моделирование, 10:6 (2018), 851–866
-
O. E. Filatova, A. E. Bazhenova, L. K. Ilyashenko, S. V. Grigorieva, “Estimation of the Parameters for Tremograms According to the Eskov–Zinchenko Effect”, BIOPHYSICS, 63:2 (2018), 262
-
Ю. Н. Корыстов, “Жизнь возникла как генетический код (к дискуссии по статье Г.Р. Иваницкого “XXI век: что такое жизнь с точки зрения физики” [УФН 180 337 (2010); УФН 182 1235 (2012); УФН 182 1238 (2012)])”, УФН, 187:2 (2017), 235–240
; Yu. N. Korystov, “Life originated as a genetic code (contribution to the discussion of the paper by G R Ivanitskii “21st century: what is life from the perspective of physics” [Usp. Fiz. Nauk. 180 337 (2010); Phys. Usp. 53 327 (2010); Usp. Fiz. Nauk. 182 1235 (2012); Phys. Usp. 55 1152 (2012); Usp. Fiz. Nauk 182 1238 (2012); Phys. Usp. 55 1155 (2012)])”, Phys. Usp., 60:2 (2017), 219–224
-
Г. Р. Иваницкий, “Самоорганизующаяся динамическая устойчивость биосистем, далёких от равновесия”, УФН, 187:7 (2017), 757–784
; G. R. Ivanitskii, “Self-organizing dynamic stability of far-from-equilibrium biological systems”, Phys. Usp., 60:7 (2017), 705–730
-
Tomaev V.V. Tver'yanovich Yu.S. Bal'makov M.D., “Methods of Control Over the Phase Composition of Nanostructured Silver Iodide”, Russ. J. Electrochem., 53:7 (2017), 777–781
-
V. M. Eskov, V. V. Eskov, T. V. Gavrilenko, Yu. V. Vochmina, “Formalization of the effect of “repetition without repetition” discovered by N.A. Bernshtein”, BIOPHYSICS, 62:1 (2017), 143
-
V. V. Eskov, O. E. Filatova, T. V. Gavrilenko, D. V. Gorbunov, “Chaotic Dynamics of Neuromuscular System Parameters and the Problems of the Evolution of Complexity”, BIOPHYSICS, 62:6 (2017), 961
-
V. M. Eskov, O. E. Filatova, V. V. Eskov, T. V. Gavrilenko, “The Evolution of the idea of homeostasis: Determinism, stochastics, and chaos–self-organization”, BIOPHYSICS, 62:5 (2017), 809
-
Eskov V.M., Eskov V.V., Vochmina J.V., Gavrilenko T.V., “The evolution of the chaotic dynamics of collective modes as a method for the behavioral description of living systems”, Mosc. Univ. Phys. Bull., 71:2 (2016), 143–154
-
Aristov V.V., Ilyin O.V., “Kinetic approach for describing biological systems”, 30TH INTERNATIONAL SYMPOSIUM ON RAREFIED GAS DYNAMICS: RGD 30 (Victoria, BC, Canada, 10–15 July 2016), AIP Conference Proceedings, 1786, eds. Ketsdever A., Struchtrup H., Amer Inst Physics, 2016, UNSP 070014
-
O. D. Chernavskaya, D. S. Chernavskii, “Natural-constructive approach to modeling the cognitive process”, BIOPHYSICS, 61:1 (2016), 155
-
Ilyushin G.D., “Modeling of Self-Organization Processes in Crystal-Forming Systems: Symmetry and Topology Code For Cluster Self-Assembly of Crystal Structures For Molecular and Framework Compounds”, Russ. J. Inorg. Chem., 60:13 (2015), 1626–1691
-
Г. Р. Иваницкий, A. A. Деев, Е. П. Хижняк, “Может ли существовать долговременная структурно-динамическая память воды?”, УФН, 184:1 (2014), 43–74
; G. R. Ivanitskii, A. A. Deev, E. P. Khizhnyak, “Long-term dynamic structural memory in water: can it exist?”, Phys. Usp., 57:1 (2014), 37–65