Olga Chernavskaya, Studies in Computational Intelligence, 1243, Biologically Inspired Cognitive Architectures 2025, 2026, 107
Oleksandr Kulyk, “Thermodynamic neural networks and intersection theory: an ontological hypothesis of emergent intelligence”, Cogn Neurodyn, 20:1 (2026)
Ibragim Suleimenov, Oleg Gabrielyan, Dinara Matrassulova, “Philosophical Foundations of Sciences and Prospects of Multivalued Logic in Describing Thinking”, Sci & Educ, 2025
Sherniyaz Kabdushev, Oleg Gabrielyan, Eldar Kopishev, Ibragim Suleimenov, “Neural network properties of hydrophilic polymers as a key for development of the general theory of evolution”, R. Soc. Open Sci., 12:4 (2025)
Dina Shaltykova, Zdenka Sedláková, Eldar Kopishev, Ibragim Suleimenov, “From Neuromorphic to Sociomorphic Materials: Perspectives and Prognoses”, Symmetry, 17:12 (2025), 2110
Carlos Johnnatan Sandoval-Arrayga, Gustavo Palacios-Ramirez, Felix Francisco Ramos-Corchado, “Temporal heterogeneity in cognitive architectures”, Cognitive Systems Research, 2024, 101265
Olga Chernavskaya, “To the problem of digital immortality”, Cognitive Systems Research, 2024, 101303
Olga Chernavskaya, Studies in Computational Intelligence, 477, Biologically Inspired Cognitive Architectures 2024, 2024, 109
Г. Р. Иваницкий, “Неопределённости сравнения человека и андроидного робота”, УФН, 193:8 (2023), 872–901; G. R. Ivanitskii, “Uncertainties in comparing a human and an android robot”, Phys. Usp., 66:8 (2023), 818–845
Yu. N. Zhuravlev, M. A. Guzev, “Darwin's Algorithms”, Russ. J. Math. Phys., 30:3 (2023), 418
А. Е. Храмов, Н. С. Фролов, В. А. Максименко, С. А. Куркин, В. Б. Казанцев, А. Н. Писарчик, “Функциональные сети головного мозга: от восстановления связей до динамической интеграции”, УФН, 191:6 (2021), 614–650; A. E. Hramov, N. S. Frolov, V. A. Maksimenko, S. A. Kurkin, V. B. Kazantsev, A. N. Pisarchik, “Functional networks of the brain: from connectivity restoration to dynamic integration”, Phys. Usp., 64:6 (2021), 584–616
Chernavskaya O., Rozhylo Ya., “On Modeling the Creativity and the Concept of Chef-D'Oeuvre”, Cogn. Syst. Res., 68 (2021), 18–33
Mun G.A., Moldakhan I., Serikbay A.M., Kaldybekov D., Suleimenov I.E., Park K., “Hydrophilic Interpolymer Associates - the Key to Solving the Problem of Pre-Biological Evolution”, Int. J. Biol. Chem., 13:1 (2020), 4–13
Tolokonnikov G.K., “The Use of Convolutional Polycategories in Problems of Artificial Intelligence”, Advances in Artificial Systems For Medicine and Education III, Advances in Intelligent Systems and Computing, 1126, eds. Hu Z., Petoukhov S., He M., Springer International Publishing Ag, 2020, 23–32
В. А. Твердислов, Е. В. Малышко, “О закономерностях спонтанного формирования структурных иерархий в хиральных системах неживой и живой природы”, УФН, 189:4 (2019), 375–385; V. A. Tverdislov, E. V. Malyshko, “On regularities in the spontaneous formation of structural hierarchies in chiral systems of nonliving and living matter”, Phys. Usp., 62:4 (2019), 354–363
Г. Р. Иваницкий, “Люди-Х, обладающие необычным взаимодействием рецепторных систем, конструируют внутри себя мир новых образов (к 140-летию со дня рождения академика П.П. Лазарева)”, УФН, 189:7 (2019), 759–784; G. R. Ivanitskii, “X-men: humans with an unusual interaction between receptor systems who construct a world of new images within themselves (on the 140th anniversary of the birth of Academician P P Lazarev)”, Phys. Usp., 62:7 (2019), 711–734
Sidorova A.E., Levashova N.T., Malyshko E.V., Tverdislov V.A., “Autowave Self-Organization in the Folding of Proteins”, Mosc. Univ. Phys. Bull., 74:3 (2019), 213–226
Milan M. Ćirković, Springer Proceedings in Complexity, Evolution, Development and Complexity, 2019, 155
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
Е. П. Газдюк, В. В. Жихаревич, О. М. Никитина, С. Э. Остапов, “Моделирование движения одноклеточного микроорганизма «Amoeba Proteus» методом подвижных клеточных автоматов”, ПДМ, 2018, № 42, 104–119
Chernavskaya O., Chernavskii D., Rozhylo Ya., “On the Possibility to Resolve the Scientific Paradoxes in Artificial Cognitive System Natural-Constructive Approach to the Modelling a Cognitive Process”, Proceedings of Sai Intelligent Systems Conference (Intellisys) 2016, Vol 1, Lecture Notes in Networks and Systems, 15, eds. Bi Y., Kapoor S., Bhatia R., Springer International Publishing Ag, 2018, 1–15
V.A. Tverdislov, E.V. Malyshko, Proceedings of the International Conference “Mathematical Biology and Bioinformatics”, 7, Proceedings of the International Conference “Mathematical Biology and Bioinformatics”, 2018
Olga Chernavskaya, Yaroslav Rozhylo, “On Revealing and Resolving the Scientific Paradoxes within the Artificial Cognitive System”, Procedia Computer Science, 145 (2018), 134
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
Petoukhov S.V., Petukhova E.S., “Symmetries in Genetic Systems and the Concept of Geno-Logical Coding”, Information, 8:1 (2017), 2
Chernavskaya O., Chernavskii D., Rozhylo Ya., “on the Modelling An Artificial Cognitive System Based on the Human-Brain Architecture”, Advances in Neuroergonomics and Cognitive Engineering, Advances in Intelligent Systems and Computing, 488, eds. Hale K., Stanney K., Springer Int Publishing Ag, 2017, 107–121
V. A. Tverdislov, E. V. Malyshko, S. A. Il'chenko, O. A. Zhulyabina, L. V. Yakovenko, “A periodic system of chiral structures in molecular biology”, BIOPHYSICS, 62:3 (2017), 331
Alexeev A.K., Bondarev A.E., “on Important Information Dynamics”, Math. Montisnigri, 35 (2016), 68–79
“Профессору Дмитрию Сергеевичу Чернавскому - 90 лет”, Компьютерные исследования и моделирование, 8:1 (2016), 3–8
O. D. Chernavskaya, D. S. Chernavskii, “Natural-constructive approach to modeling the cognitive process”, BIOPHYSICS, 61:1 (2016), 155
O.D. Chernavskaya, D.S. Chernavskii, V.P. Karp, A.P. Nikitin, D.S. Shchepetov, “An architecture of the cognitive system with account for emotional component”, Biologically Inspired Cognitive Architectures, 2015
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
Andrew Rubin, Galina Riznichenko, Biological and Medical Physics, Biomedical Engineering, Mathematical Biophysics, 2014, 3
O.D. Chernavskaya, D.S. Chernavskii, V.P. Karp, A.P. Nikitin, D.S. Shchepetov, “An architecture of thinking system within the Dynamical Theory of Information”, Biologically Inspired Cognitive Architectures, 2013
Яковлев В.А., “Метафизика и физика жизни”, Вопросы философии, 2012, № 2, 14–23
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V. A. Tverdislov, A. E. Sidorova, L. V. Yakovenko, “From symmetries to the laws of evolution. I. Chirality as a means of active media stratification”, BIOPHYSICS, 57:1 (2012), 120
Neeraja Sankaran, “How the discovery of ribozymes cast RNA in the roles of both chicken and egg in origin-of-life theories”, Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences, 43:4 (2012), 741
Ilyushin G.D., “Theory of Cluster Self-Organization for Crystal-Forming Systems: a Model of Transition From Disodered to Ordered Systems”, Russ. J. Inorg. Chem., 56:13 (2011), 2070–2104
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Mazur V.A., “Inflationary Cosmology and the Hypothesis on the Random Self-Origination of Life”, Dokl. Phys., 55:3 (2010), 134–137
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Г. Р. Иваницкий, “XXI век: что такое жизнь с точки зрения физики”, УФН, 180:4 (2010), 337–369; G. R. Ivanitskii, “21st century: what is life from the perspective of physics?”, Phys. Usp., 53:4 (2010), 327–356
Mathematics of Bioinformatics, 2010, 24
E. Ya. Volchenkov, “On the nature of information: the physicosemantic approach”, Autom. Doc. Math. Linguist., 44:2 (2010), 57
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М. А. Цыганов, В. Н. Бикташев, Дж. Бриндли, А. В. Холден, Г. Р. Иваницкий, “Волны в кросс-диффузионных системах — особый класс нелинейных волн”, УФН, 177:3 (2007), 275–300; M. A. Tsyganov, V. N. Biktashev, J. Brindley, A. V. Holden, G. R. Ivanitskii, “Waves in systems with cross-diffusion as a new class of nonlinear waves”, Phys. Usp., 50:3 (2007), 263–286
Cirkovic M., Bradbury R., “Galactic Gradients, Postbiological Evolution and the Apparent Failure of Seti”, New Astron., 11:8 (2006), 628–639
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Kostetsky E., “The Possibility of the Formation of Protocells and their Structural Components on the Basis of the Apatite Matrix and Cocrystallizing Minerals”, J. Biol. Phys., 31:3-4 (2005), 607–638
Melkikh A., “Could Life Evolve by Random Mutations?”, Biofizika, 50:5 (2005), 959–960
Popov S., “Close by Compact Objects and Recent Supernovae in the Solar Vicinity”, Neutrinos and Explosive Events in the Universe, NATO Science Series, Series II: Mathematics, Physics and Chemistry, 209, eds. Shapiro M., Stanev T., Wefel J., Springer, 2005, 119–130
About Science, Myself and Others, 2004, 517
About Science, Myself and Others, 2004, 3
Chernavskii D. Chernavskaya N., “Generation of Valuable Information and the Problem of Goal Self-Setting in Living Systems”, Biofizika, 48:2 (2003), 352–360
V.A Namiot, D.S Chernavskii, “Efficient computing procedures and impossibility to solve the problem of exact prediction of events in the quantum world”, Physics Letters A, 320:1 (2003), 1
Melkikh A., “Can the Organism Select New Valuable Information From Environment?”, Biofizika, 47:6 (2002), 1134–1139
Ivanitsky G., Medvinsky A., “Learning and Selection Create New Information”, Biofizika, 47:6 (2002), 1140–1143
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