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Abir U. Igamberdiev [10]Abir Igamberdiev [2]
  1. Organization of biosystems: A semiotic approach.Abir U. Igamberdiev - forthcoming - Biosemiotics. A Semiotic Web 1991.
     
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  2.  25
    Semiokinesis Semiotic autopoiesis of the Universe.Abir U. Igamberdiev - 2001 - Semiotica 2001 (135):1-23.
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  3. Editorial. Special issue on Integral Biomathics: The Necessary Conjunction of the Western and Eastern Thought Traditions for Exploring the Nature of Mind and Life.Plamen L. Simeonov, Arran Gare, Koichiro Matsuno & Abir U. Igamberdiev - 2017 - Progress in Biophysics and Molecular Biology 131 (December, Focussed Issue):1-11.
    The idea about this special issue came from a paper published as an updated and upridged version of an older memorial lecture given by Brian D. Josephson and Michael Conrad at the Gujarat Vidyapith University in Ahmedabad, India on March 2, 1984. The title of this paper was “Uniting Eastern Philosophy and Western Science” (1992). We thought that this topic deserves to be revisited after 25 years to demonstrate to the scientific community which new insights and achievements were attained in (...)
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  4. The Western and Eastern thought traditions for exploring the nature of mind and life.Plamen L. Simeonov, Arran Gare, Koichiro Matsuno, Abir U. Igamberdiev & Denis Noble - 2017 - Progress in Biophysics and Molecular Biology 131:1-11.
    This is the editorial to the special edition of Progress in Biophysics and Molecular Biology on the role engagement with Eastern traditions of thought could play in the advancement of science generally and biology and the science of mind in particular.
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    Semiosis and reflectivity in life and consciousness.Abir U. Igamberdiev - 1999 - Semiotica 123 (3-4):231-246.
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  6.  38
    Biological evolution — a semiotically constrained growth of complexity.Abir U. Igamberdiev - 2002 - Sign Systems Studies 30 (1):271-281.
    Any living system possesses internal embedded description and exists as a superposition of different potential realisations, which are reduced in interaction with the environment. This reduction cannot be recursively deduced from the state in time present, it includes unpredictable choice and needs to be modelled also from the state in time future. Such non-recursive establishment of emerging configuration, after its memorisation via formation of reflective loop (sign-creating activity), becomes the inherited recursive action. It leads to increase of complexity of the (...)
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    Biological evolution — a semiotically constrained growth of complexity.Abir U. Igamberdiev - 2002 - Sign Systems Studies 30 (1):271-281.
    Any living system possesses internal embedded description and exists as a superposition of different potential realisations, which are reduced in interaction with the environment. This reduction cannot be recursively deduced from the state in time present, it includes unpredictable choice and needs to be modelled also from the state in time future. Such non-recursive establishment of emerging configuration, after its memorisation via formation of reflective loop (sign-creating activity), becomes the inherited recursive action. It leads to increase of complexity of the (...)
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  8.  54
    Information processing as an intrinsic property of biological systems: Origin and dynamics of information.Abir Igamberdiev - 1997 - World Futures 50 (1):571-581.
    (1997). Information processing as an intrinsic property of biological systems: Origin and dynamics of information. World Futures: Vol. 50, No. 1-4, pp. 571-581.
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  9.  94
    Metabolic systems maintain stable non‐equilibrium via thermodynamic buffering.Abir U. Igamberdiev & Leszek A. Kleczkowski - 2009 - Bioessays 31 (10):1091-1099.
    Here, we analyze how the set of nucleotides in the cell is equilibrated and how this generates simple rules that help the cell to organize itself via maintenance of a stable non‐equilibrium state. A major mechanism operating to achieve this state is thermodynamic buffering via high activities of equilibrating enzymes such as adenylate kinase. Under stable non‐equilibrium, the ratios of free and Mg‐bound adenylates, Mg2+ and membrane potentials are interdependent and can be computed. The adenylate status is balanced with the (...)
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  10.  57
    Physics and logic of life.Abir Igamberdiev (ed.) - 2011 - Hauppauge, N.Y.: Nova Science.
    This book discusses the basic foundations of theoretical biology. Contrary to the objects of theoretical physics, the biological object contains a kind of ontological duality and refers to a fundamental wholeness of a living system. The rational interpretation of wholeness is considered by the author as a true basis for fundamental principles of development of theoretical biology and for understanding its link to physics, to psychology, and to semiotics. The rational holistic approach in application to theoretical biology can be substantiated (...)
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