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  1. (6 other versions)The Structure of Scientific Revolutions.Thomas Samuel Kuhn - 1962 - Chicago: University of Chicago Press. Edited by Otto Neurath.
    A scientific community cannot practice its trade without some set of received beliefs. These beliefs form the foundation of the "educational initiation that prepares and licenses the student for professional practice". The nature of the "rigorous and rigid" preparation helps ensure that the received beliefs are firmly fixed in the student's mind. Scientists take great pains to defend the assumption that scientists know what the world is like...To this end, "normal science" will often suppress novelties which undermine its foundations. Research (...)
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  • Jakob von Uexküll: An introduction.Kalevi Kull - 2001 - Semiotica 2001 (134):1-59.
    The article gives an account of life and work of Jakob von Uexk?ll, together with a description of his impact to theoretical biology, behavioural studies, and semiotics. It includes the complete bibliography of Uexk?ll's published works, as well as an extensive list of publications about him.
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  • Phytosemiotics.Martin Krampen - 1981 - Semiotica 36 (3-4).
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  • Biosemiotics: Its roots, proliferation, and prospects.Thomas A. Sebeok - 2001 - Semiotica 2001 (134).
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  • Origin and Evolution of the Brain.Marcello Barbieri - 2011 - Biosemiotics 4 (3):369-399.
    Modern biology has not yet come to terms with the presence of many organic codes in Nature, despite the fact that we can prove their existence. As a result, it has not yet accepted the idea that the great events of macroevolution were associated with the origin of new organic codes, despite the fact that this is the most parsimonious and logical explanation of those events. This is probably due to the fact that the existence of organic codes in all (...)
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  • The organic codes: an introduction to semantic biology.Marcello Barbieri - 2002 - New York: Cambridge University Press.
    The genetic code appeared on Earth with the first cells. The codes of cultural evolution arrived almost four billion years later. These are the only codes that are recognized by modern biology. In this book, however, Marcello Barbieri explains that there are many more organic codes in nature, and their appearance not only took place throughout the history of life but marked the major steps of that history. A code establishes a correspondence between two independent 'worlds', and the codemaker is (...)
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  • Histone acetylation and an epigenetic code.Bryan M. Turner - 2000 - Bioessays 22 (9):836-845.
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  • The Paradigms of Biology.Marcello Barbieri - 2013 - Biosemiotics 6 (1):33-59.
    Today there are two major theoretical frameworks in biology. One is the ‘chemical paradigm’, the idea that life is an extremely complex form of chemistry. The other is the ‘information paradigm’, the view that life is not just ‘chemistry’ but ‘chemistry-plus-information’. This implies the existence of a fundamental difference between information and chemistry, a conclusion that is strongly supported by the fact that information and information-based-processes like heredity and natural selection simply do not exist in the world of chemistry. Against (...)
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  • (1 other version)Jakob von Uexküll. Special issue of.Kalevi Kull - forthcoming - Semiotica.
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  • Anticipatory Functions, Digital-Analog Forms and Biosemiotics: Integrating the Tools to Model Information and Normativity in Autonomous Biological Agents.Argyris Arnellos, Luis Emilio Bruni, Charbel Niño El-Hani & John Collier - 2012 - Biosemiotics 5 (3):331-367.
    We argue that living systems process information such that functionality emerges in them on a continuous basis. We then provide a framework that can explain and model the normativity of biological functionality. In addition we offer an explanation of the anticipatory nature of functionality within our overall approach. We adopt a Peircean approach to Biosemiotics, and a dynamical approach to Digital-Analog relations and to the interplay between different levels of functionality in autonomous systems, taking an integrative approach. We then apply (...)
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  • What Does it Take to Produce Interpretation? Informational, Peircean and Code-Semiotic Views on Biosemiotics.Søren Brier & Cliff Joslyn - 2013 - Biosemiotics 6 (1):143-159.
    This paper presents a critical analysis of code-semiotics, which we see as the latest attempt to create paradigmatic foundation for solving the question of the emergence of life and consciousness. We view code semiotics as a an attempt to revise the empirical scientific Darwinian paradigm, and to go beyond the complex systems, emergence, self-organization, and informational paradigms, and also the selfish gene theory of Dawkins and the Peircean pragmaticist semiotic theory built on the simultaneous types of evolution. As such it (...)
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  • Codepoiesis – the Deep Logic of Life.Marcello Barbieri - 2012 - Biosemiotics 5 (3):297-299.
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  • (1 other version)The Collected Papers of Charles Sanders Peirce.Charles Sanders Peirce, Charles Hartshorne & Paul Weiss - 1933 - International Journal of Ethics 43 (2):220-226.
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  • Has biosemiotics come of age?Marcello Barbieri - 2002 - Semiotica 2002 (139):283-295.
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  • Vertebrate genome evolution: a slow shuffle or a big bang?Nick G. C. Smith, Robert Knight & Laurence D. Hurst - 1999 - Bioessays 21 (8):697-703.
    In vertebrates it is often found that if one considers a group of genes clustered on a certain chromosome, then the homologues of those genes often form another cluster on a different chromosome. There are four explanations, not necessarily mutually exclusive, to explain how such homologous clusters appeared. Homologous clusters are expected at a low probability even if genes are distributed at random. The duplication of a subset of the genome might create homologous clusters, as would a duplication of the (...)
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