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  1. A Theory of Semiotics.Robert Scholes - 1977 - Journal of Aesthetics and Art Criticism 35 (4):476-478.
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  • Indices.[author unknown] - 1952 - Philosophical Studies of The ACPA 3:100-109.
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  • The confusions of fitness.André Ariew & Richard C. Lewontin - 2004 - British Journal for the Philosophy of Science 55 (2):347-363.
    The central point of this essay is to demonstrate the incommensurability of ‘Darwinian fitness’ with the numeric values associated with reproductive rates used in population genetics. While sometimes both are called ‘fitness’, they are distinct concepts coming from distinct explanatory schemes. Further, we try to outline a possible answer to the following question: from the natural properties of organisms and a knowledge of their environment, can we construct an algorithm for a particular kind of organismic life-history pattern that itself will (...)
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  • John Maynard Smith’s notion of animal signals.Ulrich E. Stegmann - 2005 - Biology and Philosophy 20 (5):1011-1025.
    This paper explores John Maynard Smith’s conceptual work on animal signals. Maynard Smith defined animal signals as traits that (1) change another organism’s behaviour while benefiting the sender, that (2) are evolved for this function, and that (3) have their effects through the evolved response of the receiver. Like many ethologists, Maynard Smith assumed that animal signals convey semantic information. Yet his definition of animal signals remains silent on the nature of semantic information and on the conditions determining its content. (...)
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  • The concept of information in biology.John Maynard Smith - 2000 - Philosophy of Science 67 (2):177-194.
    The use of informational terms is widespread in molecular and developmental biology. The usage dates back to Weismann. In both protein synthesis and in later development, genes are symbols, in that there is no necessary connection between their form (sequence) and their effects. The sequence of a gene has been determined, by past natural selection, because of the effects it produces. In biology, the use of informational terms implies intentionality, in that both the form of the signal, and the response (...)
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  • Foundation of the Unity of Science: Toward an International Encyclopedia of Unified Science.C. H. Langford - 1970 - University of Chicago Press Cambridge University Press.
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  • Foundations of the Theory of Signs.C. H. Langford - 1938 - Journal of Symbolic Logic 3 (4):158-158.
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  • The propensity interpretation of fitness.Susan K. Mills & John H. Beatty - 1979 - Philosophy of Science 46 (2):263-286.
    The concept of "fitness" is a notion of central importance to evolutionary theory. Yet the interpretation of this concept and its role in explanations of evolutionary phenomena have remained obscure. We provide a propensity interpretation of fitness, which we argue captures the intended reference of this term as it is used by evolutionary theorists. Using the propensity interpretation of fitness, we provide a Hempelian reconstruction of explanations of evolutionary phenomena, and we show why charges of circularity which have been levelled (...)
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  • Semiotic interpretations of biological mimicry.Timo Maran - 2007 - Semiotica 2007 (167):223-248.
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  • Metaphors We Live by.Max Black - 1980 - Journal of Aesthetics and Art Criticism 40 (2):208-210.
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  • Metaphors we live by.George Lakoff & Mark Johnson - 1980 - Chicago: University of Chicago Press. Edited by Mark Johnson.
    The now-classic Metaphors We Live By changed our understanding of metaphor and its role in language and the mind. Metaphor, the authors explain, is a fundamental mechanism of mind, one that allows us to use what we know about our physical and social experience to provide understanding of countless other subjects. Because such metaphors structure our most basic understandings of our experience, they are "metaphors we live by"--metaphors that can shape our perceptions and actions without our ever noticing them. In (...)
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  • Uexküll and the post-modern evolutionism.Kalevi Kull - 2004 - Sign Systems Studies 32 (1-2):99-114.
    Jakob von Uexküll’s evolutionary views are described and analysed in the context of changes in semiotic and biological thinking at the end of Modern age. As different from the late Modernist biology, a general feature of Post-Modern interpretation of living systems is that an evolutionary explanation has rather secondary importance, it is not obligatory for an understanding of adaptation. Adaptation as correspondence to environment is a communicative, hence a semiotic phenomenon.
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  • Biosemiotic Questions.Kalevi Kull, Claus Emmeche & Donald Favareau - 2008 - Biosemiotics 1 (1):41-55.
    This paper examines the biosemiotic approach to the study of life processes by fashioning a series of questions that any worthwhile semiotic study of life should ask. These questions can be understood simultaneously as: (1) questions that distinguish a semiotic biology from a non-semiotic (i.e., reductionist–physicalist) one; (2) questions that any student in biosemiotics should ask when doing a case study; and (3) still currently unanswered questions of biosemiotics. In addition, some examples of previously undertaken biosemiotic case studies are examined (...)
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  • Biosemiotics in the twentieth century: A view from biology.Kalevi Kull - 1999 - Semiotica 127 (1-4):385-414.
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  • The Semiotic Body.Jesper Hoffmeyer - 2008 - Biosemiotics 1 (2):169-190.
    Most bodies in this world do not have brains and the minority of animal species that do have brained bodies are descendents from species with more distributed or decentralized nervous systems. Thus, bodies were here first, and only relatively late in evolution did the bodies of a few species grow supplementary organs, brains, sophisticated enough to support a psychological life. Psychological life therefore from the beginning was embedded in and served as a tool for corporeal life. This paper discusses the (...)
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  • Information, arbitrariness, and selection: Comments on Maynard Smith.Peter Godfrey-Smith - 2000 - Philosophy of Science 67 (2):202-207.
    Maynard Smith is right that one of the most striking features of contemporary biology is the ever-increasing prominence of the concept of information, along with related concepts like representation, programming, and coding. Maynard Smith is also right that this is surely a phenomenon which philosophers of science should examine closely. We should try to understand exactly what sorts of theoretical commitment are made when biological systems are described in these terms, and what connection there is between semantic descriptions in biology (...)
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  • Birds as Aeroplanes: Remembering John Maynard Smith.Eörs Szathmáry - 2006 - Biological Theory 1 (1):84-86.
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  • Signs, Language, and Behavior. [REVIEW]C. C. V. - 1956 - Review of Metaphysics 9 (4):708-708.
    A hard-cover reprint of Morris' comprehensive and useful work on the theory of signs, first published in 1946.--V. C. C.
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  • Perceive, co-opt, modify, and live! Towards an understanding of organism as a centre of experience.Karel Kleisner - forthcoming - Biosemiotics. Dordrecht: Springer. Forthcoming.
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  • 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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  • Semiotic and Significs: The Correspondence between Charles S. Peirce and Victoria Lady Welby.Charles S. Hardwick & James Cook - 1979 - Transactions of the Charles S. Peirce Society 15 (1):92-97.
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  • Metaphors We Live By.George Lakoff & Mark Johnson - 1980 - Ethics 93 (3):619-621.
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  • A Theory of Semiotics.Umberto Eco - 1977 - Philosophy and Rhetoric 10 (3):214-216.
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