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  1. Syntactic Structures.Noam Chomsky - 1957 - Mouton.
    Noam Chomsky's book on syntactic structures is a serious attempts on the part of a linguist to construct within the tradition of scientific theory-construction ...
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  • Mind and Nature: A Necessary Unity.Gregory Bateson - 2002 - Hampton Press (NJ).
    A re-issue of Gregory Bateson's classic work. It summarizes Bateson's thinking on the subject of the patterns that connect living beings to each other and to their environment.
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  • (2 other versions)Epistemology Naturalized.W. V. Quine - 1969 - In Willard Van Orman Quine (ed.), Ontological Relativity and Other Essays. New York: Columbia University Press.
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  • (1 other version)Evolution – the Extended Synthesis.Massimo Pigliucci & Gerd B. Muller (eds.) - 2010 - MIT Press.
    In the six decades since the publication of Julian Huxley's Evolution: The Modern Synthesis, spectacular empirical advances in the biological sciences have been accompanied by equally significant developments within the core theoretical framework of the discipline. As a result, evolutionary theory today includes concepts and even entire new fields that were not part of the foundational structure of the Modern Synthesis. In this volume, sixteen leading evolutionary biologists and philosophers of science survey the conceptual changes that have emerged since Huxley's (...)
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  • Objective Knowledge.K. R. Popper - 1972 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 4 (2):388-398.
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  • (2 other versions)Syntactic Structures.J. F. Staal - 1966 - Journal of Symbolic Logic 31 (2):245-251.
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  • Blind variation and selective retentions in creative thought as in other knowledge processes.Donald T. Campbell - 1960 - Psychological Review 67 (6):380-400.
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  • Cybernetics or Control and Communication in the Animal and the Machine.N. Wiener - 1948 - Revue Philosophique de la France Et de l'Etranger 141:578-580.
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  • Steps to an Ecology of Mind.G. Bateson - 1972 - Jason Aronson.
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  • A multiple-level model of evolution and its implications for sociobiology.H. C. Plotkin & F. J. Odling-Smee - 1981 - Behavioral and Brain Sciences 4 (2):225-235.
    The fundamental tenet of contemporary sociobiology, namely the assumption of a single process of evolution involving the selection of genes, is critically examined. An alternative multiple-level, multiple-process model of evolution is presented which posits that the primary process that operates via selection upon the genes cannot account for certain kinds of biological phenomena, especially complex, learned, social behaviours. The primary process has evolved subsidiary evolutionary levels and processes that act to bridge the gap between genes and these complex behaviours. The (...)
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  • A Mathematical Theory of Communication.Claude Elwood Shannon - 1948 - Bell System Technical Journal 27 (April 1924):379–423.
    The mathematical theory of communication.
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  • The Ghost in the Machine.Arthur Koestler - 1967 - Macmillan.
    In The Sleepwalkers and The Act of Creation Arthur Koestler provided pioneering studies of scientific discovery and artistic inspiration, the twin pinnacles of human achievement. The Ghost in the Machine looks at the dark side of the coin: our terrible urge to self-destruction... Could the human species be a gigantic evolutionary mistake? To answer that startling question Koestler examines how experts on evolution and psychology all too often write about people with an 'antiquated slot-machine model based on the naively mechanistic (...)
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  • Varieties of Living Things: Life at the Intersection of Lineage and Metabolism.John Dupré & Maureen A. O'Malley - 2009 - Philosophy, Theory, and Practice in Biology 1 (20130604).
    We address three fundamental questions: What does it mean for an entity to be living? What is the role of inter-organismic collaboration in evolution? What is a biological individual? Our central argument is that life arises when lineage-forming entities collaborate in metabolism. By conceiving of metabolism as a collaborative process performed by functional wholes, which are associations of a variety of lineage-forming entities, we avoid the standard tension between reproduction and metabolism in discussions of life – a tension particularly evident (...)
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  • Teleological and teleonomic, a new analysis.Ernst Mayr - 1974 - In R. S. Cohen & Marx W. Wartofsky (eds.), Methodological and historical essays in the natural and social sciences. Boston,: Reidel. pp. 91--117.
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  • A Foray Into the Worlds of Animals and Humans: With a Theory of Meaning.Jakob von Uexküll - 2010 - Univ of Minnesota Press.
    The influential work of speculative biology-and a key document in posthumanist studies-now available in a new, accurate English translation.
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  • What Is Life?Lynn Margulis & Dorion Sagan - 2000 - Univ of California Press.
    Transcending the various formal concepts of life, this captivating book offers a unique overview of life's history, essences, and future. "A masterpiece of scientific writing. You will cherish "What Is Life?" because it is so rich in poetry and science in the service of profound philosophical questions".--Mitchell Thomashow, "Orion". 9 photos. 11 line illustrations.
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  • Assessing evolutionary epistemology.Michael Bradie - 1986 - Biology and Philosophy 1 (4):401-459.
    There are two interrelated but distinct programs which go by the name evolutionary epistemology. One attempts to account for the characteristics of cognitive mechanisms in animals and humans by a straightforward extension of the biological theory of evolution to those aspects or traits of animals which are the biological substrates of cognitive activity, e.g., their brains, sensory systems, motor systems, etc. (EEM program). The other program attempts to account for the evaluation of ideas, scientific theories and culture in general by (...)
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  • On Having No Head: Cognition throughout Biological Systems.František Baluška & Michael Levin - 2016 - Frontiers in Psychology 7.
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  • Bacteria are small but not stupid: cognition, natural genetic engineering and socio-bacteriology.J. A. Shapiro - 2007 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 38 (4):807-819.
    Forty years’ experience as a bacterial geneticist has taught me that bacteria possess many cognitive, computational and evolutionary capabilities unimaginable in the first six decades of the twentieth century. Analysis of cellular processes such as metabolism, regulation of protein synthesis, and DNA repair established that bacteria continually monitor their external and internal environments and compute functional outputs based on information provided by their sensory apparatus. Studies of genetic recombination, lysogeny, antibiotic resistance and my own work on transposable elements revealed multiple (...)
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  • Multilevel Selection and the Major Transitions in Evolution.Samir Okasha - 2005 - Philosophy of Science 72 (5):1013-1025.
    A number of recent biologists have used multi-level selection theory to help explain the major transitions in evolution. I argue that in doing so, they have shifted from a ‘synchronic’ to a ‘diachronic’ formulation of the levels of selection question. The implications of this shift in perspective are explored, in relation to an ambiguity in the meaning of multi-level selection. Though the ambiguity is well-known, it has never before been discussed in the context of the major transitions.
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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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  • Evolutionary epistemology as a scientific method: a new look upon the units and levels of evolution debate.Nathalie Gontier - 2010 - Theory in Biosciences 2 (129):167-182.
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  • Environmental complexity, adaptability and bacterial cognition: Godfrey-Smith’s hypothesis under the microscope.Pamela Lyon - 2017 - Biology and Philosophy 32 (3):443-465.
    The paper presents evidence in bacteria for the utility of Godfrey-Smith’s environmental complexity thesis, using certain kinds of signal transduction systems as proxies for cognitive/behavioral complexity. Microbiologists already accept that the number of signal transduction proteins in a bacterial genome indicates the level of ecological complexity to which the organism is subject: the more signalling proteins, the greater the complexity. Sheer numbers are not always a reliable indicator of behavioral complexity, however. The paper proposes a new, ECT-based procedure for identifying, (...)
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  • Darwinian 'blind' hypothesis formation revisited.Maria E. Kronfeldner - 2010 - Synthese 175 (2):193--218.
    Over the last four decades arguments for and against the claim that creative hypothesis formation is based on Darwinian ‘blind’ variation have been put forward. This paper offers a new and systematic route through this long-lasting debate. It distinguishes between undirected, random, and unjustified variation, to prevent widespread confusions regarding the meaning of undirected variation. These misunderstandings concern Lamarckism, equiprobability, developmental constraints, and creative hypothesis formation. The paper then introduces and develops the standard critique that creative hypothesis formation is guided (...)
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  • Evolutionary epistemology.Michael Bradie - 2008 - Stanford Encyclopedia of Philosophy.
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  • Darwinian Creativity and Memetics.Maria Kronfeldner - 2011 - Acumen Publishing.
    The book examines how Darwinism has been used to explain novelty and change in culture through the Darwinian approach to creativity and the theory of memes. The first claims that creativity is based on a Darwinian process of blind variation and selection, while the latter claims that culture is based on and explained by units - memes - that are similar to genes. Both theories try to describe and explain mind and culture by applying Darwinism by way of analogies. Kronfeldner (...)
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  • Intelligence, Cognition, and Language of Green Plants.Anthony Trewavas - 2016 - Frontiers in Psychology 7.
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  • Mosaic bacterial chromosomes: a challenge en route to a tree of genomes.William Martin - 1999 - Bioessays 21 (2):99-104.
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  • (1 other version)Ueber eine Beziehung der Selectionslehre zur Erkenntnistheorie.G. Simmel - 1895 - Philosophical Review 4:338.
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  • Towards a philosophy of microbiology.Maureen A. O’Malley & John Dupré - 2007 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 38 (4):775-779.
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  • (1 other version)Über eine Beziehung der Selektionslehre zur Erkenntnistheorie.Georg Simmel - 1885 - Archiv für Systematische Philosophie 1:34-45.
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  • ‘Steps’ to Agency: Gregory Bateson, Perception, and Biosemantics.Peter Harries-Jones - 2017 - Biosemiotics 10 (2):211-228.
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  • A soul of truth in things erroneous: Popper’s “amateurish” evolutionary philosophy in light of contemporary biology.Davide Vecchi & Lorenzo Baravalle - 2015 - History and Philosophy of the Life Sciences 36 (4):525-545.
    This paper will critically assess Popper’s evolutionary philosophy. There exists a rich literature on the topic with which we have many reservations. We believe that Popper’s evolutionary philosophy should be assessed in light of the intriguing theoretical insights offered, during the last 10 years or so, by the philosophy of biology, evolutionary biology and molecular biology. We will argue that, when analysed in this manner, Popper’s ideas concerning the nature of selection, Lamarckism and the theoretical limits of neo-Darwinism can be (...)
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  • Sophisticated selectionism as a general theory of knowledge.Claes Andersson - 2008 - Biology and Philosophy 23 (2):229-242.
    Human knowledge is a phenomenon whose roots extend from the cultural, through the neural and the biological and finally all the way down into the Precambrian “primordial soup.” The present paper reports an attempt at understanding this Greater System of Knowledge (GSK) as a hierarchical nested set of selection processes acting concurrently on several different scales of time and space. To this end, a general selection theory extending mainly from the work of Hull and Campbell is introduced. The perhaps most (...)
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  • Drosophila telomeres: an exception providing new insights.James M. Mason, Radmila Capkova Frydrychova & Harald Biessmann - 2008 - Bioessays 30 (1):25-37.
    Drosophila telomeres comprise DNA sequences that differ dramatically from those of other eukaryotes. Telomere functions, however, are similar to those found in telomerase‐based telomeres, even though the underlying mechanisms may differ. Drosophila telomeres use arrays of retrotransposons to maintain chromosome length, while nearly all other eukaryotes rely on telomerase‐generated short repeats. Regardless of the DNA sequence, several end‐binding proteins are evolutionarily conserved. Away from the end, the Drosophila telomeric and subtelomeric DNA sequences are complexed with unique combinations of proteins that (...)
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