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  1. How Can Evolution Learn?Richard A. Watson & Eörs Szathmáry - 2016 - Trends in Ecology and Evolution 31 (2):147--157.
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  • The Selfish Gene. [REVIEW]Gunther S. Stent & Richard Dawkins - 1977 - Hastings Center Report 7 (6):33.
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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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  • 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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  • 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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  • Précis of evolution in four dimensions.Eva Jablonka & Marion J. Lamb - 2007 - Behavioral and Brain Sciences 30 (4):353-365.
    In his theory of evolution, Darwin recognized that the conditions of life play a role in the generation of hereditary variations, as well as in their selection. However, as evolutionary theory was developed further, heredity became identified with genetics, and variation was seen in terms of combinations of randomly generated gene mutations. We argue that this view is now changing, because it is clear that a notion of hereditary variation that is based solely on randomly varying genes that are unaffected (...)
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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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  • 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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  • 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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  • Steps to an Ecology of Mind.G. Bateson - 1972 - Jason Aronson.
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  • A Mathematical Theory of Communication.Claude Shannon - 1948 - Bell System Technical Journal 27 (April 1924):379–423.
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  • Evolutionary epistemology.Michael Bradie - 2008 - Stanford Encyclopedia of Philosophy.
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  • Evolutionary epistemology: Reviewing and reviving with new data the research programme for distributed biological intelligence.Predrag Slijepcevic - 2018 - Biosystems 163:23-35.
    Numerous studies in microbiology, eukaryotic cell biology, plant biology, biomimetics, synthetic biology, and philosophy of science appear to support the principles of the epistemological theory inspired by evolution, also known as “Evolutionary Epistemology”, or EE. However, that none of the studies acknowledged EE suggests that its principles have not been formulated with sufficient clarity and depth to resonate with the interests of the empirical research community. In this paper I review evidence in favor of EE, and also reformulate EE principles (...)
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  • Introduction to evolutionary epistemology, language and culture.Nathalie Gontier - 2006 - In Nathalie Gontier, Jean Paul Van Bendegem & Diederik Aerts (eds.), Evolutionary Epistemology, Language and Culture: A Non-Adaptationist Systems Theoretical Approach. pp. 1-29.
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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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  • 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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