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  1. Exaptation–A missing term in the science of form.Stephen Jay Gould & Elisabeth S. Vrba - 1998 - In David L. Hull & Michael Ruse (eds.), The philosophy of biology. New York: Oxford University Press.
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  • Methodological suggestions from a comparative psychology of knowledge processes.Donald T. Campbell - 1959 - Inquiry: An Interdisciplinary Journal of Philosophy 2 (1-4):152 – 182.
    Introductory Abstract Philosophers of science, in the course of making a sharp distinction between the tasks of the philosopher and those of the scientist, have pointed to the possibility of an empirical science of induction. A comparative psychology of knowledge processes is offered as one aspect of this potential enterprise. From fragments of such a psychology, methodological suggestions are drawn relevant to several chronic problems in the social sciences, including the publication of negative results from novel explorations, the operational diagnosis (...)
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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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  • The proximate/ultimate distinction in the multiple careers of Ernst Mayr.John Beatty - 1994 - Biology and Philosophy 9 (3):333-356.
    Ernst Mayr''s distinction between ultimate and proximate causes is justly considered a major contribution to philosophy of biology. But how did Mayr come to this philosophical distinction, and what role did it play in his earlier scientific work? I address these issues by dividing Mayr''s work into three careers or phases: 1) Mayr the naturalist/researcher, 2) Mayr the representative of and spokesman for evolutionary biology and systematics, and more recently 3) Mayr the historian and philosopher of biology. If we want (...)
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  • Evolution and tinkering.F. Jacob - 2014 - In Francisco José Ayala & John C. Avise (eds.), Essential readings in evolutionary biology. Baltimore: The Johns Hopkins University Press.
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  • Acquiring knowledge on species-specific biorealities: The applied evolutionary epistemological approach.Nathalie Gontier & Michael Bradie - 2016 - In Richard Joyce (ed.), The Routledge Handbook of Evolution and Philosophy. New York: Routledge.
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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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  • Mind from Matter?: An Essay on Evolutionary Epistemology.Max Delbrück - 1986 - Wiley-Blackwell.
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  • A modern history theory of functions.Peter Godfrey-Smith - 1994 - Noûs 28 (3):344-362.
    Biological functions are dispositions or effects a trait has which explain the recent maintenance of the trait under natural selection. This is the "modern history" approach to functions. The approach is historical because to ascribe a function is to make a claim about the past, but the relevant past is the recent past; modern history rather than ancient.
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  • Reticulate Evolution: Symbiogenesis, Lateral Gene Transfer, Hybridization and Infectious heredity.Nathalie Gontier (ed.) - 2015 - Springer.
    Written for non-experts, this volume introduces the mechanisms that underlie reticulate evolution. Chapters are either accompanied with glossaries that explain new terminology or timelines that position pioneering scholars and their major discoveries in their historical contexts. The contributing authors outline the history and original context of discovery of symbiosis, symbiogenesis, lateral gene transfer, hybridization or divergence with gene flow, and infectious heredity. By applying key insights from the areas of molecular (phylo)genetics, microbiology, virology, ecology, systematics, immunology, epidemiology and computational science, (...)
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  • Explaining brain size variation: from social to cultural brain.Carel P. van Schaik, Karin Isler & Judith M. Burkart - 2012 - Trends in Cognitive Sciences 16 (5):277-284.
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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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  • Objective Knowledge: An Evolutionary Approach.James A. Martin - 1975 - Philosophical Review 84 (1):103.
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  • Scala naturae: Why there is no theory in comparative psychology.William Hodos & C. B. G. Campbell - 1969 - Psychological Review 76 (4):337-350.
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  • How the mind grows: A developmental perspective on the biology of cognition.Paul E. Griffiths & Karola Stotz - 2000 - Synthese 122 (1-2):29-51.
    The 'developmental systems' perspective in biology is intended to replace the idea of a genetic program. This new perspective is strongly convergent with recent work in psychology on situated/embodied cognition and on the role of external 'scaffolding' in cognitive development. Cognitive processes, including those which can be explained in evolutionary terms, are not 'inherited' or produced in accordance with an inherited program. Instead, they are constructed in each generation through the interaction of a range of developmental resources. The attractors which (...)
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  • Wonderful Life; The Burgess Shale and the Nature of History.Stephen Jay Gould - 1992 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 23 (2):359-360.
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  • Wonderful Life: The Burgess Shale and the Nature of History.Stephen Jay Gould - 1991 - Journal of the History of Biology 24 (1):163-165.
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  • The Relations of Comparative Anatomy to Comparative Psychology.Ludwig Edinger & H. W. Rand - 1909 - Journal of Philosophy, Psychology and Scientific Methods 6 (11):305-307.
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  • Knowledge and the flow of information.F. Dretske - 1989 - Trans/Form/Ação 12:133-139.
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  • Historical and epistemological perspectives on what Lateral Gene Transfer mechanisms contribute to our understanding of evolution.Nathalie Gontier - 2015 - In Reticulate Evolution: Symbiogenesis, Lateral Gene Transfer, Hybridization and Infectious Heredity. pp. 121-178.
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  • Reticulate evolution everywhere.Nathalie Gontier - 2015 - In Reticulate Evolution: Symbiogenesis, Lateral Gene Transfer, Hybridization and Infectious Heredity. pp. 1-40.
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  • Evolutionary Epistemology and its Implications for Humankind.Franz M. Wuketits - 1990 - State University of New York Press.
    Growing out of concerns for environment-development interlinkages expressed at the United Nations Conference on the Human Environment, 1972, this volume is a compilation of edited versions of statements made at that conference and at the ...
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  • Issues in Evolutionary Epistemology: Contemporary Engagements Between Analytic and Continental Thought.Kai Hahlweg & Clifford Alan Hooker (eds.) - 1989 - State University of New York Press.
    Papers presented cover: new approaches to evolutionary epistemology, new applications, critical evaluations, and the nature of the mind. Paper edition (unseen), $25.50. Annotation copyrighted by Book News, Inc., Portland, OR.
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  • A Useful Inheritance: Evolutionary Aspects of the Theory of Knowledge.Nicholas Rescher - 1989 - Rowman & Littlefield Publishers.
    The book formulates an evolutionary approach to the theory of knowledge, based on the parallelism between the natural selection of our cognitive capacities and the rational selection of the methodological processes by which we put them to work. The former reflects the biological evolution of homo sapiens, the latter the cultural evolution of homo quaerens through the development of a scientific community of inquirers with its characteristic practices. This dual aspect of cognitive evolution indicates that our human cognitive accomplishments are (...)
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  • Signals: Evolution, Learning, and Information.Brian Skyrms - 2010 - Oxford, GB: Oxford University Press.
    Brian Skyrms offers a fascinating demonstration of how fundamental signals are to our world. He uses various scientific tools to investigate how meaning and communication develop. Signals operate in networks of senders and receivers at all levels of life, transmitting and processing information. That is how humans and animals think and interact.
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  • 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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  • The Cultural Origins of Human Cognition.Michael Tomasello - 1999 - Harvard University Press.
    Ambitious and elegant, this book builds a bridge between evolutionary theory and cultural psychology. Michael Tomasello is one of the very few people to have done systematic research on the cognitive capacities of both nonhuman primates and human children. The Cultural Origins of Human Cognition identifies what the differences are, and suggests where they might have come from. -/- Tomasello argues that the roots of the human capacity for symbol-based culture, and the kind of psychological development that takes place within (...)
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  • Transformations of Lamarckism: From Subtle Fluids to Molecular Biology.Eva Jablonka & Snait Gissis (eds.) - 2011 - MIT Press.
    In 1809--the year of Charles Darwin's birth--Jean-Baptiste Lamarck published Philosophie zoologique, the first comprehensive and systematic theory of biological evolution. The Lamarckian approach emphasizes the generation of developmental variations; Darwinism stresses selection. Lamarck's ideas were eventually eclipsed by Darwinian concepts, especially after the emergence of the Modern Synthesis in the twentieth century. The different approaches--which can be seen as complementary rather than mutually exclusive--have important implications for the kinds of questions biologists ask and for the type of research they conduct. (...)
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  • Evolutionary epistemology.Michael Bradie - 2008 - Stanford Encyclopedia of Philosophy.
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  • Biological Information, Causality and Specificity - an Intimate Relationship.Karola Stotz & Paul E. Griffiths - 2017 - In Sara Imari Walker, Paul Davies & George Ellis (eds.), From Matter to Life: Information and Causality. Cambridge and New York: Cambridge University Press. pp. 366-390.
    In this chapter we examine the relationship between biological information, the key biological concept of specificity, and recent philosophical work on causation. We begin by showing how talk of information in the molecular biosciences grew out of efforts to understand the sources of biological specificity. We then introduce the idea of ‘causal specificity’ from recent work on causation in philosophy, and our own, information theoretic measure of causal specificity. Biological specificity, we argue, is simple the causal specificity of certain biological (...)
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  • The Cultural Niche.Robert Boyd - unknown
    In the last 60,000 years humans have expanded across the globe and now occupy a wider range than any other terrestrial species. Our ability to successfully adapt to such a diverse range of habitats is often explained in terms of our cognitive ability. Humans have relatively bigger brains and more computing power than other animals and this allows us to figure out how to live in a wide range of environments. Here we argue that humans may be smarter than other (...)
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  • Prolegomena for a cognitive biology.P. Lyon & J. Opie - unknown
    In general, there are two ways to approach cognition. One is to start with the features of the human case and try to generalize to other species. Another is to start with the biological conditions under which natural cognition evolved and currently operates and ask what organisms do such that they might require cognition. A full account of cognition requires both. Cognitive biology, however, requires a biogenic approach. Tight integration with biological knowledge places strong constraints on cognitive explanation. These constraints (...)
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  • Ontogeny and Phylogeny.Stephen Jay Gould - 1978 - Philosophy of Science 45 (4):652-653.
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  • Objective knowledge, an evolutionary approach.Karl R. Popper - 1976 - Revue Philosophique de la France Et de l'Etranger 166 (1):72-73.
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  • Taking the Naturalistic Turn or How Real Philosophy of Science Is Done.W. Callebaut - 1995 - Tijdschrift Voor Filosofie 57 (2):391-391.
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  • A Useful Inheritance: Evolutionary Aspects of the Theory of Knowledge.Nicholas Rescher - 1991 - Mind 100 (2):303-305.
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  • Ontogeny and Phylogeny.Stephen J. Gould - 1979 - Science and Society 43 (1):104-106.
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  • Against Evolutionary Epistemology.Paul Thagard - 1980 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1980:187 - 196.
    This paper is a critique of Darwinian models of the growth of scientific knowledge. Donald Campbell, Karl Popper, Stephen Toulmin, and others have discussed analogies between the development of biological species and the development of scientific knowledge: in both kinds of development, we find variation, selection, and transmission. It is argued that these similarities are superficial, and that closer examination of biological evolution and of the history of science shows that a non-Darwinian approach to historical epistemology is needed. An adequate (...)
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