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The nature of explanation

Cambridge,: Cambridge University Press (1943)

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  1. The metaphysics of embodiment.Shimon Edelman - 2011 - International Journal of Machine Consciousness 3 (02):321-.
    Shanahan’s eloquently argued version of the global workspace theory fits well into the emerging understanding of consciousness as a computational phenomenon. His disinclination toward metaphysics notwithstanding, Shanahan’s book can also be seen as supportive of a particular metaphysical stance on consciousness — the computational identity theory.
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  • The potential impact of machine consciousness in science and engineering.Igor Aleksander - 2009 - International Journal of Machine Consciousness 1 (1):1-9.
    This paper critically tracks the impact of the development of the machine consciousness paradigm from the incredulity of the 1990s to the structuring of the turn of this century, and the consolidation of the present time which forms the basis for guessing what might happen in the future. The underlying question is how this development may have changed our understanding of consciousness and whether an artificial version of the concept contributes to the improvement of computational machinery and robots. The paper (...)
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  • Phylogenic and ontogenic environments.B. F. Skinner - 1984 - Behavioral and Brain Sciences 7 (4):701-711.
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  • Neuropsychology vis-à-vis Skinner's behaviouristic psychology.Gerhard D. Wassermann - 1984 - Behavioral and Brain Sciences 7 (4):700-701.
  • Each behavior is a product of heredity and experience.Douglas Wahlsten - 1984 - Behavioral and Brain Sciences 7 (4):699-700.
  • Reinforcement is the problem, not the solution: Variation and selection of behavior.J. E. R. Staddon - 1984 - Behavioral and Brain Sciences 7 (4):697-699.
  • Skinner's practical metaphysic may be impractical.S. N. Salthe - 1984 - Behavioral and Brain Sciences 7 (4):696-697.
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  • Is evolution of behavior operant conditioning writ large?Anatol Rapoport - 1984 - Behavioral and Brain Sciences 7 (4):696-696.
  • Nature and nurture revisited.H. C. Plotkin - 1984 - Behavioral and Brain Sciences 7 (4):695-696.
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  • Hereditary ≠ innate.Robert Plomin & Denise Daniels - 1984 - Behavioral and Brain Sciences 7 (4):694-695.
  • B. F. Skinner and the flaws of sociobiology.Anthony J. Perzigian - 1984 - Behavioral and Brain Sciences 7 (4):693-694.
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  • Molar concepts and mentalistic theories: A moral perspective.Stephen Kaplan - 1984 - Behavioral and Brain Sciences 7 (4):692-693.
  • The use of evolutionary analogies and the rejection of state variables by B. F. Skinner.Alejandro Kacelnik & Alasdair Houston - 1984 - Behavioral and Brain Sciences 7 (4):691-692.
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  • Behavior in the light of identified neurons.Graham Hoyle - 1984 - Behavioral and Brain Sciences 7 (4):690-691.
  • The structure versus the provenance of behavior.Jerry A. Hogan - 1984 - Behavioral and Brain Sciences 7 (4):690-690.
  • Ethology ignored Skinner to its detriment.Jack P. Hailman - 1984 - Behavioral and Brain Sciences 7 (4):689-690.
  • Lingering Haeckelian influences and certain other inadequacies of the operant viewpoint for phylogeny and ontogeny.Gilbert Gottlieb - 1984 - Behavioral and Brain Sciences 7 (4):688-689.
  • B. F. Skinner versus Dr. Pangloss.Michael T. Ghiselin - 1984 - Behavioral and Brain Sciences 7 (4):687-688.
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  • Skinner's blind eye.H. J. Eysenck - 1984 - Behavioral and Brain Sciences 7 (4):686-687.
  • Difficulties with phylogenetic and ontogenetic concepts.Irenäus Eibl-Eibesfeldt - 1984 - Behavioral and Brain Sciences 7 (4):685-686.
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  • Consequence contingencies and provenance partitions.Juan D. Delius - 1984 - Behavioral and Brain Sciences 7 (4):685-685.
  • Operant conditioning and natural selection.Andrew M. Colman - 1984 - Behavioral and Brain Sciences 7 (4):684-685.
  • Ethology and operant psychology.Gordon M. Burghardt - 1984 - Behavioral and Brain Sciences 7 (4):683-684.
  • Cost–benefit models and the evolution of behavior.Jerram L. Brown - 1984 - Behavioral and Brain Sciences 7 (4):682-682.
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  • A new experimental analysis of behavior – one for all behavior.D. Caroline Blanchard, Robert J. Blanchard & Kevin J. Flannelly - 1984 - Behavioral and Brain Sciences 7 (4):681-682.
  • Of false dichotomies and larger frames.Jerome H. Barkow - 1984 - Behavioral and Brain Sciences 7 (4):680-681.
  • Contingencies of selection, reinforcement, and survival.David P. Barash - 1984 - Behavioral and Brain Sciences 7 (4):680-680.
  • Ontogenetic or phylogenetic – another afterpain of the fallacious Cartesian dichotomy.Gerard P. Baerends - 1984 - Behavioral and Brain Sciences 7 (4):679-680.
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  • Skinner's circus.Stuart A. Altmann - 1984 - Behavioral and Brain Sciences 7 (4):678-679.
  • The phylogeny and ontogeny of behavior.B. F. Skinner - 1984 - Behavioral and Brain Sciences 7 (4):669-677.
    Responses are strengthened by consequences having to do with the survival of individuals and species. With respect to the provenance of behavior, we know more about ontogenic than phylogenic contingencies. The contingencies responsible for unlearned behavior acted long ago. This remoteness affects our scientific methods, both experimental and conceptual. Until we have identified he variables responsible for an event, we tend to invent causes. Explanatory entities such as “instincts,” “drives,” and “traits” still survive. Unable to show how organisms can behave (...)
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  • A stroll through the worlds of robots and animals: Applying Jakob von Uexkülls theory of meaning to adaptive robots and artificial life.Tom Ziemke & Noel E. Sharkey - 2001 - Semiotica 2001 (134).
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  • In support of cognitive theories.Thomas R. Zentall - 1984 - Behavioral and Brain Sciences 7 (4):654.
  • Postural control: A further look at neural control stategies set by boundaries in space.Felix E. Zajac - 1985 - Behavioral and Brain Sciences 8 (1):167-167.
  • Is “Behaviorism at fifty” twenty years older?Everett J. Wyers - 1984 - Behavioral and Brain Sciences 7 (4):653.
  • Operant conditioning and behavioral neuroscience.Michael L. Woodruff - 1984 - Behavioral and Brain Sciences 7 (4):652.
  • Models in science and mental models in scientists and nonscientists.William F. Brewer - 2001 - Mind and Society 2 (2):33-48.
    This paper examines the form of mental representation of scientific theories in scientists and nonscientists. It concludes that images and schemas are not the appropriate form of mental representation for scientific theories but that mental models and perceptual symbols do seem appropriate for representing physical/mechanical phenomena. These forms of mental representation are postulated to have an analogical relation with the world and it is this relationship that gives them strong explanatory power. It is argued that the construct of naïve theories (...)
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  • Grasping schemas is (are) difficult.H. T. A. Whiting - 1987 - Behavioral and Brain Sciences 10 (3):450-451.
  • More models just means more difficulty.N. E. Wetherick - 1993 - Behavioral and Brain Sciences 16 (2):367-368.
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  • Cognition as self–organizing process.Gerhard Werner - 1987 - Behavioral and Brain Sciences 10 (2):183-183.
  • The development of concepts of the mental world.Henry M. Wellman - 1984 - Behavioral and Brain Sciences 7 (4):651.
  • Intrinsic cognitive models.Jonathan A. Waskan - 2003 - Cognitive Science 27 (2):259-283.
    Theories concerning the structure, or format, of mental representation should (1) be formulated in mechanistic, rather than metaphorical terms; (2) do justice to several philosophical intuitions about mental representation; and (3) explain the human capacity to predict the consequences of worldly alterations (i.e., to think before we act). The hypothesis that thinking involves the application of syntax-sensitive inference rules to syntactically structured mental representations has been said to satisfy all three conditions. An alternative hypothesis is that thinking requires the construction (...)
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  • The Science of Conceptual Systems: A Progress Report.Steven E. Wallis - 2016 - Foundations of Science 21 (4):579-602.
    In this paper I provide a brief history of the emerging science of conceptual systems, explain some methodologies, their sources of data, and the understandings that they have generated. I also provide suggestions for extending the science-based research in a variety of directions. Essentially, I am opening a conversation that asks how this line of research might be extended to gain new insights—and eventually develop more useful and generally accepted methods for creating and evaluating theory. This effort will support our (...)
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  • The epistemology of scientific evidence.Douglas Walton & Nanning Zhang - 2013 - Artificial Intelligence and Law 21 (2):173-219.
    In place of the traditional epistemological view of knowledge as justified true belief we argue that artificial intelligence and law needs an evidence-based epistemology according to which scientific knowledge is based on critical analysis of evidence using argumentation. This new epistemology of scientific evidence (ESE) models scientific knowledge as achieved through a process of marshaling evidence in a scientific inquiry that results in a convergence of scientific theories and research results. We show how a dialogue interface of argument from expert (...)
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  • Schemas and bridging gaps in the behavioral and brain sciences.Johan P. Wagemans - 1987 - Behavioral and Brain Sciences 10 (3):449-450.
  • Schema theory: A new approach?W. von Seelen - 1987 - Behavioral and Brain Sciences 10 (3):448-449.
  • The limits of neuropsychological models of consciousness.Max Velmans - 1995 - Behavioral and Brain Sciences 18 (4):702-703.
    This commentary elaborates on Gray's conclusion that his neurophysiological model of consciousness might explain how consciousness arises from the brain, but does not address how consciousness evolved, affects behaviour or confers survival value. The commentary argues that such limitations apply to all neurophysiological or other third-person perspective models. To approach such questions the first-person nature of consciousness needs to be taken seriously in combination with third-person models of the brain.
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  • Schemata and representational constraints.Cees van Leeuwen - 1987 - Behavioral and Brain Sciences 10 (3):448-448.
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  • Consciousness does not seem to be linked to a single neural mechanism.Carlo Umiltà & Marco Zorzi - 1995 - Behavioral and Brain Sciences 18 (4):701-702.
    On the basis of neuropsychological evidence, it is clear that attention should be given a role in any model of consciousness. What is known about the many instances of dissociation between explicit and implicit knowledge after brain damage suggests that conscious experience might not be linked to a restricted area of the brain. Even if it were true that there is a single brain area devoted to consciousness, the subicular area would seem to be an unlikely possibility.
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  • Scientific thinking and mental models.Ryan D. Tweney - 1993 - Behavioral and Brain Sciences 16 (2):366-367.
  • Schemas: Not yet an interlingua for the brain sciences.John K. Tsotsos - 1987 - Behavioral and Brain Sciences 10 (3):447-448.