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The Intelligent Eye

Mcgraw-Hill (1970)

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  1. A computational approach to picture production and consumption is needed right here.Norman H. Freeman - 1989 - Behavioral and Brain Sciences 12 (1):82-84.
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  • Special purpose computation: All is not one.K. I. Forster - 1985 - Behavioral and Brain Sciences 8 (1):9-11.
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  • Module or muddle?Janet Dean Fodor - 1985 - Behavioral and Brain Sciences 8 (1):7-9.
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  • Precis of the modularity of mind.Jerry A. Fodor - 1985 - Behavioral and Brain Sciences 8 (1):1-42.
    The Modularity of Mind proposes an alternative to the or view of cognitive architecture that has dominated several decades of cognitive science. Whereas interactionism stresses the continuity of perceptual and cognitive processes, modularity theory argues for their distinctness. It is argued, in particular, that the apparent plausibility of New Look theorizing derives from the failure to distinguish between the (correct) claim that perceptual processes are inferential and the (dubious) claim that they are unencapsidated, that is, that they are arbitrarily sensitive (...)
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  • Reply module.Jerry A. Fodor - 1985 - Behavioral and Brain Sciences 8 (1):33-42.
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  • Tunnel vision will not suffice.Jerome A. Feldman - 1985 - Behavioral and Brain Sciences 8 (2):302-313.
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  • Four frames suffice: A provisional model of vision and space.Jerome A. Feldman - 1985 - Behavioral and Brain Sciences 8 (2):265-289.
    This paper presents a general computational treatment of how mammals are able to deal with visual objects and environments. The model tries to cover the entire range from behavior and phenomenological experience to detailed neural encodings in crude but computationally plausible reductive steps. The problems addressed include perceptual constancies, eye movements and the stable visual world, object descriptions, perceptual generalizations, and the representation of extrapersonal space.The entire development is based on an action-oriented notion of perception. The observer is assumed to (...)
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  • The distinction between object recognition and picture recognition.Hadyn D. Ellis - 1989 - Behavioral and Brain Sciences 12 (1):81-82.
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  • What you see isn't always what you know.John Eliot - 1989 - Behavioral and Brain Sciences 12 (1):80-81.
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  • Psychophysical invariance, perceptual invariance and the physicalistic trap.Hannes Eisler - 1992 - Behavioral and Brain Sciences 15 (3):566-567.
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  • Can brightness be related to luminance by a meaningful function?Ehtibar N. Dzhafarov - 1992 - Behavioral and Brain Sciences 15 (3):565-566.
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  • Representations of space and place: A developmental perspective.Roger M. Downs - 1989 - Behavioral and Brain Sciences 12 (1):79-80.
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  • Theories of perception as experimental epistemology.P. C. Dodwell - 1985 - Behavioral and Brain Sciences 8 (2):291-293.
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  • References.John Bengson & Marc A. Moffett - 2011 - In Knowing How: Essays on Knowledge, Mind, and Action. Oxford: Oxford University Press. pp. 361-386.
    This compilation of references includes all references for the knowledge-how chapters included in Bengson & Moffett's edited volume. The volume and the compilation of references may serve as a good starting point for people who are unfamiliar with the philosophical literature on knowledge-how.
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  • Understandings of the nature of science and decision making on science and technology based issues.Randy L. Bell & Norman G. Lederman - 2003 - Science Education 87 (3):352-377.
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  • You Do an Empirical Experiment and You Get an Empirical Result. What Can Any Anthropologist Tell Me That Could Change That?Charles Whitehead - 2008 - Journal of Consciousness Studies 15 (10-11):7-41.
    Do you think the quotation in my title is reasonable or unreasonable? I find it unreasonable, but I know that many will not. Two people can react to the same idea, opinion, or data in opposite ways, and the reasons for this are often ideological. Ideology always has a political origin — in this case perhaps reflecting turf wars, career promotion, self-legitimation, the privileged status of science in post-industrial societies, and the need to say the right things in order to (...)
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  • Social mirrors and shared experiential worlds.Charles Whitehead - 2001 - Journal of Consciousness Studies 8 (4):3-36.
    We humans have a formidable armamentarium of social display behaviours, including song-and-dance, the visual arts, and role-play. Of these, role-play is probably the crucial adaptation which makes us most different from other apes. Human childhood, a sheltered period of ‘extended irresponsibility’, allows us to develop our powers of make-believe and role-play, prerequisites for human cooperation, culture, and reflective consciousness. Social mirror theory, originating with Dilthey, Baldwin, Cooley and Mead, holds that there cannot be mirrors in the mind without mirrors in (...)
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  • Introspective Training Apprehensively Defended: Reflections on Titchener's Lab Manual.Eric Schwitzgebel - 2004 - Journal of Consciousness Studies 11 (7-8):58-76.
    To study conscious experience we must, to some extent, trust introspective reports; yet introspective reports often do not merit our trust. A century ago, E.B. Titchener advocated extensive introspective training as a means of resolving this difficulty. He describes many of his training techniques in his four-volume laboratory manual of 1901- 1905. This paper explores Titchener's laboratory manual with an eye to general questions about the prospects of introspective training for contemporary consciousness studies, with a focus on the following examples: (...)
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  • The what and why of binding: The modeler's perspective.Christoph von der Malsburg - 1999 - Neuron 24:95-104.
    In attempts to formulate a computational understanding of brain function, one of the fundamental concerns is the data structure by which the brain represents information. For many decades, a conceptual framework has dominated the thinking of both brain modelers and neurobiologists. That framework is referred to here as "classical neural networks." It is well supported by experimental data, although it may be incomplete. A characterization of this framework will be offered in the next section. Difficulties in modeling important functional aspects (...)
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  • The dynamics and communication of concepts.Simon James Prosser - unknown
    The central claim of this thesis is that concepts, the components from which cognitively significant truth evaluable content (thought) is composed, are unstructured entities an account of whose individuation makes no essential reference to other concepts in the possession of the thinking subject or to any particular means by which the reference of the concept is identified by the thinking subject. This position is called Conceptual Atomism and contrasts with Inferential Role Semantics, according to which concepts are individuated by their (...)
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  • Realism and evidence in the philosophy of mind.Laura Jane Bennett - unknown
    This thesis evaluates a variety of important modern approaches to the study of the mind/brain in the light of recent developments in the debate about how evidence should be used to support a theory and its constituent hypotheses. Although all these approaches are ostensibly based upon the principles of scientific realism, this evaluation will demonstrate that all of them fall well short of these requirements. Consequently, the more modern, co-evolutionary theories of the mind/brain do not constitute the significant advance upon (...)
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  • Introspective training apprehensively defended: Reflections on Titchener's lab manual.Eric Schwitzgebel - 2004 - Journal of Consciousness Studies 11 (7-8):11--7.
    To study conscious experience we must, to some extent, trust introspective reports; yet introspective reports often do not merit our trust. A century ago, E.B. Titchener advocated extensive introspective training as a means of resolving this difficulty. He describes many of his training techniques in his four-volume laboratory manual of 1901- 1905. This paper explores Titchener's laboratory manual with an eye to general questions about the prospects of introspective training for contemporary consciousness studies, with a focus on the following examples: (...)
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  • What does Galileo's discovery of Jupiter's moons tell us about the process of scientific discovery?Anton E. Lawson - 2002 - Science & Education 11 (1):1-24.
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