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  1. Enacting Musical Experience.Joel Krueger - 2009 - Journal of Consciousness Studies 16 (2-3):98-123.
    I argue for an enactive account of musical experience — that is, the experience of listening ‘deeply’(i.e., sensitively and understandingly) to a piece of music. The guiding question is: what do we do when we listen ‘deeply’to music? I argue that these music listening episodes are, in fact, doings. They are instances of active perceiving, robust sensorimotor engagements with and manipulations of sonic structures within musical pieces. Music is thus experiential art, and in Nietzsche’s words, ‘we listen to music with (...)
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  • Establishing consciousness in non-communicative patients: A modern-day version of the Turing test.John F. Stins - 2009 - Consciousness and Cognition 18 (1):187-192.
    In a recent study of a patient in a persistent vegetative state, [Owen, A. M., Coleman, M. R., Boly, M., Davis, M. H., Laureys, S., & Pickard, J. D. . Detecting awareness in the vegetative state. Science, 313, 1402] claimed that they had demonstrated the presence of consciousness in this patient. This bold conclusion was based on the isomorphy between brain activity in this patient and a set of conscious control subjects, obtained in various imagery tasks. However, establishing consciousness in (...)
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  • On Computable Numbers, with an Application to the Entscheidungsproblem.Alan Turing - 1936 - Proceedings of the London Mathematical Society 42 (1):230-265.
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  • The Church-Turing Thesis.B. Jack Copeland - 2014 - In Edward N. Zalta (ed.), The Stanford Encyclopedia of Philosophy. Stanford, CA: The Metaphysics Research Lab.
    There are various equivalent formulations of the Church-Turing thesis. A common one is that every effective computation can be carried out by a Turing machine. The Church-Turing thesis is often misunderstood, particularly in recent writing in the philosophy of mind.
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  • Minimum message length and statistically consistent invariant (objective?) Bayesian probabilistic inference—from (medical) “evidence”.David L. Dowe - 2008 - Social Epistemology 22 (4):433 – 460.
    “Evidence” in the form of data collected and analysis thereof is fundamental to medicine, health and science. In this paper, we discuss the “evidence-based” aspect of evidence-based medicine in terms of statistical inference, acknowledging that this latter field of statistical inference often also goes by various near-synonymous names—such as inductive inference (amongst philosophers), econometrics (amongst economists), machine learning (amongst computer scientists) and, in more recent times, data mining (in some circles). Three central issues to this discussion of “evidence-based” are (i) (...)
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  • (1 other version)Emotional responses to music: The need to consider underlying mechanisms.Patrik N. Juslin & Daniel Västfjäll - 2008 - Behavioral and Brain Sciences 31 (5):559-575.
    Research indicates that people value music primarily because of the emotions it evokes. Yet, the notion of musical emotions remains controversial, and researchers have so far been unable to offer a satisfactory account of such emotions. We argue that the study of musical emotions has suffered from a neglect of underlying mechanisms. Specifically, researchers have studied musical emotions without regard to how they were evoked, or have assumed that the emotions must be based on the mechanism for emotion induction, a (...)
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  • (1 other version)Artistic crimes.Denis Dutton - manuscript
    The concept of forgery is a touchstone of criticism. If the existence of forgeries — and their occasional acceptance as authentic works of art — has been too often dismissed or ignored in the theory of criticism, it may be because of the forger’s special power to make the critic look ridiculous. Awkward as it is, critics have heaped the most lavish praise on art objects that have turned out to be forged. The suspicion this arouses is, of course, that (...)
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  • The information integration theory of consciousness.Giulio Tononi - 2007 - In Max Velmans & Susan Schneider (eds.), The Blackwell Companion to Consciousness. New York: Wiley-Blackwell. pp. 287--299.
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  • (1 other version)Computing machinery and intelligence.Alan Turing - 1950 - Mind 59 (October):433-60.
    I propose to consider the question, "Can machines think?" This should begin with definitions of the meaning of the terms "machine" and "think." The definitions might be framed so as to reflect so far as possible the normal use of the words, but this attitude is dangerous, If the meaning of the words "machine" and "think" are to be found by examining how they are commonly used it is difficult to escape the conclusion that the meaning and the answer to (...)
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  • The Turing test.B. Jack Copeland - 2000 - Minds and Machines 10 (4):519-539.
    Turing''s test has been much misunderstood. Recently unpublished material by Turing casts fresh light on his thinking and dispels a number of philosophical myths concerning the Turing test. Properly understood, the Turing test withstands objections that are popularly believed to be fatal.
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  • Subcognition and the limits of the Turing test.Robert M. French - 1990 - Mind 99 (393):53-66.
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  • Other bodies, other minds: A machine incarnation of an old philosophical problem. [REVIEW]Stevan Harnad - 1991 - Minds and Machines 1 (1):43-54.
    Explaining the mind by building machines with minds runs into the other-minds problem: How can we tell whether any body other than our own has a mind when the only way to know is by being the other body? In practice we all use some form of Turing Test: If it can do everything a body with a mind can do such that we can't tell them apart, we have no basis for doubting it has a mind. But what is (...)
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  • The Turing test is not a trick: Turing indistinguishability is a scientific criterion.Stevan Harnad - 1992 - SIGART Bulletin 3 (4):9-10.
    It is important to understand that the Turing Test is not, nor was it intended to be, a trick; how well one can fool someone is not a measure of scientific progress. The TT is an empirical criterion: It sets AI's empirical goal to be to generate human-scale performance capacity. This goal will be met when the candidate's performance is totally indistinguishable from a human's. Until then, the TT simply represents what it is that AI must endeavor eventually to accomplish (...)
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  • (1 other version)Minds, Brains, and Programs.John Searle - 2003 - In John Heil (ed.), Philosophy of Mind: A Guide and Anthology. New York: Oxford University Press.
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  • (1 other version)Computing Machinery and Intelligence.Alan M. Turing - 2003 - In John Heil (ed.), Philosophy of Mind: A Guide and Anthology. New York: Oxford University Press.
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  • A triangular theory of love.Robert J. Sternberg - 1986 - Psychological Review 93 (2):119-135.
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  • The Turing test.Graham Oppy & D. Dowe - 2003 - Stanford Encyclopedia of Philosophy.
    This paper provides a survey of philosophical discussion of the "the Turing Test". In particular, it provides a very careful and thorough discussion of the famous 1950 paper that was published in Mind.
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  • The Role of Control in Attributing Intentional Agency to Inanimate Objects.Justin Barrett & Amanda Hankes Johnson - 2003 - Journal of Cognition and Culture 3 (3):208-217.
    Previous research into the perception of agency has found that objects in twodimensional displays that move along non-inertial-looking paths are frequently attributed intentional agency, including beliefs and desires. The present experiment re-addressed this finding using a tangible, interactive, electromagnetic puzzle. The experimental manipulation was whether or not participants controlled the electromagnet that moved the marbles along unexpected trajectories. Thirty-one college undergraduates participated. Participants who lacked control over the movement of the marbles were significantly more likely to attribute agency to the (...)
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  • Machine consciousness: A manifesto for robotics.Antonio Chella & Riccardo Manzotti - 2009 - International Journal of Machine Consciousness 1 (1):33-51.
    Machine consciousness is not only a technological challenge, but a new way to approach scientific and theoretical issues which have not yet received a satisfactory solution from AI and robotics. We outline the foundations and the objectives of machine consciousness from the standpoint of building a conscious robot.
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  • Thought translation, tennis and Turing tests in the vegetative state.John F. Stins & Steven Laureys - 2009 - Phenomenology and the Cognitive Sciences 8 (3):361-370.
    Brain damage can cause massive changes in consciousness levels. From a clinical and ethical point of view it is desirable to assess the level of residual consciousness in unresponsive patients. However, no direct measure of consciousness exists, so we run into the philosophical problem of other minds. Neurologists often make implicit use of a Turing test-like procedure in an attempt to gain access to damaged minds, by monitoring and interpreting neurobehavioral responses. New brain imaging techniques are now being developed that (...)
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  • Functions.Larry Wright - 1973 - Philosophical Review 82 (2):139-168.
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  • Universal intelligence: A definition of machine intelligence.Shane Legg & Marcus Hutter - 2007 - Minds and Machines 17 (4):391-444.
    A fundamental problem in artificial intelligence is that nobody really knows what intelligence is. The problem is especially acute when we need to consider artificial systems which are significantly different to humans. In this paper we approach this problem in the following way: we take a number of well known informal definitions of human intelligence that have been given by experts, and extract their essential features. These are then mathematically formalised to produce a general measure of intelligence for arbitrary machines. (...)
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  • The neural correlate of (un)awareness: Lessons from the vegetative state.Steven Laureys - 2005 - Trends in Cognitive Sciences 9 (12):556-559.
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  • Consciousness and computation.Paul Schweizer - 2002 - Minds and Machines 12 (1):143-144.
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  • Goal attribution to inanimate agents by 6.5-month-old infants.Gergely Csibra - 2008 - Cognition 107 (2):705-717.
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  • Lessons from a restricted Turing test.Stuart M. Shieber - 1994 - Communications of the Association for Computing Machinery 37:70-82.
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  • An analysis of the Turing test.James H. Moor - 1976 - Philosophical Studies 30 (4):249 - 257.
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  • What is wrong with a forgery?Alfred Lessing - 1965 - Journal of Aesthetics and Art Criticism 23 (4):461-471.
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  • The strength of weak artificial consciousness.Anil Seth - 2009 - International Journal of Machine Consciousness 1 (1):71-82.
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  • (1 other version)Minds, machines and Turing: The indistinguishability of indistinguishables.Stevan Harnad - unknown
    Turing's celebrated 1950 paper proposes a very general methodological criterion for modelling mental function: total functional equivalence and indistinguishability. His criterion gives rise to a hierarchy of Turing Tests, from subtotal ("toy") fragments of our functions (t1), to total symbolic (pen-pal) function (T2 -- the standard Turing Test), to total external sensorimotor (robotic) function (T3), to total internal microfunction (T4), to total indistinguishability in every empirically discernible respect (T5). This is a "reverse-engineering" hierarchy of (decreasing) empirical underdetermination of the theory (...)
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  • (1 other version)Some Philosophical Implications of Mathematical Logic: I. Three Classes of Ideas.John Myhill - 1952 - Review of Metaphysics 6 (2):165 - 198.
    As to the misconceptions: In the first place, the existence of "undecidable propositions" or "unsolvable problems" has only remote connections with the failure of excluded middle. More precisely, from the fact that a certain problem is unsolvable, one cannot infer that the affirmative and negative answers to that problem are both incorrect. Both Gödel's and Church's theorems were originally proved for systems with the excluded middle, i.e. for systems in which 'p or not p' is provable for every proposition 'p'; (...)
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  • MML, Hybrid Bayesian network graphical models, statistical consistency, invariance and uniqueness.David Dowe - unknown
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