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  1. Consciousness: Only introspective hindsight?Dan Lloyd - 1991 - Behavioral and Brain Sciences 14 (4):686-687.
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  • Conscious functions and brain processes.Benjamin Libet - 1991 - Behavioral and Brain Sciences 14 (4):685-686.
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  • Understanding awareness at the neuronal level.Christof Koch & Francis Crick - 1991 - Behavioral and Brain Sciences 14 (4):683-685.
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  • Is consciousness information processing?Raymond Klein - 1991 - Behavioral and Brain Sciences 14 (4):683-683.
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  • Velmans's overfocused perspective on consciousness.Marcel Kinsbourne - 1991 - Behavioral and Brain Sciences 14 (4):682-683.
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  • Consciousness, analogy and creativity.Mark T. Keane - 1991 - Behavioral and Brain Sciences 14 (4):682-682.
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  • Limits of preconscious processing.Albrecht Werner Inhoff - 1991 - Behavioral and Brain Sciences 14 (4):680-681.
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  • Virtual symposium on virtual mind.Patrick Hayes, Stevan Harnad, Donald Perlis & Ned Block - 1992 - Minds and Machines 2 (3):217-238.
    When certain formal symbol systems (e.g., computer programs) are implemented as dynamic physical symbol systems (e.g., when they are run on a computer) their activity can be interpreted at higher levels (e.g., binary code can be interpreted as LISP, LISP code can be interpreted as English, and English can be interpreted as a meaningful conversation). These higher levels of interpretability are called "virtual" systems. If such a virtual system is interpretable as if it had a mind, is such a "virtual (...)
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  • The sense of thinking.Larry Hauser - 1993 - Minds and Machines 3 (1):21-29.
    It will be found that the great majority, given the premiss that thought is not distinct from corporeal motion, take a much more rational line and maintain that thought is the same in the brutes as in us, since they observe all sorts of corporeal motions in them, just as in us. And they will add that the difference, which is merely one of degree, does not imply any essential difference; from this they will be quite justified in concluding that, (...)
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  • Searle's Chinese Box: Debunking the Chinese Room Argument. [REVIEW]Larry Hauser - 1997 - Minds and Machines 7 (2):199-226.
    John Searle's Chinese room argument is perhaps the most influential andwidely cited argument against artificial intelligence (AI). Understood astargeting AI proper – claims that computers can think or do think– Searle's argument, despite its rhetorical flash, is logically andscientifically a dud. Advertised as effective against AI proper, theargument, in its main outlines, is an ignoratio elenchi. It musterspersuasive force fallaciously by indirection fostered by equivocaldeployment of the phrase "strong AI" and reinforced by equivocation on thephrase "causal powers" (at least) equal (...)
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  • Reaping the whirlwind: Reply to Harnad's Other Bodies, Other Minds[REVIEW]Larry Hauser - 1993 - Minds and Machines 3 (2):219-37.
    Harnad''s proposed robotic upgrade of Turing''s Test (TT), from a test of linguistic capacity alone to a Total Turing Test (TTT) of linguisticand sensorimotor capacity, conflicts with his claim that no behavioral test provides even probable warrant for attributions of thought because there is no evidence of consciousness besides private experience. Intuitive, scientific, and philosophical considerations Harnad offers in favor of his proposed upgrade are unconvincing. I agree with Harnad that distinguishing real from as if thought on the basis of (...)
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  • Minds, machines and Turing: The indistinguishability of indistinguishables.Stevan Harnad - 2000 - Journal of Logic, Language and Information 9 (4):425-445.
    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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  • Epiphenomenalism and the reduction of experience.Valerie Gray Hardcastle - 1991 - Behavioral and Brain Sciences 14 (4):680-680.
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  • Computation is just interpretable symbol manipulation; cognition isn't.Stevan Harnad - 1994 - Minds and Machines 4 (4):379-90.
    Computation is interpretable symbol manipulation. Symbols are objects that are manipulated on the basis of rules operating only on theirshapes, which are arbitrary in relation to what they can be interpreted as meaning. Even if one accepts the Church/Turing Thesis that computation is unique, universal and very near omnipotent, not everything is a computer, because not everything can be given a systematic interpretation; and certainly everything can''t be givenevery systematic interpretation. But even after computers and computation have been successfully distinguished (...)
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  • Consciousness may still have a processing role to play.Robert Van Gulick - 1991 - Behavioral and Brain Sciences 14 (4):699-700.
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  • Has consciousness a sharp edge?Robert A. M. Gregson - 1991 - Behavioral and Brain Sciences 14 (4):679-680.
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  • What is the relation between language and consciousness?Jeffrey A. Gray - 1991 - Behavioral and Brain Sciences 14 (4):679-679.
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  • Memory with and without recollective experience.John M. Gardiner - 1991 - Behavioral and Brain Sciences 14 (4):678-679.
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  • The Turing test: The first fifty years.Robert M. French - 2000 - Trends in Cognitive Sciences 4 (3):115-121.
    The Turing Test, originally proposed as a simple operational definition of intelligence, has now been with us for exactly half a century. It is safe to say that no other single article in computer science, and few other articles in science in general, have generated so much discussion. The present article chronicles the comments and controversy surrounding Turing's classic article from its publication to the present. The changing perception of the Turing Test over the last fifty years has paralleled the (...)
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  • Dream processing.David Foulkes - 1991 - Behavioral and Brain Sciences 14 (4):678-678.
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  • The cartesian test for automatism.Gerald J. Erion - 2001 - Minds and Machines 11 (1):29-39.
    In Part V of his Discourse on the Method, Descartes introduces a test for distinguishing people from machines that is similar to the one proposed much later by Alan Turing. The Cartesian test combines two distinct elements that Keith Gunderson has labeled the language test and the action test. Though traditional interpretation holds that the action test attempts to determine whether an agent is acting upon principles, I argue that the action test is best understood as a test of common (...)
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  • Toward the search for the perfect blade runner: a large-scale, international assessment of a test that screens for “humanness sensitivity”.Robert Epstein, Maria Bordyug, Ya-Han Chen, Yijing Chen, Anna Ginther, Gina Kirkish & Holly Stead - forthcoming - AI and Society:1-21.
    We introduce a construct called “humanness sensitivity,” which we define as the ability to recognize uniquely human characteristics. To evaluate the construct, we used a “concurrent study design” to conduct an internet-based study with a convenience sample of 42,063 people from 88 countries.We sought to determine to what extent people could identify subtle characteristics of human behavior, thinking, emotions, and social relationships which currently distinguish humans from non-human entities such as bots. Many people were surprisingly poor at this task, even (...)
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  • Observing protocol.Judith Economos - 1991 - Behavioral and Brain Sciences 14 (4):677-677.
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  • Conscious acts and their objects.Fred Dretske - 1991 - Behavioral and Brain Sciences 14 (4):676-677.
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  • How people perceive the minds of the dead: The importance of consciousness at the moment of death.Cameron M. Doyle & Kurt Gray - 2020 - Cognition 202 (C):104308.
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  • Hydrocephalus and “misapplied competence”: Awkward evidence for or against?N. F. Dixon - 1991 - Behavioral and Brain Sciences 14 (4):675-676.
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  • Analogy, Mind, and Life.Vitor Manuel Dinis Pereira - 2015 - In Quoc Nam Tran & Hamid Arabnia (eds.), Emerging Trends in Computational Biology, Bioinformatics, and Systems Biology. Elsevier. pp. 377–388.
    I'll show that the kind of analogy between life and information [argued for by authors such as Davies (2000), Walker and Davies (2013), Dyson (1979), Gleick (2011), Kurzweil (2012), Ward (2009)] – that seems to be central to the effect that artificial mind may represent an expected advance in the life evolution in the Universe – is like the design argument, and that if the design argument is unfounded and invalid, the argument to the effect that artificial mind may represent (...)
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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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  • Is consciousness necessary to high-level control systems?Maurizio Tirassa - 1994 - [Journal (on-Line/Unpaginated)].
    Building on Bringsjord's (1992, 1994) and Searle's (1992) work, I take it for granted that computational systems cannot be conscious. In order to discuss the possibility that they might be able to pass refined versions of the Turing Test, I consider three possible relationships between consciousness and control systems in human-level adaptive agents.
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  • A refutation of Penrose's Godelian case against artificial intelligence.Selmer Bringsjord - 2000
    Having, as it is generally agreed, failed to destroy the computational conception of mind with the G\"{o}delian attack he articulated in his {\em The Emperor's New Mind}, Penrose has returned, armed with a more elaborate and more fastidious G\"{o}delian case, expressed in and 3 of his {\em Shadows of the Mind}. The core argument in these chapters is enthymematic, and when formalized, a remarkable number of technical glitches come to light. Over and above these defects, the argument, at best, is (...)
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  • Real robots and the missing thought-experiment in the chinese room dialectic.Selmer Bringsjord & Ron Noel - 2003 - In John Preston & John Mark Bishop (eds.), Views Into the Chinese Room: New Essays on Searle and Artificial Intelligence. Oxford University Press. pp. 144--166.
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  • "Consciousness". Selected Bibliography 1970 - 2004.Thomas Metzinger - unknown
    This is a bibliography of books and articles on consciousness in philosophy, cognitive science, and neuroscience over the last 30 years. There are three main sections, devoted to monographs, edited collections of papers, and articles. The first two of these sections are each divided into three subsections containing books in each of the main areas of research. The third section is divided into 12 subsections, with 10 subject headings for philosophical articles along with two additional subsections for articles in cognitive (...)
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  • Turingův test: filozofické aspekty umělé inteligence.Filip Tvrdý - 2011 - Dissertation, Palacky University
    Disertační práce se zabývá problematikou připisování myšlení jiným entitám, a to pomocí imitační hry navržené v roce 1950 britským filosofem Alanem Turingem. Jeho kritérium, známé v dějinách filosofie jako Turingův test, je podrobeno detailní analýze. Práce popisuje nejen původní námitky samotného Turinga, ale především pozdější diskuse v druhé polovině 20. století. Největší pozornost je věnována těmto kritikám: Lucasova matematická námitka využívající Gödelovu větu o neúplnosti, Searlův argument čínského pokoje konstatující nedostatečnost syntaxe pro sémantiku, Blockův návrh na použití brutální síly pro (...)
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  • Why and how we are not zombies.Stevan Harnad - 1994 - Journal of Consciousness Studies 1 (2):164-67.
    A robot that is functionally indistinguishable from us may or may not be a mindless Zombie. There will never be any way to know, yet its functional principles will be as close as we can ever get to explaining the mind.
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  • The modal argument for hypercomputing minds.Selmer Bringsjord - 2004 - Theoretical Computer Science 317.
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