Results for 'Stevan Nikolin'

126 found
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  1.  22
    Change in Mean Frequency of Resting-State Electroencephalography after Transcranial Direct Current Stimulation.Tjeerd W. Boonstra, Stevan Nikolin, Ann-Christin Meisener, Donel M. Martin & Colleen K. Loo - 2016 - Frontiers in Human Neuroscience 10.
  2. Minds, machines and Searle.Stevan Harnad - 1989 - Journal of Theoretical and Experimental Artificial Intelligence 1:5-25.
    Searle's celebrated Chinese Room Argument has shaken the foundations of Artificial Intelligence. Many refutations have been attempted, but none seem convincing. This paper is an attempt to sort out explicitly the assumptions and the logical, methodological and empirical points of disagreement. Searle is shown to have underestimated some features of computer modeling, but the heart of the issue turns out to be an empirical question about the scope and limits of the purely symbolic (computational) model of the mind. Nonsymbolic modeling (...)
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  3.  54
    Creative disagreement.Stevan Harnad - unknown
    Do scientists agree? It is not only unrealistic to suppose that they do, but probably just as unrealistic to think that they ought to. Agreement is for what is already established scientific history. The current and vital ongoing aspect of science consists of an active and often heated interaction of data, ideas and minds, in a process one might call "creative disagreement." The "scientific method" is largely derived from a reconstruction based on selective hindsight. What actually goes on has much (...)
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  4.  23
    Validating research performance metrics against peer rankings.Stevan Harnad - 2008 - Ethics in Science and Environmental Politics 8 (1):103-107.
  5.  6
    Moralnost i društvena kriza.Stevan Krnjajić (ed.) - 1995 - Beograd: Institut za pedagoška istraživanja.
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  6. Poisk edinit︠s︡y antropnoĭ t︠s︡ivilizat︠s︡ii.Viktor Vladimirovich Nikolin - 2018 - Omsk: Izdatelʹstvo IP Sheludivchenko A.V..
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  7. 4 Years of Animal Sentience.Walter Veit & Stevan Harnad - forthcoming - Psychology Today.
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  8.  6
    From research policy to social intelligence: essays for Stevan Dedijer.Stevan Dedijer, Jan Annerstedt & Andrew Jamison (eds.) - 1988 - Houndmills, Basingstoke, Hamphsire: Macmillan Press.
  9.  45
    Ethics of open access to biomedical research: Just a special case of ethics of open access to research.Stevan Harnad - 2007 - Philosophy, Ethics, and Humanities in Medicine 2:31.
    The ethical case for Open Access (OA) (free online access) to research findings is especially salient when it is public health that is being compromised by needless access restrictions. But the ethical imperative for OA is far more general: It applies to all scientific and scholarly research findings published in peer-reviewed journals. And peer-to-peer access is far more important than direct public access. Most research is funded so as to be conducted and published, by researchers, in order to be taken (...)
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  10. Scholarly skywri ng at the speed of thought.Stevan Harnad - unknown
    The evolu on of language made it possible for us to think aloud, share our thoughts, pass them on by word‐of‐mouth.
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  11. What is computation (and is cognition that).Harnad Stevan - 1995 - Minds and Machines 4:377-378.
  12.  46
    Against computational hermeneutics.Stevan Harnad - 1990 - Social Epistemology 4:167-172.
    Critique of Computationalism as merely projecting hermeneutics (i.e., meaning originating from the mind of an external interpreter) onto otherwise intrinsically meaningless symbols.
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  13.  16
    Underdeveloped science in underdeveloped countries.Stevan Dedijer - 1963 - Minerva 2 (1):61-81.
  14.  7
    Beyond Simulacrum: West in Westworld.Stevan Bradić - 2020 - Filozofska Istrazivanja 40 (4):745-768.
    As an atypical product of mass culture, the acclaimed series Westworld presents us with a layered dystopian narrative formed around several political issues relevant to our contemporary society. It uses a pastiche of the American history, staged as the Wild West­themed amusement park, presented in the form of simulacrum. As a reference with no referent, this park uses a network of historical signifiers to construct a space for the externalisation of fantasies of its clients, consequently commodifying the imaginary itself, and (...)
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  15.  18
    The Revolt of the Widows: The Social World of the Apocryphal Acts.Stevan L. Davies - 1963 - Southern Illinois University Press.
    In this first study of the social context that produced the Apocryphal Acts, Stevan L. Davies con­tends that women wrote the Acts and that the “Acts appear to have been a striving by Christian women for both a mode of self-expression and ...
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  16.  13
    Evacuative particles.Stevan L. Davies - 1981 - Sophia 20 (1):43-47.
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  17.  25
    The unity of scientific policy ДВАЖЦЫ ДВА = two times two = = 2×2.Stevan Dedijer & Guy Hunter - 1964 - Minerva 3 (1):126-130.
  18. The symbol grounding problem.Stevan Harnad - 1990 - Physica D 42:335-346.
    There has been much discussion recently about the scope and limits of purely symbolic models of the mind and about the proper role of connectionism in cognitive modeling. This paper describes the symbol grounding problem : How can the semantic interpretation of a formal symbol system be made intrinsic to the system, rather than just parasitic on the meanings in our heads? How can the meanings of the meaningless symbol tokens, manipulated solely on the basis of their shapes, be grounded (...)
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  19.  20
    Controversies in Neuroscience III Signal transduction in the retina.Paul Cordo & Stevan Harnad - 1995 - Behavioral and Brain Sciences 18 (3):401-401.
  20.  30
    In memoriam: Jeffrey gray (1934–2004).Helen Hodges, Stevan Harnad, Barbara L. Finlay & Paul Bloom - 2004 - Behavioral and Brain Sciences 27 (1):1-2.
    Many strands are woven into the ideas and work of Jeffrey Gray. From a background of classical languages and a spell in military intelligence spent honing skills in languages and typing, he took two BA degrees (in modern languages and psychology) at Oxford University. He then trained as a clinical psychologist at the Institute of Psychiatry (IOP), London, capping this with a PhD on the sources of emotional behaviour.
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  21.  14
    Legal document assembly system for introducing law students with legal drafting.Marko Marković & Stevan Gostojić - 2023 - Artificial Intelligence and Law 31 (4):829-863.
    In this paper, we present a method for introducing law students to the writing of legal documents. The method uses a machine-readable representation of the legal knowledge to support document assembly and to help the students to understand how the assembly is performed. The knowledge base consists of enacted legislation, document templates, and assembly instructions. We propose a system called LEDAS (LEgal Document Assembly System) for the interactive assembly of legal documents. It guides users through the assembly process and provides (...)
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  22.  99
    Consciousness: An afterthought.Stevan Harnad - 1982 - Cognition and Brain Theory 5:29-47.
    There are many possible approaches to the mind/brain problem. One of the most prominent, and perhaps the most practical, is to ignore it.
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  23. Distributed cognition: Cognizing, autonomy and the Turing test.Stevan Harnad & Itiel E. Dror - 2006 - Pragmatics and Cognition 14 (2):14.
    Some of the papers in this special issue distribute cognition between what is going on inside individual cognizers' heads and their outside worlds; others distribute cognition among different individual cognizers. Turing's criterion for cognition was individual, autonomous input/output capacity. It is not clear that distributed cognition could pass the Turing Test.
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  24.  59
    Evidence of hypertext in the scholarly archive.Leslie Carr & Stevan Harnad - unknown
    Dalgaard's recent article [3] argues that the part of the Web that constitutes the scientific literature is composed of increasingly linked archives. He describes the move in the online communications of the scientific community towards an expanding zone of secondorder textuality, of an evolving network of texts commenting on, citing, classifying, abstracting, listing and revising other texts. In this respect, archives are becoming a network of texts rather than simply a classified collection of texts. He emphasizes the definition of hypertext (...)
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  25. Categorical perception.Stevan Harnad - 2003 - In L. Nadel (ed.), Encyclopedia of Cognitive Science. Nature Publishing Group. pp. 67--4.
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  26. Connecting object to symbol in modeling cognition.Stevan Harnad - 1992 - In A. Clark & Ronald Lutz (eds.), Connectionism in Context. Springer Verlag. pp. 75--90.
    Connectionism and computationalism are currently vying for hegemony in cognitive modeling. At first glance the opposition seems incoherent, because connectionism is itself computational, but the form of computationalism that has been the prime candidate for encoding the "language of thought" has been symbolic computationalism (Dietrich 1990, Fodor 1975, Harnad 1990c; Newell 1980; Pylyshyn 1984), whereas connectionism is nonsymbolic (Fodor & Pylyshyn 1988, or, as some have hopefully dubbed it, "subsymbolic" Smolensky 1988). This paper will examine what is and is not (...)
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  27.  71
    Psychophysical and cognitive aspects of categorical perception:A critical overview.Stevan Harnad - unknown
    There are many entry points into the problem of categorization. Two particularly important ones are the so-called top-down and bottom-up approaches. Top-down approaches such as artificial intelligence begin with the symbolic names and descriptions for some categories already given; computer programs are written to manipulate the symbols. Cognitive modeling involves the further assumption that such symbol-interactions resemble the way our brains do categorization. An explicit expectation of the top-down approach is that it will eventually join with the bottom-up approach, which (...)
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  28. Minds, machines and Searle.Stevan Harnad - 1989 - Journal of Experimental and Theoretical Artificial Intelligence 1 (4):5-25.
    Searle's celebrated Chinese Room Argument has shaken the foundations of Artificial Intelligence. Many refutations have been attempted, but none seem convincing. This paper is an attempt to sort out explicitly the assumptions and the logical, methodological and empirical points of disagreement. Searle is shown to have underestimated some features of computer modeling, but the heart of the issue turns out to be an empirical question about the scope and limits of the purely symbolic model of the mind. Nonsymbolic modeling turns (...)
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  29. To Cognize is to Categorize: Cognition is Categorization.Stevan Harnad - 2005 - In C. Lefebvre & H. Cohen (eds.), Handbook of Categorization. Elsevier.
    2. Invariant Sensorimotor Features ("Affordances"). To say this is not to declare oneself a Gibsonian, whatever that means. It is merely to point out that what a sensorimotor system can do is determined by what can be extracted from its motor interactions with its sensory input. If you lack sonar sensors, then your sensorimotor system cannot do what a bat's can do, at least not without the help of instruments. Light stimulation affords color vision for those of us with the (...)
     
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  30. 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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  31. 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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  32.  14
    Wanted: A world handbook of research and development statistics. [REVIEW]Stevan Debiter - 1968 - Minerva 7 (1-2):88-91.
  33.  10
    The science of science: A programme and a plea. [REVIEW]Stevan Dedijer - 1966 - Minerva 4 (4):489-504.
  34. Can a machine be conscious? How?Stevan Harnad - 2003 - Journal of Consciousness Studies 10 (4-5):67-75.
    A "machine" is any causal physical system, hence we are machines, hence machines can be conscious. The question is: which kinds of machines can be conscious? Chances are that robots that can pass the Turing Test -- completely indistinguishable from us in their behavioral capacities -- can be conscious (i.e. feel), but we can never be sure (because of the "other-minds" problem). And we can never know HOW they have minds, because of the "mind/body" problem. We can only know how (...)
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  35. 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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  36.  17
    Distributed processes, distributed cognizers, and collaborative cognition.Stevan Harnad - 2005 - Pragmatics and Cognition 13 (3):501-514.
    Cognition is thinking; it feels like something to think, and only those who can feel can think. There are also things that thinkers can do. We know neither how thinkers can think nor how they are able to do what they can do. We are waiting for cognitive science to discover how. Cognitive science does this by testing hypotheses about what processes can generate what doing.This is called the Turing Test. It cannot test whether a process can generate feeling, hence (...)
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  37. Gender and Religion: On the Complexity of Symbols.Caroline Walker Bynum, Stevan Harrell & Paula Richman - 1991 - Philosophy East and West 41 (4):594-598.
  38. Symbol‐grounding Problem.Stevan Harnad - 2003 - In L. Nadel (ed.), Encyclopedia of Cognitive Science. Nature Publishing Group.
     
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  39. Turing indistinguishability and the blind watchmaker.Stevan Harnad - 2002 - In James H. Fetzer (ed.), Consciousness Evolving. John Benjamins. pp. 3-18.
    Many special problems crop up when evolutionary theory turns, quite naturally, to the question of the adaptive value and causal role of consciousness in human and nonhuman organisms. One problem is that -- unless we are to be dualists, treating it as an independent nonphysical force -- consciousness could not have had an independent adaptive function of its own, over and above whatever behavioral and physiological functions it "supervenes" on, because evolution is completely blind to the difference between a conscious (...)
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  40. Symbol grounding and the origin of language.Stevan Harnad - 2002 - In Matthias Scheutz (ed.), Computationalism: New Directions. MIT Press.
    What language allows us to do is to "steal" categories quickly and effortlessly through hearsay instead of having to earn them the hard way, through risky and time-consuming sensorimotor "toil" (trial-and-error learning, guided by corrective feedback from the consequences of miscategorisation). To make such linguistic "theft" possible, however, some, at least, of the denoting symbols of language must first be grounded in categories that have been earned through sensorimotor toil (or else in categories that have already been "prepared" for us (...)
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  41. Categorical Perception and the Evolution of Supervised Learning in Neural Nets.Stevan Harnad & SJ Hanson - unknown
    Some of the features of animal and human categorical perception (CP) for color, pitch and speech are exhibited by neural net simulations of CP with one-dimensional inputs: When a backprop net is trained to discriminate and then categorize a set of stimuli, the second task is accomplished by "warping" the similarity space (compressing within-category distances and expanding between-category distances). This natural side-effect also occurs in humans and animals. Such CP categories, consisting of named, bounded regions of similarity space, may be (...)
     
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  42.  48
    Learned Inquiry and the Net: The Role of Peer Review, Peer Commentary and Copyright.Stevan Harnad - unknown
    Peer Review and Copyright each have a double role: Formal refereeing protects (R1) the author from publishing and (R2) the reader from reading papers that are not of sufficient quality. Copyright protects the author from (C1) theft of text and (C2) theft of authorship. It has been suggested that in the electronic medium we can dispense with peer review, "publish" everything, and let browsing and commentary do the quality control. It has also been suggested that special safeguards and laws may (...)
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  43.  45
    Grounding symbols in the analog world with neural nets a hybrid model.Stevan Harnad - unknown
    1.1 The predominant approach to cognitive modeling is still what has come to be called "computationalism" (Dietrich 1990, Harnad 1990b), the hypothesis that cognition is computation. The more recent rival approach is "connectionism" (Hanson & Burr 1990, McClelland & Rumelhart 1986), the hypothesis that cognition is a dynamic pattern of connections and activations in a "neural net." Are computationalism and connectionism really deeply different from one another, and if so, should they compete for cognitive hegemony, or should they collaborate? These (...)
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  44. Correlation vs. causality: How/why the mind-body problem is hard.Stevan Harnad - 2000 - Journal of Consciousness Studies 7 (4):54-61.
    The Mind/Body Problem is about causation not correlation. And its solution will require a mechanism in which the mental component somehow manages to play a causal role of its own, rather than just supervening superflously on other, nonmental components that look, for all the world, as if they can do the full causal job perfectly well without it. Correlations confirm that M does indeed "supervene" on B, but causality is needed to show how/why M is not supererogatory; and that's the (...)
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  45.  41
    Scholarly skywriting and the prepublicationcontinuum of scientific inquiry.Stevan Harnad - unknown
    William Gardner's proposal to establish a searchable, retrievable electronic archive is fine, as far as it goes. The potential role of electronic networks in scientific publication, however, goes far beyond providing searchable electronic archives for electronic journals. The whole process of scholarly communication is currently undergoing a revolution comparable to the one occasioned by the invention of printing. On the brink of intellectual perestroika is that vast PREPUBLICATION phase of scientific inquiry in which ideas and findings are discussed informally with (...)
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  46.  21
    Experimental Analysis of Naming Behavior Cannot Explain Naming Capacity.Stevan Harnad - unknown
    The experimental analysis of naming behavior can tell us exactly the kinds of things Horne & Lowe (H & L) report here: (1) the conditions under which people and animals succeed or fail in naming things and (2) the conditions under which bidirectional associations are formed between inputs (objects, pictures of objects, seen or heard names of objects) and outputs (spoken names of objects, multimodal operations on objects). The "stimulus equivalence" that H & L single out is really just the (...)
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  47.  42
    Grounding Symbolic Capacity in Robotic Capacity.Stevan Harnad - unknown
    According to "computationalism" (Newell, 1980; Pylyshyn 1984; Dietrich 1990), mental states are computational states, so if one wishes to build a mind, one is actually looking for the right program to run on a digital computer. A computer program is a semantically interpretable formal symbol system consisting of rules for manipulating symbols on the basis of their shapes, which are arbitrary in relation to what they can be systematically interpreted as meaning. According to computationalism, every physical implementation of the right (...)
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  48.  57
    Learned Categorical Perception in Neural Nets: Implications for Symbol Grounding.Stevan Harnad & Stephen J. Hanson - unknown
    After people learn to sort objects into categories they see them differently. Members of the same category look more alike and members of different categories look more different. This phenomenon of within-category compression and between-category separation in similarity space is called categorical perception (CP). It is exhibited by human subjects, animals and neural net models. In backpropagation nets trained first to auto-associate 12 stimuli varying along a onedimensional continuum and then to sort them into 3 categories, CP arises as a (...)
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  49.  6
    Rational Disagreement in Peer Review. [REVIEW]Stevan Harnad - 1985 - Science, Technology and Human Values 10 (3):55-62.
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  50. 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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