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  1. Bayesian reverse-engineering considered as a research strategy for cognitive science.Carlos Zednik & Frank Jäkel - 2016 - Synthese 193 (12):3951-3985.
    Bayesian reverse-engineering is a research strategy for developing three-level explanations of behavior and cognition. Starting from a computational-level analysis of behavior and cognition as optimal probabilistic inference, Bayesian reverse-engineers apply numerous tweaks and heuristics to formulate testable hypotheses at the algorithmic and implementational levels. In so doing, they exploit recent technological advances in Bayesian artificial intelligence, machine learning, and statistics, but also consider established principles from cognitive psychology and neuroscience. Although these tweaks and heuristics are highly pragmatic in character and (...)
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  • Modeling cross-situational word–referent learning: Prior questions.Chen Yu & Linda B. Smith - 2012 - Psychological Review 119 (1):21-39.
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  • What counts as local?Andrew W. Young - 1994 - Behavioral and Brain Sciences 17 (1):88-89.
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  • The nature of cerebral hemispheric specialisation in man: Quantitative vs. qualitative differences.Maria A. Wyke - 1981 - Behavioral and Brain Sciences 4 (1):78-79.
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  • On the operational definition of a toothache.Colin Wright - 1984 - Behavioral and Brain Sciences 7 (4):571.
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  • Memory: Two systems or one system with many subsystems?G. Wolters - 1984 - Behavioral and Brain Sciences 7 (2):256.
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  • An ecological approach to cognitive (im)penetrability.Rob Withagen & Claire F. Michaels - 1999 - Behavioral and Brain Sciences 22 (3):399-400.
    We offer an ecological (Gibsonian) alternative to cognitive (im)penetrability. Whereas Pylyshyn explains cognitive (im)penetrability by focusing solely on computations carried out by the nervous system, according to the ecological approach the perceiver as a knowing agent influences the entire animal-environmental system: in the determination of what constitutes the environment (affordances), what constitutes information, what information is detected and, thus, what is perceived.
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  • Mind the brain.Martha Wilson - 1982 - Behavioral and Brain Sciences 5 (3):393-393.
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  • Cognitive pluralism. [REVIEW]Daniel Williams - 2018 - Philosophical Psychology 31 (1):139-143.
    Much of contemporary philosophy assumes a close connection between thought and language. It is widely assumed, for example, that the structural units, semantic properties, and forms of reasoning as...
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  • Separating the issues involved in the role of bodily movement in perception and perceptual-motor coordination.Robert B. Welch - 1979 - Behavioral and Brain Sciences 2 (1):85-86.
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  • Cognition is not computation, for the reasons that computers don't solve the mind-body problems.Walter B. Weimer - 1980 - Behavioral and Brain Sciences 3 (1):152-153.
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  • Models as toothbrushes.Michael J. Watkins - 1984 - Behavioral and Brain Sciences 7 (1):86-86.
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  • The localization/distribution distinction in neuropsychology is related to the isomorphism/multiple meaning distinction in cell electrophysiology.Gerald S. Wasserman - 1994 - Behavioral and Brain Sciences 17 (1):87-88.
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  • 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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  • How do representations get processed in real nerve cells?Gerald S. Wasserman - 1984 - Behavioral and Brain Sciences 7 (1):85-85.
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  • The pros and cons of having a word for it.S. F. Walker - 1983 - Behavioral and Brain Sciences 6 (1):156-157.
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  • Three functions of motor-sensory feedback in object perception.Hans Wallach - 1979 - Behavioral and Brain Sciences 2 (1):84-85.
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  • On the function of mental imagery.David L. Waltz - 1979 - Behavioral and Brain Sciences 2 (4):569-570.
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  • Attentional factors in depth perception.Richard D. Walk - 1979 - Behavioral and Brain Sciences 2 (1):83-84.
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  • Visuomotor feedback: A short supplement to Gyr's journey around a polka-dotted cylinder.J. Jacques Vonèche - 1979 - Behavioral and Brain Sciences 2 (1):83-83.
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  • The mental representation of integers: An abstract-to-concrete shift in the understanding of mathematical concepts.Sashank Varma & Daniel L. Schwartz - 2011 - Cognition 121 (3):363-385.
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  • The Tractable Cognition Thesis.Iris Van Rooij - 2008 - Cognitive Science 32 (6):939-984.
    The recognition that human minds/brains are finite systems with limited resources for computation has led some researchers to advance theTractable Cognition thesis: Human cognitive capacities are constrained by computational tractability. This thesis, if true, serves cognitive psychology by constraining the space of computational‐level theories of cognition. To utilize this constraint, a precise and workable definition of “computational tractability” is needed. Following computer science tradition, many cognitive scientists and psychologists define computational tractability as polynomial‐time computability, leading to theP‐Cognition thesis. This article (...)
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  • The symbolic brain or the invisible hand?René van Hezewijk & Edward H. F. de Haan - 1994 - Behavioral and Brain Sciences 17 (1):85-86.
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  • Playing Flourens to Fodor's Gall.Tim van Gelder - 1994 - Behavioral and Brain Sciences 17 (1):84-84.
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  • Prosopagnosia, conscious awareness and the interactive brain.Robert Van Gulick - 1994 - Behavioral and Brain Sciences 17 (1):84-85.
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  • Spatial hemineglect in humans.Giuseppe Vallar - 1998 - Trends in Cognitive Sciences 2 (3):87-97.
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  • Internal representations and indeterminacy: A skeptical view.William R. Uttal - 1982 - Behavioral and Brain Sciences 5 (3):392-393.
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  • The functional architecture of visual attention may still be modular.Carlo Umiltà - 1994 - Behavioral and Brain Sciences 17 (1):82-83.
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  • The thesis of the efference-mediation of vision cannot be rationalized.M. T. Turvey - 1979 - Behavioral and Brain Sciences 2 (1):81-83.
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  • Relations among components and processes of memory.Endel Tulving - 1984 - Behavioral and Brain Sciences 7 (2):257.
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  • Précis of Elements of episodic memory.Endel Tulving - 1984 - Behavioral and Brain Sciences 7 (2):223.
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  • Chaotic itinerancy is a key to mental diversity.Ichiro Tsuda - 2004 - Behavioral and Brain Sciences 27 (4):586-587.
    Kampis proposes the study of chaotic itinerancy, pointing out its significance in domains of cognitive science and philosophy. He has discovered in the concept of chaotic itinerancy the possibility for a new dynamical approach that elucidates mental states with a physical basis. This approach may therefore provide the means to go beyond the connectionist approach. In accordance with his theory, I here highlight three issues regarding chaotic itinerancy: transitory dynamics, diversity, and self-modifying system.
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  • Computational resources do constrain behavior.John K. Tsotsos - 1991 - Behavioral and Brain Sciences 14 (3):506-507.
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  • Just how does ecphory work?Guy Tiberghien - 1984 - Behavioral and Brain Sciences 7 (2):255.
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  • Are theories of imagery theories of imagination? An active perception approach to conscious mental content.Nigel J. T. Thomas - 1999 - Cognitive Science 23 (2):207-245.
    Can theories of mental imagery, conscious mental contents, developed within cognitive science throw light on the obscure (but culturally very significant) concept of imagination? Three extant views of mental imagery are considered: quasi‐pictorial, description, and perceptual activity theories. The first two face serious theoretical and empirical difficulties. The third is (for historically contingent reasons) little known, theoretically underdeveloped, and empirically untried, but has real explanatory potential. It rejects the “traditional” symbolic computational view of mental contents, but is compatible with recentsituated (...)
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  • Animal versus human minds.H. S. Terrace - 1982 - Behavioral and Brain Sciences 5 (3):391-392.
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  • A behavioral theory of mind?H. S. Terrace - 1984 - Behavioral and Brain Sciences 7 (4):569.
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  • Temporal processing as related to hemispheric specialization for speech perception in normal and language impaired populations.Paula Tallal - 1981 - Behavioral and Brain Sciences 4 (1):77-78.
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  • Recognition and recall: The direct comparison experiment.Hidetsugu Tajika - 1984 - Behavioral and Brain Sciences 7 (2):254.
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  • Cerebral hemispheres: Specialized for the analysis of what?Michael Studdert-Kennedy - 1981 - Behavioral and Brain Sciences 4 (1):76-77.
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  • Computation without representation.Stephen P. Stich - 1980 - Behavioral and Brain Sciences 3 (1):152-152.
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  • Stage models of mental processing and the additive-factor method.Saul Sternberg - 1984 - Behavioral and Brain Sciences 7 (1):82-84.
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  • Methodological considerations in replicating Held and Rekosh's perceptual adaptation study.Martin J. Steinbach - 1979 - Behavioral and Brain Sciences 2 (1):81-81.
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  • A Cognitive Theory of Graphical and Linguistic Reasoning: Logic and Implementation.Keith Stenning & Jon Oberlander - 1995 - Cognitive Science 19 (1):97-140.
    We discuss external and internal graphical and linguistic representational systems. We argue that a cognitive theory of peoples' reasoning performance must account for (a) the logical equivalence of inferences expressed in graphical and linguistic form, and (b) the implementational differences that affect facility of inference. Our theory proposes that graphical representation limit abstraction and thereby aid “processibility”. We discuss the ideas of specificity and abstraction, and their cognitive relevance. Empirical support both comes from tasks which involve the manipulation of external (...)
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  • In the beginning was the word.J. E. R. Staddon - 1982 - Behavioral and Brain Sciences 5 (3):390-391.
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  • B. F. Skinner's theorizing.Douglas Stalker & Paul Ziff - 1984 - Behavioral and Brain Sciences 7 (4):569.
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  • Rationality and irrationality: Still fighting words.Paul Snow - 1991 - Behavioral and Brain Sciences 14 (3):505-506.
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  • On spatial symbols.William E. Smythe & Paul A. Kolers - 1979 - Behavioral and Brain Sciences 2 (4):568-569.
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  • Computation and symbolization.William E. Smythe - 1980 - Behavioral and Brain Sciences 3 (1):151-152.
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  • A Bayesian theory of thought.Howard Smokler - 1991 - Behavioral and Brain Sciences 14 (3):505-505.
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