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  1. Has consciousness a sharp edge?Robert A. M. Gregson - 1991 - Behavioral and Brain Sciences 14 (4):679-680.
  • Reasoning with Concepts: A Unifying Framework.Peter Gärdenfors & Matías Osta-Vélez - 2023 - Minds and Machines 1 (3):451-485.
    Over the past few decades, cognitive science has identified several forms of reasoning that make essential use of conceptual knowledge. Despite significant theoretical and empirical progress, there is still no unified framework for understanding how concepts are used in reasoning. This paper argues that the theory of conceptual spaces is capable of filling this gap. Our strategy is to demonstrate how various inference mechanisms which clearly rely on conceptual information—including similarity, typicality, and diagnosticity-based reasoning—can be modeled using principles derived from (...)
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  • What is the relation between language and consciousness?Jeffrey A. Gray - 1991 - Behavioral and Brain Sciences 14 (4):679-679.
  • The historical basis of scientific discovery.Gerd Grasshoff - 1994 - Behavioral and Brain Sciences 17 (3):545-546.
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  • Using relations within conceptual systems to translate across conceptual systems.R. Goldstone - 2002 - Cognition 84 (3):295-320.
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  • The empirical case for role-governed categories.Micah B. Goldwater, Arthur B. Markman & C. Hunt Stilwell - 2011 - Cognition 118 (3):359-376.
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  • What is adaptive about adaptive decision making? A parallel constraint satisfaction account.Andreas Glöckner, Benjamin E. Hilbig & Marc Jekel - 2014 - Cognition 133 (3):641-666.
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  • Creativity theory: Detail and testability.K. J. Gilhooly - 1994 - Behavioral and Brain Sciences 17 (3):544-545.
  • What does explanatory coherence explain?Ronald N. Giere - 1989 - Behavioral and Brain Sciences 12 (3):475-476.
  • Similarity and the development of rules.Dedre Gentner & José Medina - 1998 - Cognition 65 (2-3):263-297.
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  • Relations, Objects, and the Composition of Analogies.Dedre Gentner & Kenneth J. Kurtz - 2006 - Cognitive Science 30 (4):609-642.
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  • How to think about analogical inferences: A reply to Norton.Benjamin S. Genta - 2020 - Studies in History and Philosophy of Science Part A 82:17-24.
  • A note on “creativity and learning in a case-based explainer”.Dedre Gentner & Kenneth Forbus - 1990 - Artificial Intelligence 44 (3):373-375.
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  • Mapping relational structure in spatial reasoning.Merideth Gattis - 2004 - Cognitive Science 28 (4):589-610.
    Three experiments investigated whether the similarity of relational structures influences the interpretation of spatial representations. Adults were shown diagrams of hand gestures paired with simple statements and asked to judge the meaning of new gestures. In Experiment 1 the gestures were paired with active declarative statements. In Experiment 2, the gestures were paired with conjunctive and disjunctive relations. Experiment 3 used statements similar to those used in Experiment 1, but eliminated the initial object‐to‐object mapping provided in Experiments 1 and 2. (...)
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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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  • Art for art's sake.Alan Garnham - 1994 - Behavioral and Brain Sciences 17 (3):543-544.
    This piece is a commentary on a precis of Maggie Boden's book "The creative mind" published in Behavioral and Brain Sciences.
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  • The birth of an idea.Liane M. Gabora - 1994 - Behavioral and Brain Sciences 17 (3):543-543.
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  • Coherence: Beyond constraint satisfaction.Gareth Gabrys & Alan Lesgold - 1989 - Behavioral and Brain Sciences 12 (3):475-475.
  • Creativity, madness, and extra strong Al.K. W. M. Fulford - 1994 - Behavioral and Brain Sciences 17 (3):542-543.
  • Dream processing.David Foulkes - 1991 - Behavioral and Brain Sciences 14 (4):678-678.
  • MAC/FAC: A Model of Similarity‐Based Retrieval.Kenneth D. Forbus, Dedre Gentner & Keith Law - 1995 - Cognitive Science 19 (2):141-205.
    We present a model of similarity‐based retrieval that attempts to capture three seemingly contradictory psychological phenomena: (a) structural commonalities are weighed more heavily than surface commonalities in similarity judgments for items in working memory; (b) in retrieval, superficial similarity is more important than structural similarity; and yet (c) purely structural (analogical) remindings e sometimes experienced. Our model, MAC/FAC, explains these phenomena in terms of a two‐stage process. The first stage uses a computationally cheap, non‐structural matcher to filter candidate long‐term memory (...)
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  • Extending SME to Handle Large‐Scale Cognitive Modeling.Kenneth D. Forbus, Ronald W. Ferguson, Andrew Lovett & Dedre Gentner - 2017 - Cognitive Science 41 (5):1152-1201.
    Analogy and similarity are central phenomena in human cognition, involved in processes ranging from visual perception to conceptual change. To capture this centrality requires that a model of comparison must be able to integrate with other processes and handle the size and complexity of the representations required by the tasks being modeled. This paper describes extensions to Structure-Mapping Engine since its inception in 1986 that have increased its scope of operation. We first review the basic SME algorithm, describe psychological evidence (...)
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  • What about everyday creativity?Nick V. Flor - 1994 - Behavioral and Brain Sciences 17 (3):540-542.
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  • Creative thinking presupposes the capacity for thought.James H. Fetzer - 1994 - Behavioral and Brain Sciences 17 (3):539-540.
  • What's in a link?Jerome A. Feldman - 1989 - Behavioral and Brain Sciences 12 (3):474-475.
  • Conceptual Integration Networks.Gilles Fauconnier & Mark Turner - 1998 - Cognitive Science 22 (2):133-187.
    Conceptual integration—“blending”—is a general cognitive operation on a par with analogy, recursion, mental modeling, conceptual categorization, and framing. It serves a variety of cognitive purposes. It is dynamic, supple, and active in the moment of thinking. It yields products that frequently become entrenched in conceptual structure and grammar, and it often performs new work on its previously entrenched products as inputs. Blending is easy to detect in spectacular cases but it is for the most part a routine, workaday process that (...)
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  • Integrating structure and meaning: a distributed model of analogical mapping.Chris Eliasmith & Paul Thagard - 2001 - Cognitive Science 25 (2):245-286.
    In this paper we present Drama, a distributed model of analogical mapping that integrates semantic and structural constraints on constructing analogies. Specifically, Drama uses holographic reduced representations (Plate, 1994), a distributed representation scheme, to model the effects of structure and meaning on human performance of analogical mapping. Drama is compared to three symbolic models of analogy (SME, Copycat, and ACME) and one partially distributed model (LISA). We describe Drama's performance on a number of example analogies and assess the model in (...)
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  • Observing protocol.Judith Economos - 1991 - Behavioral and Brain Sciences 14 (4):677-677.
  • On the testability of ECHO.D. C. Earle - 1989 - Behavioral and Brain Sciences 12 (3):474-474.
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  • Goals, analogy, and the social constraints of scientific discovery.Kevin Dunbar & Lisa M. Baker - 1994 - Behavioral and Brain Sciences 17 (3):538-539.
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  • Coherence across consciousness levels: Symmetric visual displays spare working memory resources.Magda L. Dumitru - 2015 - Consciousness and Cognition 38:139-149.
  • Conscious acts and their objects.Fred Dretske - 1991 - Behavioral and Brain Sciences 14 (4):676-677.
  • Empirical investigation or rational reconstruction?Stephen M. Downes - 1991 - Behavioral and Brain Sciences 14 (4):742-743.
  • Individual Differences in Relational Learning and Analogical Reasoning: A Computational Model of Longitudinal Change.Leonidas A. A. Doumas, Robert G. Morrison & Lindsey E. Richland - 2018 - Frontiers in Psychology 9.
  • Developing structured representations.Leonidas A. A. Doumas & Lindsey E. Richland - 2008 - Behavioral and Brain Sciences 31 (4):384-385.
    Leech et al.'s model proposes representing relations as primed transformations rather than as structured representations (explicit representations of relations and their roles dynamically bound to fillers). However, this renders the model unable to explain several developmental trends (including relational integration and all changes not attributable to growth in relational knowledge). We suggest looking to an alternative computational model that learns structured representations from examples.
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  • A theory of the discovery and predication of relational concepts.Leonidas A. A. Doumas, John E. Hummel & Catherine M. Sandhofer - 2008 - Psychological Review 115 (1):1-43.
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  • Computation: Part of the problem of creativity.Merlin Donald - 1994 - Behavioral and Brain Sciences 17 (3):537-538.
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  • Comprehension‐Based Skill Acquisition.Stephanie M. Doane, Young Woo Sohn, Danielle S. McNamara & David Adams - 2000 - Cognitive Science 24 (1):1-52.
    We present a comprehension‐based computational model of UNIX user skill acquisition and performance in a training context (UNICOM). The work extends a comprehension‐based theory of planning to account for skill acquisition and learning. Individual models of 22 UNIX users were constructed and used to simulate user performance on successive command production problems in a training context. Comparisons of model and the human empirical data result in a high degree of agreement, validating the ability of UNICOM to predict user response to (...)
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  • On the spontaneous discovery of a mathematical relation during problem solving.James A. Dixon & Ashley S. Bangert - 2004 - Cognitive Science 28 (3):433-449.
    People spontaneously discover new representations during problem solving. Discovery of a mathematical representation is of special interest, because it shows that the underlying structure of the problem has been extracted. In the current study, participants solved gear‐system problems as part of a game. Although none of the participants initially used a mathematical representation, many discovered a parity‐based, mathematical strategy during problem solving. Two accounts of the spontaneous discovery of mathematical strategies were tested. According to the automatic schema abstraction hypothesis, experience (...)
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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.
  • A Memory‐Based Theory of Verbal Cognition.Simon Dennis - 2005 - Cognitive Science 29 (2):145-193.
    The syntagmatic paradigmatic model is a distributed, memory‐based account of verbal processing. Built on a Bayesian interpretation of string edit theory, it characterizes the control of verbal cognition as the retrieval of sets of syntagmatic and paradigmatic constraints from sequential and relational long‐term memory and the resolution of these constraints in working memory. Lexical information is extracted directly from text using a version of the expectation maximization algorithm. In this article, the model is described and then illustrated on a number (...)
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  • Thagard's Principle 7 and Simpson's paradox.Robyn M. Dawes - 1989 - Behavioral and Brain Sciences 12 (3):472-473.
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  • Creativity, combination, and cognition.Terry Dartnall - 1994 - Behavioral and Brain Sciences 17 (3):537-537.
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  • On the premature demise of causal functions for consciousness in human information processing.Dale Dagenbach - 1991 - Behavioral and Brain Sciences 14 (4):675-675.
  • Efficient Creativity: Constraint‐Guided Conceptual Combination.Fintan J. Costello & Mark T. Keane - 2000 - Cognitive Science 24 (2):299-349.
    This paper describes a theory that explains both the creativity and the efficiency of people's conceptual combination. In the constraint theory, conceptual combination is controlled by three constraints of diagnosticity, plausibility, and informativeness. The constraints derive from the pragmatics of communication as applied to compound phrases. The creativity of combination arises because the constraints can be satisfied in many different ways. The constraint theory yields an algorithmic model of the efficiency of combination. The C3 model admits the full creativity of (...)
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  • Consciousness and making choices.Raymond S. Corteen - 1991 - Behavioral and Brain Sciences 14 (4):674-674.
  • Two problems for the explanatory coherence theory of acceptability.L. Jonathan Cohen - 1989 - Behavioral and Brain Sciences 12 (3):471-471.
  • Two facets of cognitive control in analogical mapping: The role of semantic interference resolution andgoal-driven structure selection.Anna Chuderska & Adam Chuderski - 2014 - Thinking and Reasoning 20 (3):352-371.
    (2013). Two facets of cognitive control in analogical mapping: The role of semantic interference resolution andgoal-driven structure selection. Thinking & Reasoning. ???aop.label???
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  • Language Helps Children Succeed on a Classic Analogy Task.Stella Christie & Dedre Gentner - 2014 - Cognitive Science 38 (2):383-397.
    Adult humans show exceptional relational ability relative to other species. In this research, we trace the development of this ability in young children. We used a task widely used in comparative research—the relational match-to-sample task, which requires participants to notice and match the identity relation: for example, AA should match BB instead of CD. Despite the simplicity of this relation, children under 4 years of age failed to pass this test (Experiment 1), and their performance did not improve even with (...)
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  • Assimilating evidence: The key to revision?Michelene T. H. Chi - 1989 - Behavioral and Brain Sciences 12 (3):470-471.