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Unified theories of cognition

Cambridge, Mass.: Harvard University Press (1990)

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  1. Mind architecture and brain architecture.Camilo J. Cela-Conde & Gisèle Marty - 1997 - Biology and Philosophy 12 (3):327-340.
    The use of the computer metaphor has led to the proposal of mind architecture (Pylyshyn 1984; Newell 1990) as a model of the organization of the mind. The dualist computational model, however, has, since the earliest days of psychological functionalism, required that the concepts mind architecture and brain architecture be remote from each other. The development of both connectionism and neurocomputational science, has sought to dispense with this dualism and provide general models of consciousness – a uniform cognitive architecture –, (...)
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  • There's more to mental states than meets the inner “l”.Kimberly Wright Cassidy - 1993 - Behavioral and Brain Sciences 16 (1):34-35.
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  • What one intelligence test measures: A theoretical account of the processing in the Raven Progressive Matrices Test.Patricia A. Carpenter, Marcel A. Just & Peter Shell - 1990 - Psychological Review 97 (3):404-431.
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  • Representational redescription and cognitive architectures.Antonella Carassa & Maurizio Tirassa - 1994 - Behavioral and Brain Sciences 17 (4):711-712.
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  • Representational redescription and cognitive architectures.Antonella Carassa & Maurizio Tirassa - 1994 - Carassa, Antonella and Tirassa, Maurizio (1994) Representational Redescription and Cognitive Architectures. [Journal (Paginated)] 17 (4):711-712.
    We focus on Karmiloff-Smith's Representational redescription model, arguing that it poses some problems concerning the architecture of a redescribing system. To discuss the topic, we consider the implicit/explicit dichotomy and the relations between natur al language and the language of thought. We argue that the model regards how knowledge is employed rather than how it is represented in the system.
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  • On central cognition.Peter Carruthers - 2014 - Philosophical Studies 170 (1):143-162.
    This article examines what is known about the cognitive science of working memory, and brings the findings to bear in evaluating philosophical accounts of central cognitive processes of thinking and reasoning. It is argued that central cognition is sensory based, depending on the activation and deployment of sensory images of various sorts. Contrary to a broad spectrum of philosophical opinion, the central mind does not contain any workspace within which goals, decisions, intentions, or non-sensory judgments can be active.Introduction: philosophers’ commitmentsMost (...)
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  • Creative action in mind.Peter Carruthers - 2011 - Philosophical Psychology 24 (4):437 - 461.
    The goal of this article is to display the attractiveness of a novel account of the place of creativity in the human mind. This is designed to supplement (and perhaps replace) the widespread assumption that creativity is thought-based, involving novel combinations of concepts to form creative thoughts, with the creativity of action being parasitic upon prior creative thinking. According to the proposed account, an additional (or perhaps alternative) locus of creativity lies in the assembly and activation of action-schemata, with creative (...)
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  • What's getting redescribed?Robert L. Campbell - 1994 - Behavioral and Brain Sciences 17 (4):710-711.
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  • Knowing levels and the child's understanding of mind.Robert L. Campbell & Mark H. Bickhard - 1993 - Behavioral and Brain Sciences 16 (1):33-34.
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  • Serial modules in parallel: The psychological refractory period and perfect time-sharing.Michael D. Byrne & John R. Anderson - 2001 - Psychological Review 108 (4):847-869.
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  • A working memory model of a common procedural error.Michael D. Byrne & Susan Bovair - 1997 - Cognitive Science 21 (1):31-61.
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  • Toward a Unified Sub-symbolic Computational Theory of Cognition.Martin V. Butz - 2016 - Frontiers in Psychology 7:171252.
    This paper proposes how various disciplinary theories of cognition may be combined into a unifying, sub-symbolic, computational theory of cognition. The following theories are considered for integration: psychological theories, including the theory of event coding, event segmentation theory, the theory of anticipatory behavioral control, and concept development; artificial intelligence and machine learning theories, including reinforcement learning and generative artificial neural networks; and theories from theoretical and computational neuroscience, including predictive coding and free energy-based inference. In the light of such a (...)
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  • Towards an ecology of mind.George Butterworth - 1993 - Behavioral and Brain Sciences 16 (1):31-32.
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  • “Semantic procedure” is an oxymoron.Alan Bundy - 1993 - Behavioral and Brain Sciences 16 (2):339-340.
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  • Interpretation‐based processing: a unified theory of semantic sentence comprehension.Raluca Budiu & John R. Anderson - 2004 - Cognitive Science 28 (1):1-44.
    We present interpretation‐based processing—a theory of sentence processing that builds a syntactic and a semantic representation for a sentence and assigns an interpretation to the sentence as soon as possible. That interpretation can further participate in comprehension and in lexical processing and is vital for relating the sentence to the prior discourse. Our theory offers a unified account of the processing of literal sentences, metaphoric sentences, and sentences containing semantic illusions. It also explains how text can prime lexical access. We (...)
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  • References.Jaegwon Kim - 2006 - Critical Review: A Journal of Politics and Society 18 (1-3):331-360.
    . References. Critical Review: Vol. 18, Democratic Competence, pp. 331-360.
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  • The phantom limb extrapolation.Willard L. Brigner - 1993 - Behavioral and Brain Sciences 16 (1):139-139.
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  • Biological Agency: Its Subjective Foundations and a Large-Scale Taxonomy.Adelina Brizio & Maurizio Tirassa - 2016 - Frontiers in Psychology 7.
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  • Mental models cannot exclude mental logic and make little sense without it.Martin D. S. Braine - 1993 - Behavioral and Brain Sciences 16 (2):338-339.
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  • Two ways of learning associations.Luke Boucher & Zoltán Dienes - 2003 - Cognitive Science 27 (6):807-842.
    How people learn chunks or associations between adjacent items in sequences was modelled. Two previously successful models of how people learn artificial grammars were contrasted: the CCN, a network version of the competitive chunker of Servan‐Schreiber and Anderson [J. Exp. Psychol.: Learn. Mem. Cogn. 16 (1990) 592], which produces local and compositionally‐structured chunk representations acquired incrementally; and the simple recurrent network (SRN) of Elman [Cogn. Sci. 14 (1990) 179], which acquires distributed representations through error correction. The models' susceptibility to two (...)
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  • Handbook of Evolutionary Thinking in the Sciences.Thomas Heams, Philippe Huneman, Guillaume Lecointre & Marc Silberstein (eds.) - 2015 - Springer.
    The Darwinian theory of evolution is itself evolving and this book presents the details of the core of modern Darwinism and its latest developmental directions. The authors present current scientific work addressing theoretical problems and challenges in four sections, beginning with the concepts of evolution theory, its processes of variation, heredity, selection, adaptation and function, and its patterns of character, species, descent and life. The second part of this book scrutinizes Darwinism in the philosophy of science and its usefulness in (...)
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  • Doing Without Schema Hierarchies: A Recurrent Connectionist Approach to Normal and Impaired Routine Sequential Action.Matthew Botvinick & David C. Plaut - 2004 - Psychological Review 111 (2):395-429.
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  • A perspective on psychophysics is not derived just from the history of psychophysicists.Gunnar Borg - 1993 - Behavioral and Brain Sciences 16 (1):138-139.
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  • Representational redescription: A question of sequence.Margaret A. Boden - 1994 - Behavioral and Brain Sciences 17 (4):708-708.
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  • A Fodorian guide to Switzerland: Jung and Piaget combined?Péter Bodor & Csaba Pléh - 1994 - Behavioral and Brain Sciences 17 (4):709-710.
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  • The real problem with constructivism.Paul Bloom & Karen Wynn - 1994 - Behavioral and Brain Sciences 17 (4):707-708.
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  • Cognitive architectures for artificial intelligence ethics.Steve J. Bickley & Benno Torgler - 2023 - AI and Society 38 (2):501-519.
    As artificial intelligence (AI) thrives and propagates through modern life, a key question to ask is how to include humans in future AI? Despite human involvement at every stage of the production process from conception and design through to implementation, modern AI is still often criticized for its “black box” characteristics. Sometimes, we do not know what really goes on inside or how and why certain conclusions are met. Future AI will face many dilemmas and ethical issues unforeseen by their (...)
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  • Goal neglect and knowledge chunking in the construction of novel behaviour.Apoorva Bhandari & John Duncan - 2014 - Cognition 130 (1):11-30.
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  • Wittgenstein on Incompleteness Makes Paraconsistent Sense.Francesco Berto - 2008 - In Francesco Berto, Edwin Mares, Koji Tanaka & Francesco Paoli (eds.), Paraconsistency: Logic and Applications. Springer. pp. 257--276.
    I provide an interpretation of Wittgenstein's much criticized remarks on Gödel's First Incompleteness Theorem in the light of paraconsistent arithmetics: in taking Gödel's proof as a paradoxical derivation, Wittgenstein was right, given his deliberate rejection of the standard distinction between theory and metatheory. The reasoning behind the proof of the truth of the Gödel sentence is then performed within the formal system itself, which turns out to be inconsistent. I show that the models of paraconsistent arithmetics (obtained via the Meyer-Mortensen (...)
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  • The case for connectionism.William Bechtel - 1993 - Philosophical Studies 71 (2):119-54.
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  • Philosophy 
of 
the 
Cognitive 
Sciences.William Bechtel & Mitchell Herschbach - 2010-01-04 - In Fritz Allhoff (ed.), Philosophies of the Sciences. Wiley‐Blackwell. pp. 239--261.
    Cognitive science is an interdisciplinary research endeavor focusing on human cognitive phenomena such as memory, language use, and reasoning. It emerged in the second half of the 20th century and is charting new directions at the beginning of the 21st century. This chapter begins by identifying the disciplines that contribute to cognitive science and reviewing the history of the interdisciplinary engagements that characterize it. The second section examines the role that mechanistic explanation plays in cognitive science, while the third focuses (...)
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  • Natural deduction in connectionist systems.William Bechtel - 1994 - Synthese 101 (3):433-463.
    The relation between logic and thought has long been controversial, but has recently influenced theorizing about the nature of mental processes in cognitive science. One prominent tradition argues that to explain the systematicity of thought we must posit syntactically structured representations inside the cognitive system which can be operated upon by structure sensitive rules similar to those employed in systems of natural deduction. I have argued elsewhere that the systematicity of human thought might better be explained as resulting from the (...)
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  • Mechanisms in cognitive psychology: What are the operations?William Bechtel - 2008 - Philosophy of Science 75 (5):983-994.
    Cognitive psychologists, like biologists, frequently describe mechanisms when explaining phenomena. Unlike biologists, who can often trace material transformations to identify operations, psychologists face a more daunting task in identifying operations that transform information. Behavior provides little guidance as to the nature of the operations involved. While not itself revealing the operations, identification of brain areas involved in psychological mechanisms can help constrain attempts to characterize the operations. In current memory research, evidence that the same brain areas are involved in what (...)
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  • Connectionism and the philosophy of mind: An overview.William Bechtel - 1988 - Southern Journal of Philosophy 26 (S1):17-41.
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  • Connectionism and the philosophy of mind: An overview.William Bechtel - 1991 - In Terence E. Horgan & John L. Tienson (eds.), Connectionism and the Philosophy of Mind. Kluwer Academic Publishers. pp. 30--59.
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  • The structure and function of spontaneous analogising in domain-based problem solving.Christopher R. Bearman, Linden J. Ball & Thomas C. Ormerod - 2007 - Thinking and Reasoning 13 (3):273 – 294.
    Laboratory-based studies of problem solving suggest that transfer of solution principles from an analogue to a target arises only minimally without the presence of directive hints. Recently, however, real-world studies indicate that experts frequently and spontaneously use analogies in domain-based problem solving. There is also some evidence that in certain circumstances domain novices can draw analogies designed to illustrate arguments. It is less clear, however, whether domain novices can invoke analogies in the sophisticated manner of experts to enable them to (...)
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  • Plausible inference and implicit representation.Malcolm I. Bauer - 1993 - Behavioral and Brain Sciences 16 (3):452-453.
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  • Time phases, pointers, rules and embedding.John A. Barnden - 1993 - Behavioral and Brain Sciences 16 (3):451-452.
    This paper is a commentary on the target article by Lokendra Shastri & Venkat Ajjanagadde [S&A]: “From simple associations to systematic reasoning: A connectionist representation of rules, variables and dynamic bindings using temporal synchrony” in same issue of the journal, pp.417–451. -/- It puts S&A's temporal-synchrony binding method in a broader context, comments on notions of pointing and other ways of associating information - in both computers and connectionist systems - and mentions types of reasoning that are a challenge to (...)
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  • The concept of intentionality: Invented or innate?Simon Baron-Cohen - 1993 - Behavioral and Brain Sciences 16 (1):29-30.
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  • Toward a developmental theory of mental models.Bruno G. Bara - 1993 - Behavioral and Brain Sciences 16 (2):336-336.
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  • Perceptual symbol systems.Lawrence W. Barsalou - 1999 - Behavioral and Brain Sciences 22 (4):577-660.
    Prior to the twentieth century, theories of knowledge were inherently perceptual. Since then, developments in logic, statis- tics, and programming languages have inspired amodal theories that rest on principles fundamentally different from those underlying perception. In addition, perceptual approaches have become widely viewed as untenable because they are assumed to implement record- ing systems, not conceptual systems. A perceptual theory of knowledge is developed here in the context of current cognitive science and neuroscience. During perceptual experience, association areas in the (...)
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  • Model theory of deduction: a unified computational approach.Bruno G. Bara, Monica Bucciarelli & Vincenzo Lombardo - 2001 - Cognitive Science 25 (6):839-901.
    One of the most debated questions in psychology and cognitive science is the nature and the functioning of the mental processes involved in deductive reasoning. However, all existing theories refer to a specific deductive domain, like syllogistic, propositional or relational reasoning.Our goal is to unify the main types of deductive reasoning into a single set of basic procedures. In particular, we bring together the microtheories developed from a mental models perspective in a single theory, for which we provide a formal (...)
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  • How do Somatic Markers Feature in Decision Making?Jordan Bartol & Stefan Linquist - 2015 - Emotion Review 7 (1):81-89.
    Several recent criticisms of the somatic marker hypothesis (SMH) identify multiple ambiguities in the way it has been formulated by its chief proponents. Here we provide evidence that this hypothesis has also been interpreted in various different ways by the scientific community. Our diagnosis of this problem is that SMH lacks an adequate computational-level account of practical decision making. Such an account is necessary for drawing meaningful links between neurological- and psychological-level data. The paper concludes by providing a simple, five-step (...)
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  • Everyday reasoning and logical inference.Jon Barwise - 1993 - Behavioral and Brain Sciences 16 (2):337-338.
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  • Differentiation in cognitive and emotional meanings: An evolutionary analysis.Philip J. Barnard, David J. Duke, Richard W. Byrne & Iain Davidson - 2007 - Cognition and Emotion 21 (6):1155-1183.
    It is often argued that human emotions, and the cognitions that accompany them, involve refinements of, and extensions to, more basic functionality shared with other species. Such refinements may rely on common or on distinct processes and representations. Multi-level theories of cognition and affect make distinctions between qualitatively different types of representations often dealing with bodily, affective and cognitive attributes of self-related meanings. This paper will adopt a particular multi-level perspective on mental architecture and show how a mechanism of subsystem (...)
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  • Deduction as an example of thinking.Jonathan Baron - 1993 - Behavioral and Brain Sciences 16 (2):336-337.
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  • Are false beliefs representative mental states?Karen Bartsch & David Estes - 1993 - Behavioral and Brain Sciences 16 (1):30-31.
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  • The End of Development.Sergio Balari & Guillermo Lorenzo - 2015 - Biological Theory 10 (1):60-72.
    Recently, there has been a growing interest, both within theoretical biology and the philosophy of biology, in the possibility and desirability of a theory of development. Among the many issues raised within this debate, the questions of the spatial and temporal boundaries of development have received particular attention. In this article, noting that so far the discussion has mostly centered on the processes of morphogenesis and organogenesis, we argue that an important missing element in the equation, namely the development of (...)
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  • Getting down to cases.Kent Bach - 1993 - Behavioral and Brain Sciences 16 (2):334-336.
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  • Kinds of behaviour.Robert Aunger & Valerie Curtis - 2008 - Biology and Philosophy 23 (3):317-345.
    Sciences able to identify appropriate analytical units for their domain, their natural kinds, have tended to be more progressive. In the biological sciences, evolutionary natural kinds are adaptations that can be identified by their common history of selection for some function. Human brains are the product of an evolutionary history of selection for component systems which produced behaviours that gave adaptive advantage to their hosts. These structures, behaviour production systems, are the natural kinds that psychology seeks. We argue these can (...)
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