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Unified theories of cognition

Cambridge, Mass.: Harvard University Press (1990)

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  1. A Cognitive Social Simulation of Tribal Survival Strategies: The Importance of Cognitive and Motivational Factors.Ron Sun & Pierson Fleischer - 2012 - Journal of Cognition and Culture 12 (3-4):287-321.
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  • Intentionality, mind and folk psychology.Winand H. Dittrich & Stephen E. G. Lea - 1993 - Behavioral and Brain Sciences 16 (1):39-41.
    The comment addresses central issues of a "theory theory" approach as exemplified in Gopnik' and Goldman's BBS-articles. Gopnik, on the one hand, tries to demonstrate that empirical evidence from developmental psychology supports the view of a "theory theory" in which common sense beliefs are constructed to explain ourselves and others. Focusing the informational processing routes possibly involved we would like to argue that his main thesis (e.g. idea of intentionality as a cognitive construct) lacks support at least for two reasons: (...)
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  • Dynamic Cognition Applied to Value Learning in Artificial Intelligence.Nythamar De Oliveira & Nicholas Corrêa - 2021 - Aoristo - International Journal of Phenomenology, Hermeneutics and Metaphysics 4 (2):185-199.
    Experts in Artificial Intelligence (AI) development predict that advances in the dvelopment of intelligent systems and agents will reshape vital areas in our society. Nevertheless, if such an advance isn't done with prudence, it can result in negative outcomes for humanity. For this reason, several researchers in the area are trying to develop a robust, beneficial, and safe concept of artificial intelligence. Currently, several of the open problems in the field of AI research arise from the difficulty of avoiding unwanted (...)
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  • Complex problem solving: A case for complex cognition?Joachim Funke - 2010 - Cognitive Processing 11 (1):133-142.
    Complex problem solving (CPS) emerged in the last 30 years in Europe as a new part of the psychology of thinking and problem solving. This paper introduces into the field and provides a personal view. Also, related concepts like macrocognition or operative intelligence will be explained in this context. Two examples for the assessment of CPS, Tailorshop and MicroDYN, are presented to illustrate the concept by means of their measurement devices. Also, the relation of complex cognition and emotion in the (...)
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  • Science, philosophy, and interpretation.Daniel C. Dennett - 1988 - Behavioral and Brain Sciences 11 (3):535.
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  • Precis of the intentional stance.Daniel C. Dennett - 1988 - Behavioral and Brain Sciences 11 (3):495-505.
    The intentional stance is the strategy of prediction and explanation that attributes beliefs, desires, and other states to systems and predicts future behavior from what it would be rational for an agent to do, given those beliefs and desires. Any system whose performance can be thus predicted and explained is an intentional system, whatever its innards. The strategy of treating parts of the world as intentional systems is the foundation of but is also exploited in artificial intelligence and cognitive science (...)
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  • 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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  • The risks of rationalising cognitive development.Beatrice de Gelder - 1994 - Behavioral and Brain Sciences 17 (4):713-714.
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  • Making a middling mousetrap.Michael R. W. Dawson & Istvan Berkeley - 1993 - Behavioral and Brain Sciences 16 (3):454-455.
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  • Deduction by children and animals: Does it follow the Johnson-Laird & Byrne model?Hank Davis - 1993 - Behavioral and Brain Sciences 16 (2):344-344.
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  • Shedding computational light on human creativity.Subrata Dasgupta - 2008 - Perspectives on Science 16 (2):pp. 121-136.
    Ever since 1956 when details of the Logic Theorist were published by Newell and Simon, a large literature has accumulated on computational models and theories of the creative process, especially in science, invention and design. But what exactly do these computational models/theories tell us about the way that humans have actually conducted acts of creation in the past? What light has computation shed on our understanding of the creative process? Addressing these questions, we put forth three propositions: (I) Computational models (...)
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  • Redescribing redescription.Terry Dartnall - 1994 - Behavioral and Brain Sciences 17 (4):712-713.
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  • The notional world of D. C. Dennett.Arthur C. Danto - 1988 - Behavioral and Brain Sciences 11 (3):509.
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  • The anthropology of folk psychology.Steven Daniel - 1993 - Behavioral and Brain Sciences 16 (1):38-39.
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  • Modeling individual differences in working memory performance: a source activation account.Larry Z. Daily, Marsha C. Lovett & Lynne M. Reder - 2001 - Cognitive Science 25 (3):315-353.
    Working memory resources are needed for processing and maintenance of information during cognitive tasks. Many models have been developed to capture the effects of limited working memory resources on performance. However, most of these models do not account for the finding that different individuals show different sensitivities to working memory demands, and none of the models predicts individual subjects' patterns of performance. We propose a computational model that accounts for differences in working memory capacity in terms of a quantity called (...)
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  • How directly do we know our minds?Maria Czyzewska & Pawel Lewicki - 1993 - Behavioral and Brain Sciences 16 (1):37-38.
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  • Dennett's realisation theory of the relation between folk and scientific psychology.Adrian Cussins - 1988 - Behavioral and Brain Sciences 11 (3):508.
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  • Emotional States from Affective Dynamics.William A. Cunningham, Kristen A. Dunfield & Paul E. Stillman - 2013 - Emotion Review 5 (4):344-355.
    Psychological constructivist models of emotion propose that emotions arise from the combinations of multiple processes, many of which are not emotion specific. These models attempt to describe both the homogeneity of instances of an emotional “kind” (why are fears similar?) and the heterogeneity of instances (why are different fears quite different?). In this article, we review the iterative reprocessing model of affect, and suggest that emotions, at least in part, arise from the processing of dynamical unfolding representations of valence across (...)
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  • Peer review reliability: The hierarchy of the sciences.Charles Crothers - 1993 - Behavioral and Brain Sciences 16 (2):398-399.
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  • Explaining Economic Crises: Are There Collective Representations?Paul Thagard - 2010 - Episteme 7 (3):266-283.
    This paper uses the economic crisis of 2008 as a case study to examine the explanatory validity of collective mental representations. Distinguished economists such as Paul Krugman and Joseph Stiglitz attribute collective beliefs, desires, intentions, and emotions to organizations such as banks and governments. I argue that the most plausible interpretation of these attributions is that they are metaphorical pointers to a complex of multilevel social, psychological, and neural mechanisms. This interpretation also applies to collective knowledge in science: scientific communities (...)
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  • Tractability considerations in deduction.James M. Crawford - 1993 - Behavioral and Brain Sciences 16 (2):343-343.
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  • From symbols to neurons: Are we there yet?Garrison W. Cottrell - 1993 - Behavioral and Brain Sciences 16 (3):454-454.
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  • Modelos Din'micos Aplicados à Aprendizagem de Valores em Inteligência Artificial.Nicholas Kluge Corrêa & Nythamar De Oliveira - 2020 - Veritas – Revista de Filosofia da Pucrs 65 (2):e37439.
    Especialistas em desenvolvimento de Inteligência Artificial prevêem que o avanço no desenvolvimento de sistemas e agentes inteligentes irá remodelar áreas vitais em nossa sociedade. Contudo, se tal avanço não for realizado de maneira prudente e crítico-reflexiva, pode resultar em desfechos negativos para a humanidade. Por este motivo, diversos pesquisadores na área têm desenvolvido uma concepção de IA robusta, benéfica e segura para a preservação da humanidade e do meio-ambiente. Atualmente, diversos dos problemas em aberto no campo de pesquisa em IA (...)
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  • The Role of Falsification in the Development of Cognitive Architectures: Insights from a Lakatosian Analysis.Richard P. Cooper - 2007 - Cognitive Science 31 (3):509-533.
    It has been suggested that the enterprise of developing mechanistic theories of the human cognitive architecture is flawed because the theories produced are not directly falsifiable. Newell attempted to sidestep this criticism by arguing for a Lakatosian model of scientific progress in which cognitive architectures should be understood as theories that develop over time. However, Newell's own candidate cognitive architecture adhered only loosely to Lakatosian principles. This paper reconsiders the role of falsification and the potential utility of Lakatosian principles in (...)
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  • Mechanisms for the generation and regulation of sequential behaviour.Richard P. Cooper - 2003 - Philosophical Psychology 16 (3):389 – 416.
    A critical aspect of much human behaviour is the generation and regulation of sequential activities. Such behaviour is seen in both naturalistic settings such as routine action and language production and laboratory tasks such as serial recall and many reaction time experiments. There are a variety of computational mechanisms that may support the generation and regulation of sequential behaviours, ranging from those underlying Turing machines to those employed by recurrent connectionist networks. This paper surveys a range of such mechanisms, together (...)
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  • Interactive Team Cognition.Nancy J. Cooke, Jamie C. Gorman, Christopher W. Myers & Jasmine L. Duran - 2013 - Cognitive Science 37 (2):255-285.
    Cognition in work teams has been predominantly understood and explained in terms of shared cognition with a focus on the similarity of static knowledge structures across individual team members. Inspired by the current zeitgeist in cognitive science, as well as by empirical data and pragmatic concerns, we offer an alternative theory of team cognition. Interactive Team Cognition (ITC) theory posits that (1) team cognition is an activity, not a property or a product; (2) team cognition should be measured and studied (...)
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  • Interruptibility as a constraint on hybrid systems.Richard Cooper & Bradley Franks - 1993 - Minds and Machines 3 (1):73-96.
    It is widely mooted that a plausible computational cognitive model should involve both symbolic and connectionist components. However, sound principles for combining these components within a hybrid system are currently lacking; the design of such systems is oftenad hoc. In an attempt to ameliorate this we provide a framework of types of hybrid systems and constraints therein, within which to explore the issues. In particular, we suggest the use of system independent constraints, whose source lies in general considerations about cognitive (...)
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  • Could static binding suffice?Paul R. Cooper - 1993 - Behavioral and Brain Sciences 16 (3):453-454.
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  • Cognitive architectures as Lakatosian research programs: Two case studies.Richard P. Cooper - 2006 - Philosophical Psychology 19 (2):199-220.
    Cognitive architectures - task-general theories of the structure and function of the complete cognitive system - are sometimes argued to be more akin to frameworks or belief systems than scientific theories. The argument stems from the apparent non-falsifiability of existing cognitive architectures. Newell was aware of this criticism and argued that architectures should be viewed not as theories subject to Popperian falsification, but rather as Lakatosian research programs based on cumulative growth. Newell's argument is undermined because he failed to demonstrate (...)
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  • Beyond Single‐Level Accounts: The Role of Cognitive Architectures in Cognitive Scientific Explanation.Richard P. Cooper & David Peebles - 2015 - Topics in Cognitive Science 7 (2):243-258.
    We consider approaches to explanation within the cognitive sciences that begin with Marr's computational level or Marr's implementational level and argue that each is subject to fundamental limitations which impair their ability to provide adequate explanations of cognitive phenomena. For this reason, it is argued, explanation cannot proceed at either level without tight coupling to the algorithmic and representation level. Even at this level, however, we argue that additional constraints relating to the decomposition of the cognitive system into a set (...)
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  • An Agent View on Law.Heesen Constantijn, Homburg Vincent & Offereins Margriet - 1997 - Artificial Intelligence and Law 5 (4):323-340.
    Problem solving by autonomous, interacting computersystems has attracted much attention in the ArtificialIntelligence community. These autonomous computersystems, called agents, provide a promisingperspective for the legal knowledge-based systemscommunity, as legal problem solving often involvesdistributed problem solving capabilities that gobeyond the capabilities of individual knowledge-basedsystems.We focus on the coordination of agents andcommunication between agents by proposing a model ofcommunication between various agents using modellingtechniques such as communication primitives and statetransition diagrams. Our representation concerns theDutch Algemene Wet Bestuursrecht (AWB; GeneralAct on Administrative Law). (...)
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  • Some difficulties about deduction.L. Jonathan Cohen - 1993 - Behavioral and Brain Sciences 16 (2):341-342.
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  • Connecting Conscious and Unconscious Processing.Axel Cleeremans - 2014 - Cognitive Science 38 (6):1286-1315.
    Consciousness remains a mystery—“a phenomenon that people do not know how to think about—yet” (Dennett, , p. 21). Here, I consider how the connectionist perspective on information processing may help us progress toward the goal of understanding the computational principles through which conscious and unconscious processing differ. I begin by delineating the conceptual challenges associated with classical approaches to cognition insofar as understanding unconscious information processing is concerned, and to highlight several contrasting computational principles that are constitutive of the connectionist (...)
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  • The cognizer's innards: A psychological and philosophical perspective on the development of thought.Andy Clark & Annette Karmiloff-Smith - 1993 - Mind and Language 8 (4):487-519.
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  • Situated Action: A Neuropsychological Interpretation Response to Vera and Simon.William J. Clancey - 1993 - Cognitive Science 17 (1):87-116.
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  • The reliability of peer review for manuscript and grant submissions: “It's like déjà vu all over again!”.Domenic V. Cicchetti - 1993 - Behavioral and Brain Sciences 16 (2):401-403.
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  • The ontological status of intentional states: Nailing folk psychology to its perch.Paul M. Churchland - 1988 - Behavioral and Brain Sciences 11 (3):507.
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  • Another “Just So” story: How the leopardguarders spot.Dorothy Cheney & Robert Seyfarth - 1988 - Behavioral and Brain Sciences 11 (3):506.
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  • The naked truth about first-person knowledge.Michael Chandler & Jeremy Carpendale - 1993 - Behavioral and Brain Sciences 16 (1):36-37.
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  • Self-ascription without qualia: A case study.David J. Chalmers - 1993 - Behavioral and Brain Sciences 16 (1):35-36.
    In Section 5 of his interesting article, Goldman suggests that the consideration of imaginary cases can be valuable in the analysis of our psychological concepts. In particular, he argues that we can imagine a system that is isomorphic to us under any functional description, but which lacks qualitative mental states, such as pains and color sensations. Whether or not such a being is empirically possible, it certainly seems to be logically possible, or conceptually coherent. Goldman argues from this possibility to (...)
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  • Programs as Causal Models: Speculations on Mental Programs and Mental Representation.Nick Chater & Mike Oaksford - 2013 - Cognitive Science 37 (6):1171-1191.
    Judea Pearl has argued that counterfactuals and causality are central to intelligence, whether natural or artificial, and has helped create a rich mathematical and computational framework for formally analyzing causality. Here, we draw out connections between these notions and various current issues in cognitive science, including the nature of mental “programs” and mental representation. We argue that programs (consisting of algorithms and data structures) have a causal (counterfactual-supporting) structure; these counterfactuals can reveal the nature of mental representations. Programs can also (...)
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  • Mental models and nonmonotonic reasoning.Nick Chater - 1993 - Behavioral and Brain Sciences 16 (2):340-341.
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  • Categorization, theories and folk psychology.Nick Chater - 1993 - Behavioral and Brain Sciences 16 (1):37-37.
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  • 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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