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Unified theories of cognition

Cambridge: Harvard University Press (1990)

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  1. How molecules matter to mental computation.Paul Thagard - 2002 - Philosophy of Science 69 (3):497-518.
    Almost all computational models of the mind and brain ignore details about neurotransmitters, hormones, and other molecules. The neglect of neurochemistry in cognitive science would be appropriate if the computational properties of brains relevant to explaining mental functioning were in fact electrical rather than chemical. But there is considerable evidence that chemical complexity really does matter to brain computation, including the role of proteins in intracellular computation, the operations of synapses and neurotransmitters, and the effects of neuromodulators such as hormones. (...)
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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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  • Situation theory and mental models.Alice G. B. ter Meulen - 1993 - Behavioral and Brain Sciences 16 (2):358-359.
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  • Sensation strength: Another point of view.Robert Teghtsoonian - 1993 - Behavioral and Brain Sciences 16 (1):161-162.
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  • What really matters.Charles Taylor - 1988 - Behavioral and Brain Sciences 11 (3):532.
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  • Two kinds of explanatory integration in cognitive science.Samuel D. Taylor - 2019 - Synthese 198 (5):4573-4601.
    Some philosophers argue that we should eschew cross-explanatory integrations of mechanistic, dynamicist, and psychological explanations in cognitive science, because, unlike integrations of mechanistic explanations, they do not deliver genuine, cognitive scientific explanations. Here I challenge this claim by comparing the theoretical virtues of both kinds of explanatory integrations. I first identify two theoretical virtues of integrations of mechanistic explanations—unification and greater qualitative parsimony—and argue that no cross-explanatory integration could have such virtues. However, I go on to argue that this is (...)
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  • The nature and transfer of cognitive skills.Niels A. Taatgen - 2013 - Psychological Review 120 (3):439-471.
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  • Modeling parallelization and flexibility improvements in skill acquisition: From dual tasks to complex dynamic skills.Niels Taatgen - 2005 - Cognitive Science 29 (3):421-455.
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  • Cognitive Modeling at ICCM: State of the Art and Future Directions.Niels A. Taatgen, Marieke K. Vugt, Jelmer P. Borst & Katja Mehlhorn - 2016 - Topics in Cognitive Science 8 (1):259-263.
    The goal of cognitive modeling is to build faithful simulations of human cognition. One of the challenges is that multiple models can often explain the same phenomena. Another challenge is that models are often very hard to understand, explore, and reuse by others. We discuss some of the solutions that were discussed during the 2015 International Conference on Cognitive Modeling.
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  • The Interaction of the Explicit and the Implicit in Skill Learning: A Dual-Process Approach.Ron Sun - 2005 - Psychological Review 112 (1):159-192.
    This article explicates the interaction between implicit and explicit processes in skill learning, in contrast to the tendency of researchers to study each type in isolation. It highlights various effects of the interaction on learning (including synergy effects). The authors argue for an integrated model of skill learning that takes into account both implicit and explicit processes. Moreover, they argue for a bottom-up approach (first learning implicit knowledge and then explicit knowledge) in the integrated model. A variety of qualitative data (...)
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  • Social institution, cognition, and survival: a cognitive–social simulation.Ron Sun & Isaac Naveh - 2007 - Mind and Society 6 (2):115-142.
    Although computational models of cognitive agents that incorporate a wide range of cognitive functionalities have been developed in cognitive science, most of the work in social simulation still assumes rudimentary cognition on the part of the agents. In contrast, in this work, the interaction of cognition and social structures/processes is explored, through simulating survival strategies of tribal societies. The results of the simulation demonstrate interactions between cognitive and social factors. For example, we show that cognitive capabilities and tendencies may be (...)
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  • On levels of cognitive modeling.Ron Sun, Andrew Coward & Michael J. Zenzen - 2005 - Philosophical Psychology 18 (5):613-637.
    The article first addresses the importance of cognitive modeling, in terms of its value to cognitive science (as well as other social and behavioral sciences). In particular, it emphasizes the use of cognitive architectures in this undertaking. Based on this approach, the article addresses, in detail, the idea of a multi-level approach that ranges from social to neural levels. In physical sciences, a rigorous set of theories is a hierarchy of descriptions/explanations, in which causal relationships among entities at a high (...)
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  • Potential of full human–machine symbiosis through truly intelligent cognitive systems.Ron Sun - 2020 - AI and Society 35 (1):17-28.
    It is highly likely that, to achieve full human–machine symbiosis, truly intelligent cognitive systems—human-like —may have to be developed first. Such systems should not only be capable of performing human-like thinking, reasoning, and problem solving, but also be capable of displaying human-like motivation, emotion, and personality. In this opinion article, I will argue that such systems are indeed possible and needed to achieve true and full symbiosis with humans. A computational cognitive architecture is used in this article to illustrate, in (...)
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  • Incubation, insight, and creative problem solving: A unified theory and a connectionist model.Ron Sun - 2010 - Psychological Review 117 (3):994-1024.
    This article proposes a unified framework for understanding creative problem solving, namely, the explicit–implicit interaction theory. This new theory of creative problem solving constitutes an attempt at providing a more unified explanation of relevant phenomena (in part by reinterpreting/integrating various fragmentary existing theories of incubation and insight). The explicit–implicit interaction theory relies mainly on 5 basic principles, namely, (a) the coexistence of and the difference between explicit and implicit knowledge, (b) the simultaneous involvement of implicit and explicit processes in most (...)
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  • Desiderata for cognitive architectures.Ron Sun - 2004 - Philosophical Psychology 17 (3):341-373.
    This article addresses issues in developing cognitive architectures--generic computational models of cognition. Cognitive architectures are believed to be essential in advancing understanding of the mind, and therefore, developing cognitive architectures is an extremely important enterprise in cognitive science. The article proposes a set of essential desiderata for developing cognitive architectures. It then moves on to discuss in detail some of these desiderata and their associated concepts and ideas relevant to developing better cognitive architectures. It argues for the importance of taking (...)
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  • 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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  • Phase logic is biologically relevant logic.Gary W. Strong - 1993 - Behavioral and Brain Sciences 16 (3):472-473.
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  • The Present of the Past: The Plurality of Competing Narratives in the EU Context.Maria Stoicheva - 2020 - Journal of Human Values 26 (1):50-63.
    This article intends to review the relationship between European organization and diversity. Europe lives in the legacy of division of nation and ethnicity as its main source dating from the ninete...
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  • Intention, interpretation and the computational structure of language.Matthew Stone - 2004 - Cognitive Science 28 (5):781-809.
    I show how a conversational process that takes simple, intuitively meaningful steps may be understood as a sophisticated computation that derives the richly detailed, complex representations implicit in our knowledge of language. To develop the account, I argue that natural language is structured in a way that lets us formalize grammatical knowledge precisely in terms of rich primitives of interpretation. Primitives of interpretation can be correctly viewed intentionally, as explanations of our choices of linguistic actions; the model therefore fits our (...)
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  • Conditional routing of information to the cortex: A model of the basal ganglia’s role in cognitive coordination.Andrea Stocco, Christian Lebiere & John R. Anderson - 2010 - Psychological Review 117 (2):541-574.
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  • Bedrock metaphysics, fossil fuel psychophysics.Dale A. Stout - 1993 - Behavioral and Brain Sciences 16 (1):160-161.
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  • Connectionism, Realism, and realism.Stephen P. Stich - 1988 - Behavioral and Brain Sciences 11 (3):531.
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  • Searching for General Principles in Cognitive Performance: Reply to Commentators.Damian G. Stephen & Guy Van Orden - 2012 - Topics in Cognitive Science 4 (1):94-102.
    The commentators expressed concerns regarding the relevance and value of non-computational non-symbolic explanations of cognitive performance. But what counts as an “explanation” depends on the pre-theoretical assumptions behind the scenes of empirical science regarding the kinds of variables and relationships that are sought out in the first place, and some of the present disagreements stem from incommensurate assumptions. Traditional cognitive science presumes cognition to be a decomposable system of components interacting according to computational rules to generate cognitive performances (i.e., component-dominant (...)
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  • Nonsentential representation and nonformality.Keith Stenning & Jon Oberlander - 1993 - Behavioral and Brain Sciences 16 (2):365-366.
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  • Models, rules and expertise.Rosemary J. Stevenson - 1993 - Behavioral and Brain Sciences 16 (2):366-366.
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  • Categories, categorisation and development: Introspective knowledge is no threat to functionalism.Kim Sterelny - 1993 - Behavioral and Brain Sciences 16 (1):81-83.
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  • The developmental history of an illusion.Keith E. Stanovich - 1993 - Behavioral and Brain Sciences 16 (1):80-81.
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  • Harmony in Linguistic Cognition.Paul Smolensky - 2006 - Cognitive Science 30 (5):779-801.
    In this article, I survey the integrated connectionist/symbolic (ICS) cognitive architecture in which higher cognition must be formally characterized on two levels of description. At the microlevel, parallel distributed processing (PDP) characterizes mental processing; this PDP system has special organization in virtue of which it can be characterized at the macrolevel as a kind of symbolic computational system. The symbolic system inherits certain properties from its PDP substrate; the symbolic functions computed constitute optimization of a well-formedness measure called Harmony. The (...)
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  • Styles of computational representation.M. P. Smith - 1988 - Behavioral and Brain Sciences 11 (3):530.
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  • Modal knowledge and transmodularity.Leslie Smith - 1994 - Behavioral and Brain Sciences 17 (4):729-730.
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  • Minds in the Metaverse: Extended Cognition Meets Mixed Reality.Paul Smart - 2022 - Philosophy and Technology 35 (4):1–29.
    Examples of extended cognition typically involve the use of technologically low-grade bio-external resources (e.g., the use of pen and paper to solve long multiplication problems). The present paper describes a putative case of extended cognizing based around a technologically advanced mixed reality device, namely, the Microsoft HoloLens. The case is evaluated from the standpoint of a mechanistic perspective. In particular, it is suggested that a combination of organismic (e.g., the human individual) and extra-organismic (e.g., the HoloLens) resources form part of (...)
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  • Invariants of human emotion.Paul E. Smaldino & Jeffrey C. Schank - 2012 - Behavioral and Brain Sciences 35 (3):164-164.
    Because of the complexity of human emotional responses, invariants must be sought not in the responses themselves, but in their generating mechanisms. Lindquist et al. show that functional locationism is a theoretical dead end; their proposed mechanistic framework is a first step toward better models of emotional behavior. We caution, however, that emotions may still be quasi-naturalperceptualtypes.
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  • Why philosophers should be designers.Aaron Sloman - 1988 - Behavioral and Brain Sciences 11 (3):529.
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  • Similarity as an explanatory construct.Steven A. Sloman & Lance J. Rips - 1998 - Cognition 65 (2-3):87-101.
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  • Do simple associations lead to systematic reasoning?Steven Sloman - 1993 - Behavioral and Brain Sciences 16 (3):471-472.
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  • Mario Bunge’s Materialist Theory of Mind and Contemporary Cognitive Science.Peter Slezak - 2012 - Science & Education 21 (10):1475-1484.
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  • Mario Bunge: Matter and Mind: A Philosophical Inquiry.Peter Slezak - 2012 - Science & Education 21 (8):1213-1221.
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  • Drop censorship in science.J. D. Sinclair - 1993 - Behavioral and Brain Sciences 16 (2):400-401.
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  • Expertise effects in memory recall: Comment on Vicente and Wang (1998).Herbert A. Simon & Fernand Gobet - 2000 - Psychological Review 107 (3):593-600.
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  • Discovering explanations.Herbert A. Simon - 1998 - Minds and Machines 8 (1):7-37.
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  • Rational reconstruction and immature science.Stuart Silvers - 1996 - Philosophical Psychology 9 (1):93 – 109.
    The distinction between mature and immature science is controversial. Laudan (1977) disavows the idea of immature science while Von Eckardt (1993) claims that cognitive science is just that (an immature science) and modifies Laudan's Research Tradition methodology to argue its rational pursuability . She uses the (Kuhnian) idea of a framework of shared characteristics (FSC) to identify the community of cognitive scientists. Diverse community assumptions pertaining specifically to human cognitive capacities (should) consolidate cognitive research efforts into a coherent and rationally (...)
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  • Psychological laws and nonmonotonic logic.Arnold Silverberg - 1996 - Erkenntnis 44 (2):199-224.
    In this essay I enter into a recently published debate between Stephen Schiffer and Jerry Fodor concerning whether adequate sense can be made of the ceteris paribus conditions in special science laws, much of their focus being on the case of putative psychological laws. Schiffer argues that adequate sense cannot be made of ceteris paribus clauses, while Fodor attempts to overcome Schiffer's arguments, in defense of special science laws. More recently, Peter Mott has attempted to show that Fodor's response to (...)
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  • Knowing children's minds.Michael Siegal - 1993 - Behavioral and Brain Sciences 16 (1):79-80.
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  • The challenge of representational redescription.Thomas R. Shultz - 1994 - Behavioral and Brain Sciences 17 (4):728-729.
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  • Rule following and rule use in the balance-scale task.Thomas R. Shultz & Yoshio Takane - 2007 - Cognition 103 (3):460-472.
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  • Special access lies down with theory-theory.Sydney Shoemaker - 1993 - Behavioral and Brain Sciences 16 (1):78-79.
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  • Mark H. Bickhard and Loren terveen, foundational issues in artificial intelligence and cognitive science: Impasse and solution, advances in psychology, vol. 109. [REVIEW]Valerie L. Shalin - 2000 - Minds and Machines 10 (3):435-439.
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  • From simple associations to systematic reasoning: A connectionist representation of rules, variables, and dynamic binding using temporal synchrony.Lokendra Shastri & Venkat Ajjanagadde - 1993 - Behavioral and Brain Sciences 16 (3):417-51.
    Human agents draw a variety of inferences effortlessly, spontaneously, and with remarkable efficiency – as though these inferences were a reflexive response of their cognitive apparatus. Furthermore, these inferences are drawn with reference to a large body of background knowledge. This remarkable human ability seems paradoxical given the complexity of reasoning reported by researchers in artificial intelligence. It also poses a challenge for cognitive science and computational neuroscience: How can a system of simple and slow neuronlike elements represent a large (...)
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  • A step toward modeling reflexive reasoning.Lokendra Shastri & Venkat Ajjanagadde - 1993 - Behavioral and Brain Sciences 16 (3):477-494.
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  • An architecturally constrained model of random number generation and its application to modeling the effect of generation rate.Nicholas J. Sexton & Richard P. Cooper - 2014 - Frontiers in Psychology 5.
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