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  1. Such stuff as habits are made on: A reply to Cooper and Shallice (2006).Matthew M. Botvinick & David C. Plaut - 2006 - Psychological Review 113 (4):917-927.
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  • Motivation reconsidered: The concept of competence.Robert W. White - 1959 - Psychological Review 66 (5):297-333.
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  • Learning motivated by a manipulation drive.Harry F. Harlow, Margaret Kuenne Harlow & Donald R. Meyer - 1950 - Journal of Experimental Psychology 40 (2):228.
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  • A theory of cognitive development: The control and construction of hierarchies of skills.Kurt W. Fischer - 1980 - Psychological Review 87 (6):477-531.
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  • Empathy for Pain Involves the Affective but not Sensory Components of Pain.T. Singer, B. Seymour, J. O’Doherty, H. Kaube, R. J. Dolan & C. D. Frith - 2004 - Science 303:1157-1162.
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  • An Integrative Theory of Prefrontal Cortex Function.Earl K. Miller & Jonathan D. Cohen - 2001 - Annual Review of Neuroscience 24 (1):167-202.
    The prefrontal cortex has long been suspected to play an important role in cognitive control, in the ability to orchestrate thought and action in accordance with internal goals. Its neural basis, however, has remained a mystery. Here, we propose that cognitive control stems from the active maintenance of patterns of activity in the prefrontal cortex that represent goals and the means to achieve them. They provide bias signals to other brain structures whose net effect is to guide the flow of (...)
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  • From cognitive to neural models of working memory.Mark D'Esposito - 2008 - In Jon Driver, Patrick Haggard & Tim Shallice (eds.), Mental Processes in the Human Brain. Oxford University Press. pp. 7--25.
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  • On the control of automatic processes: A parallel distributed processing account of the Stroop effect.Jonathan D. Cohen, Kevin Dunbar & James L. McClelland - 1990 - Psychological Review 97 (3):332-361.
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  • An Integrated Theory of the Mind.John R. Anderson, Daniel Bothell, Michael D. Byrne, Scott Douglass, Christian Lebiere & Yulin Qin - 2004 - Psychological Review 111 (4):1036-1060.
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  • A hierarchical biased-competition model of domain-dependent working memory mainatenance and executive control.Susan M. Courtney, Jennifer K. Roth & Sala & B. Joseph - 2007 - In Naoyuki Osaka, Robert H. Logie & Mark D'Esposito (eds.), The Cognitive Neuroscience of Working Memory. Oxford University Press.
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  • The neural basis of human error processing: Reinforcement learning, dopamine, and the error-related negativity.Clay B. Holroyd & Michael G. H. Coles - 2002 - Psychological Review 109 (4):679-709.
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  • A Theory of Causal Learning in Children: Causal Maps and Bayes Nets.Alison Gopnik, Clark Glymour, Laura Schulz, Tamar Kushnir & David Danks - 2004 - Psychological Review 111 (1):3-32.
    We propose that children employ specialized cognitive systems that allow them to recover an accurate “causal map” of the world: an abstract, coherent, learned representation of the causal relations among events. This kind of knowledge can be perspicuously understood in terms of the formalism of directed graphical causal models, or “Bayes nets”. Children’s causal learning and inference may involve computations similar to those for learning causal Bayes nets and for predicting with them. Experimental results suggest that 2- to 4-year-old children (...)
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  • (1 other version)Mechanisms of theory formation in young children.Alison Gopnik - 2004 - Trends in Cognitive Sciences 8 (8):371-377.
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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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  • Simulating a Skilled Typist: A Study of Skilled Cognitive‐Motor Performance.David E. Rumelhart & Donald A. Norman - 1982 - Cognitive Science 6 (1):1-36.
    We review the major phenomena of skilled typing and propose a model for the control of the hands and fingers during typing. The model is based upon an Activation‐Trigger‐Schema system in which a hierarchical structure of schemata directs the selection of the letters to be typed and, then, controls the hand and finger movements by a cooperative, relaxation algorithm. The interactions of the patterns of activation and inhibition among the schemata determine the temporal ordering for launching the keystrokes. To account (...)
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  • Pulling out the intentional structure of action: the relation between action processing and action production in infancy.Jessica A. Sommerville & Amanda L. Woodward - 2005 - Cognition 95 (1):1-30.
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  • Between MDPs and semi-MDPs: A framework for temporal abstraction in reinforcement learning.Richard S. Sutton, Doina Precup & Satinder Singh - 1999 - Artificial Intelligence 112 (1-2):181-211.
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  • (1 other version)Action sets and decisions in the medial frontal cortex.M. F. Rushworth, M. E. Walton, S. W. Kennerley & D. M. Bannerman - 2004 - Trends in Cognitive Sciences 8 (9):410-417.
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  • Anatomy of a decision: Striato-orbitofrontal interactions in reinforcement learning, decision making, and reversal.Michael J. Frank & Eric D. Claus - 2006 - Psychological Review 113 (2):300-326.
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  • Toward a modern theory of adaptive networks: Expectation and prediction.Richard S. Sutton & Andrew G. Barto - 1981 - Psychological Review 88 (2):135-170.
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  • ÔTeleological Reasoning in Infancy: The Naı ve Theory of Rational ActionÕ.G. Gergeley & C. Csibra - 2003 - Trends in Cognitive Sciences 7.
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  • Language production and serial order: A functional analysis and a model.Gary S. Dell, Lisa K. Burger & William R. Svec - 1997 - Psychological Review 104 (1):123-147.
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  • How infants make sense of intentional action.Amanda L. Woodward, Jessica A. Sommerville & Jose J. Guajardo - 2001 - In Bertram F. Malle, Louis J. Moses & Dare A. Baldwin (eds.), Intentions and Intentionality: Foundations of Social Cognition. MIT Press. pp. 149--169.
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  • Hierarchical models of behavior and prefrontal function.Matthew M. Botvinick - 2008 - Trends in Cognitive Sciences 12 (5):201.
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