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  1. Marginally perceptible outcome feedback, motor learning and implicit processes.Rich S. W. Masters, Jon P. Maxwell & Frank F. Eves - 2009 - Consciousness and Cognition 18 (3):639-645.
    Participants struck 500 golf balls to a concealed target. Outcome feedback was presented at the subjective or objective threshold of awareness of each participant or at a supraliminal threshold. Participants who received fully perceptible feedback learned to strike the ball onto the target, as did participants who received feedback that was only marginally perceptible . Participants who received feedback that was not perceptible showed no learning. Upon transfer to a condition in which the target was unconcealed, performance increased in both (...)
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  • To dream is not to (intend to) do.Jean Requin - 1994 - Behavioral and Brain Sciences 17 (2):218-219.
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  • Evaluating Weaknesses of “Perceptual-Cognitive Training” and “Brain Training” Methods in Sport: An Ecological Dynamics Critique.Ian Renshaw, Keith Davids, Duarte Araújo, Ana Lucas, William M. Roberts, Daniel J. Newcombe & Benjamin Franks - 2019 - Frontiers in Psychology 9.
    The recent upsurge in “brain-training and perceptual-cognitive-training", proposing to improve isolated processes such as brain function, visual perception and decision-making, has created significant interest in elite sports practitioners, seeking to create an ‘edge’ for athletes. The claims of these related 'performance-enhancing industries' can be considered together as part of a process training approach proposing enhanced cognitive and perceptual skills and brain capacity, to support performance in everyday life activities, including sport. For example, the 'process-training industry' promotes the idea that playing (...)
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  • Motor variability but functional specificity: Demise of the concept of motor commands.Edward S. Reed - 1986 - Behavioral and Brain Sciences 9 (4):620-622.
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  • Attention as an explanatory concept in perceptual adaptation.Gordon M. Redding - 1979 - Behavioral and Brain Sciences 2 (1):77-78.
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  • Time optimality, proprioception, and the triphasic EMG pattern.Constance Ramos, Lawrence Stark & Blake Hannaford - 1989 - Behavioral and Brain Sciences 12 (2):231-232.
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  • Motor images are action plans.Wolfgang Prinz - 1994 - Behavioral and Brain Sciences 17 (2):218-218.
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  • Grounding Procedural and Declarative Knowledge in Sensorimotor Anticipation.Giovanni Pezzulo - 2011 - Mind and Language 26 (1):78-114.
    We propose a view of embodied representations that is alternative to both symbolic/linguistic approaches and purely sensorimotor views of cognition, and can account for procedural and declarative knowledge manipulation. In accordance with recent evidence in cognitive neuroscience and psychology, we argue that anticipatory and simulative mechanisms, which arose during evolution for action control and not for cognition, determined the first form of representational content and were exapted for increasingly sophisticated cognitive uses. In particular, procedural and declarative forms of knowledge can (...)
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  • Representations of movement and representations in movement.Giuseppe Pellizzer & Apostolos P. Georgopoulos - 1994 - Behavioral and Brain Sciences 17 (2):216-217.
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  • The psychological reality of practical representation.Carlotta Pavese - 2019 - Philosophical Psychology 32 (5):784-821.
    We represent the world in a variety of ways: through percepts, concepts, propositional attitudes, words, numerals, recordings, musical scores, photographs, diagrams, mimetic paintings, etc. Some of these representations are mental. It is customary for philosophers to distinguish two main kinds of mental representations: perceptual representation (e.g., vision, auditory, tactile) and conceptual representation. This essay presupposes a version of this dichotomy and explores the way in which a further kind of representation – procedural representation – represents. It is argued that, in (...)
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  • Frogs solve Bernstein's problem.Lloyd D. Partridge - 1986 - Behavioral and Brain Sciences 9 (4):619-620.
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  • At least two strategies.Lloyd D. Partridge - 1989 - Behavioral and Brain Sciences 12 (2):230-231.
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  • Jeannerod's representing brain: Image or illusion?Jean Pailhous & Mireille Bonnard - 1994 - Behavioral and Brain Sciences 17 (2):215-216.
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  • Search Strategies in the Perceptual-Motor Workspace and the Acquisition of Coordination, Control, and Skill.Matheus M. Pacheco, Charley W. Lafe & Karl M. Newell - 2019 - Frontiers in Psychology 10.
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  • Beyond Automaticity: The Psychological Complexity of Skill.Elisabeth Pacherie & Myrto Mylopoulos - 2020 - Topoi 40 (3):649-662.
    The objective of this paper is to characterize the rich interplay between automatic and cognitive control processes that we propose is the hallmark of skill, in contrast to habit, and what accounts for its flexibility. We argue that this interplay isn't entirely hierarchical and static, but rather heterarchical and dynamic. We further argue that it crucially depends on the acquisition of detailed and well-structured action representations and internal models, as well as the concomitant development of metacontrol processes that can be (...)
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  • Position information versus motor programs: two levels of sensorimotor theory.Kenneth R. Paap - 1979 - Behavioral and Brain Sciences 2 (1):77-77.
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  • Can voluntary movement be understood on the basis of reflex organization?David J. Ostry & Frances E. Wilkinson - 1986 - Behavioral and Brain Sciences 9 (4):618-619.
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  • Manipulating target size influences perceptions of success when learning a dart-throwing skill but does not impact retention.Nicole T. Ong, Keith R. Lohse & Nicola J. Hodges - 2015 - Frontiers in Psychology 6.
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  • A grammar of action generates predictions in skilled musicians.Giacomo Novembre & Peter E. Keller - 2011 - Consciousness and Cognition 20 (4):1232-1243.
    The present study investigates shared representations of syntactic knowledge in music and action. We examined whether expectancy violations in musical harmonic sequences are also perceived as violations of the movement sequences necessary to produce them. Pianists imitated silent videos showing one hand playing chord sequences on a muted keyboard. Results indicate that, despite the absence of auditory feedback, imitation of a chord is fastest when it is congruent with the preceding harmonic context. This suggests that the harmonic rules implied by (...)
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  • Linked auditory and motor patterns in the improvisation vocabulary of an artist-level jazz pianist.Martin Norgaard, Kevin Bales & Niels Chr Hansen - 2023 - Cognition 230 (C):105308.
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  • Reciprocal reflex action and adaptive gain control in the context of the equilibrium-point hypothesis.T. Richard Nichols - 1986 - Behavioral and Brain Sciences 9 (4):617-618.
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  • Time scales in motor learning and development.Karl M. Newell, Yeou-Teh Liu & Gottfried Mayer-Kress - 2001 - Psychological Review 108 (1):57-82.
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  • On simple movements and complex theories (and vice versa).K. M. Newell, R. E. A. Van Emmerik & P. V. McDonald - 1989 - Behavioral and Brain Sciences 12 (2):229-230.
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  • On simple movements and complex theories (and vice versa).K. M. Newell, R. E. A. van Emmerik & P. V. McDonald - 1989 - Behavioral and Brain Sciences 12 (2):229-230.
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  • Do the α and λ models adequately describe reflex behavior in man?Peter D. Neilson - 1986 - Behavioral and Brain Sciences 9 (4):616-617.
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  • EMG bursts, sampling, and strategy in movement control.Peter D. Neilson - 1989 - Behavioral and Brain Sciences 12 (2):228-229.
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  • Action-oriented Perception.Bence Nanay - 2010 - European Journal of Philosophy 20 (3):430-446.
    Abstract: When I throw a ball at you, do you see it as catch-able? Do we perceive objects as edible, climbable or Q-able in general? One could argue that it is just a manner of speaking to say so: we do not really see an object as edible, we only infer on the basis of its other properties that it is. I argue that whether or not an object is edible or climbable is indeed represented perceptually: we see objects as (...)
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  • Action‐oriented Perception.Bence Nanay - 2012 - European Journal of Philosophy 20 (3):430-446.
    Abstract:When I throw a ball at you, do you see it as catch‐able? Do we perceive objects as edible, climbable or Q‐able in general? One could argue that it is just a manner of speaking to say so: we do not reallyseean object as edible, we only infer on the basis of its other properties that it is. I argue that whether or not an object is edible or climbable is indeed represented perceptually: weseeobjects as edible, and do not just (...)
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  • The modularity of the motor system.Myrto Mylopoulos - 2021 - Philosophical Explorations 24 (3):376-393.
    In this paper, I make a case for the modularity of the motor system. I start where many do in discussions of modularity, by considering the extent to which the motor system is cognitively penetrable, i.e., the extent to which its processing and outputs are causally influenced, in a semantically coherent way, by states of central cognition. I present some empirical findings from a range of sensorimotor adaptation studies that strongly suggest that there are limits to such influence under certain (...)
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  • Oops! I Did it Again: The Psychology of Everyday Action Slips.Myrto Mylopoulos - 2022 - Topics in Cognitive Science 14 (2):282-294.
    Topics in Cognitive Science, Volume 14, Issue 2, Page 282-294, April 2022.
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  • Centrifugal contributions to visual perceptual after effects.K. S. K. Murthy - 1979 - Behavioral and Brain Sciences 2 (1):77-77.
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  • Motor equivalence and goal descriptors.Kevin G. Munhall - 1986 - Behavioral and Brain Sciences 9 (4):615-616.
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  • Unreflective actions? complex motor skill acquisition to enhance spatial cognition.David Moreau - 2015 - Phenomenology and the Cognitive Sciences 14 (2):349-359.
    Cognitive science has recently moved toward action-integrated paradigms to account for some of its most remarkable findings. This novel approach has opened up new venues for the sport sciences. In particular, a large body of literature has investigated the relationship between complex motor practice and cognition, which in the sports domain has mostly concerned the effect of imagery and other forms of mental practice on motor skill acquisition and emotional control. Yet recent evidence indicates that this relationship is bidirectional: motor (...)
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  • Motor simulation.Adam Morton - 1994 - Behavioral and Brain Sciences 17 (2):215-215.
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  • Are motor images based on kinestheticvisual matching?Robert W. Mitchell - 1994 - Behavioral and Brain Sciences 17 (2):214-215.
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  • Visual-motor conflict resolved by motor adaptation without perceptual change.Joel M. Miller - 1979 - Behavioral and Brain Sciences 2 (1):76-76.
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  • Visually guided action and the “need to know”.A. David Milner, David P. Carey & Monika Harvey - 1994 - Behavioral and Brain Sciences 17 (2):213-214.
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  • Adaptation of the distortion of shape is different from adaptation to the distortion of space.H. H. Mikaelian - 1979 - Behavioral and Brain Sciences 2 (1):76-76.
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  • Are we asking too much of the stretch reflex?Peter B. C. Matthews - 1986 - Behavioral and Brain Sciences 9 (4):614-615.
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  • On the utility of the jnd in predicting motor retention: An initial consideration.Philip H. Marshall, Valencia W. Mills & Robert T. Swanton - 1983 - Bulletin of the Psychonomic Society 21 (1):40-42.
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  • Propulsive Torques and Adaptive Reflexes.William A. MacKay - 1986 - Behavioral and Brain Sciences 9 (4):614-614.
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  • Non-Visual Determinants of Perception.Arien Mack - 1979 - Behavioral and Brain Sciences 2 (1):75-76.
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  • Braking may be more critical than acceleration.William A. MacKay - 1989 - Behavioral and Brain Sciences 12 (2):227-228.
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  • Strategies for the control of studies of voluntary movements with one mechanical degree of freedom.Gerale E. Loeb - 1989 - Behavioral and Brain Sciences 12 (2):227-227.
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  • Exploring the limits of servo control.G. E. Loeb - 1986 - Behavioral and Brain Sciences 9 (4):613-614.
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  • Overlapping memory replay during sleep builds cognitive schemata.Penelope A. Lewis & Simon J. Durrant - 2011 - Trends in Cognitive Sciences 15 (8):343-351.
    Sleep enhances integration across multiple stimuli, abstraction of general rules, insight into hidden solutions and false memory formation. Newly learned information is better assimilated if compatible with an existing cognitive framework or schema. This article proposes a mechanism by which the reactivation of newly learned memories during sleep could actively underpin both schema formation and the addition of new knowledge to existing schemata. Under this model, the overlapping replay of related memories selectively strengthens shared elements. Repeated reactivation of memories in (...)
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  • Do innate motor programs simplify voluntary motor control?Wynne A. Lee - 1986 - Behavioral and Brain Sciences 9 (4):612-613.
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  • Direct pattern-imposing control or dynamic regulation?Marl L. Latash - 1989 - Behavioral and Brain Sciences 12 (2):226-227.
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  • Coordination, grammar, and spasticity.Mark L. Latash - 1986 - Behavioral and Brain Sciences 9 (4):612-612.
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  • The encoding of spatial position in the brain.Joseph S. Lappin - 1979 - Behavioral and Brain Sciences 2 (1):74-75.
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