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  1. Egocentric Chunking in the Predictive Brain: A Cognitive Basis of Expert Performance in High-Speed Sports.Otto Lappi - 2022 - Frontiers in Human Neuroscience 16:822887.
    What principles and mechanisms allow humans to encode complex 3D information, and how can it be so fast, so accurately and so flexibly transformed into coordinated action? How do these processes work when developed to the limit of human physiological and cognitive capacity—as they are in high-speed sports, such as alpine skiing or motor racing? High-speed sports present not only physical challenges, but present some of the biggest perceptual-cognitive demands for the brain. The skill of these elite athletes is in (...)
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  • Equilibrium-point hypothesis, minimum effort control strategy and the triphasic muscle activation pattern.Ning Lan & Patrick E. Crago - 1992 - Behavioral and Brain Sciences 15 (4):769-771.
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  • Strategies for single-joint movements should also work for multijoint movements.Fancesco Lacquaniti - 1989 - Behavioral and Brain Sciences 12 (2):225-226.
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  • Presence in the reading of literary narrative: A case for motor enactment.Anežka Kuzmičová - 2012 - Semiotica 2012 (189):23-48.
    Drawing on research in narrative theory and literary aesthetics, text and discourse processing, phenomenology and the experimental cognitive sciences, this paper outlines an embodied theory of presence in the reading of literary narrative. Contrary to common assumptions, it is argued that there is no straightforward relation between the degree of detail in spatial description on one hand, and the vividness of spatial imagery and presence on the other. It is also argued that presence arises from a first-person, enactive process of (...)
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  • Tea With Milk? A Hierarchical Generative Framework of Sequential Event Comprehension.Gina R. Kuperberg - 2021 - Topics in Cognitive Science 13 (1):256-298.
    Inspired by, and in close relation with, the contributions of this special issue, Kuperberg elegantly links event comprehension, production, and learning. She proposes an overarching hierarchical generative framework of processing events enabling us to make sense of the world around us and to interact with it in a competent manner.
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  • Beyond the blank slate: routes to learning new coordination patterns depend on the intrinsic dynamics of the learner—experimental evidence and theoretical model.Viviane Kostrubiec, Pier-Giorgio Zanone, Armin Fuchs & J. A. Scott Kelso - 2012 - Frontiers in Human Neuroscience 6.
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  • A provisional sensory/motor “complementarity” model for adaptation effects.Ivo Kohler - 1979 - Behavioral and Brain Sciences 2 (1):73-74.
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  • On the relation between motor imagery and visual imagery.Roberta L. Klatzky - 1994 - Behavioral and Brain Sciences 17 (2):212-213.
    Jeannerod's target article describes support, through empirical and neurological findings, for the intriguing idea of motor imagery, a form of representation hypothesized to have levels of functional equivalence with motor preparation, while being consciously accessible. Jeannerod suggests that the subjectively accessible content of motor imagery allows it to be distinguished from motor preparation, which is unconscious. Motor imagery is distinguished from visual imagery in terms of content. Motor images are kinesthetic in nature; they are parametrized by variables such as force (...)
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  • Motor-sensory feedback formulations: are we asking the right questions?J. A. Scott Kelso - 1979 - Behavioral and Brain Sciences 2 (1):72-73.
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  • Degrees of freedom, dynamical laws, and boundary conditions for discrete voluntary movement.J. A. S. Kelso - 1989 - Behavioral and Brain Sciences 12 (2):225-225.
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  • Examining memory for ritualized gesture in complex causal sequences.R. Kapitány, C. Kavanagh, H. Whitehouse & M. Nielsen - 2018 - Cognition 181:46-57.
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  • On the Education About/of Radical Embodied Cognition.John van der Kamp, Rob Withagen & Dominic Orth - 2019 - Frontiers in Psychology 10.
    In mainstream or strong university education, the teacher selects and transmits knowledge and skills that students are to acquire and reproduce. Many researchers of radical embodied cognitive science still adhere to this way of teaching, even though this prescriptive pedagogy deeply contrasts with the theoretical underpinnings of their science. In this paper, we search for alternative ways of teaching that are more aligned with the central non-prescriptive and non-representational tenets of radical embodied cognitive science. To this end, we discuss recent (...)
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  • Synergy versus schema.P. C. Kainen - 1994 - Behavioral and Brain Sciences 17 (2):212-212.
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  • Visuomotor experiments: Failure to replicate, or failure to match the theory?Marc Jeannerod - 1979 - Behavioral and Brain Sciences 2 (1):71-71.
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  • The representing brain: Neural correlates of motor intention and imagery.Marc Jeannerod - 1994 - Behavioral and Brain Sciences 17 (2):187-202.
    This paper concerns how motor actions are neurally represented and coded. Action planning and motor preparation can be studied using a specific type of representational activity, motor imagery. A close functional equivalence between motor imagery and motor preparation is suggested by the positive effects of imagining movements on motor learning, the similarity between the neural structures involved, and the similar physiological correlates observed in both imaging and preparing. The content of motor representations can be inferred from motor images at a (...)
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  • Motor representations and reality.M. Jeannerod - 1994 - Behavioral and Brain Sciences 17 (2):229-245.
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  • On the conceptual integration of ethology and neurophysiology.Rudolf Jander - 1986 - Behavioral and Brain Sciences 9 (4):611-612.
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  • What is coded in parietal representations?Ray Jackendoff & Barbara Landau - 1994 - Behavioral and Brain Sciences 17 (2):211-212.
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  • How are multiple central commands integrated for voluntary movement control?Masao Ito - 1986 - Behavioral and Brain Sciences 9 (4):610-611.
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  • Motor memory – a memory of the future.David H. Ingvar - 1994 - Behavioral and Brain Sciences 17 (2):210-211.
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  • Adaptation and mechanical impedance regulation in the control of movements.Gideon F. Inbar - 1986 - Behavioral and Brain Sciences 9 (4):610-610.
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  • Bursts of discharge recorded from the red nucleus may provide real measures of Gottlieb's excitation pulses.James C. Houk - 1989 - Behavioral and Brain Sciences 12 (2):224-225.
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  • A functional approach to movement analysis and error identification in sports and physical education.Ernst-Joachim Hossner, Frank Schiebl & Ulrich Göhner - 2015 - Frontiers in Psychology 6.
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  • Codes and their vicissitudes.Bernhard Hommel, Jochen Müsseler, Gisa Aschersleben & Wolfgang Prinz - 2001 - Behavioral and Brain Sciences 24 (5):910-926.
    First, we discuss issues raised with respect to the Theory of Event Coding (TEC)'s scope, that is, its limitations and possible extensions. Then, we address the issue of specificity, that is, the widespread concern that TEC is too unspecified and, therefore, too vague in a number of important respects. Finally, we elaborate on our views about TEC's relations to other important frameworks and approaches in the field like stages models, ecological approaches, and the two-visual-pathways model. Footnotes1 We acknowledge the precedence (...)
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  • Two ways to reduce motor programming load.Dennis H. Holding - 1989 - Behavioral and Brain Sciences 12 (2):224-224.
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  • Force requirements and patterns of muscle activity.Donna S. Hoffman & Peter L. Strick - 1989 - Behavioral and Brain Sciences 12 (2):221-224.
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  • Is there curvature adaptation not attributable to purely intravisual phenomena?Julian Hochberg & Leon Festinger - 1979 - Behavioral and Brain Sciences 2 (1):71-71.
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  • Movement strategies as points on equal-outcome curves.Herbert Heuer - 1989 - Behavioral and Brain Sciences 12 (2):220-221.
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  • Too Good to be True? Ideomotor Theory from a Computational Perspective.Oliver Herbort & Martin V. Butz - 2012 - Frontiers in Psychology 3.
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  • Post-task Effects on EEG Brain Activity Differ for Various Differential Learning and Contextual Interference Protocols.Diana Henz, Alexander John, Christian Merz & Wolfgang I. Schöllhorn - 2018 - Frontiers in Human Neuroscience 12.
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  • Can the brain be divided into a sensory and a motor part?Volker Henn - 1979 - Behavioral and Brain Sciences 2 (1):70-71.
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  • Grasping time does not influence the early adherence of aperture shaping to Weber's law.Matthew Heath, Scott A. Holmes, Ali Mulla & Gordon Binsted - 2012 - Frontiers in Human Neuroscience 6.
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  • Task variables and the saturation of the excitation pulse.Z. Hasan & G. M. Karst - 1989 - Behavioral and Brain Sciences 12 (2):219-220.
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  • Practice Motions Performed During Preperformance Preparation Drive the Actual Motion of Golf Putting.Yumiko Hasegawa, Akito Miura & Keisuke Fujii - 2020 - Frontiers in Psychology 11.
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  • Is stiffness the mainspring of posture and movement?Z. Hasan - 1992 - Behavioral and Brain Sciences 15 (4):756-758.
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  • Do subprograms for movement always seek equilibrium?Z. Hasan - 1986 - Behavioral and Brain Sciences 9 (4):609-610.
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  • Evaluating nonreplication: more theory and background necessary.Lewis O. Harvey - 1979 - Behavioral and Brain Sciences 2 (1):70-70.
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  • Effect Anticipation Affects Perceptual, Cognitive, and Motor Phases of Response Preparation: Evidence from an Event-Related Potential (ERP) Study.Neil R. Harrison & Michael Ziessler - 2016 - Frontiers in Human Neuroscience 10.
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  • Involvement of primary motor cortex in motor imagery and mental practice.Mark Hallett, Jordan Fieldman, Leonardo G. Cohen, Norihiro Sadato & Alvaro Pascual-Leone - 1994 - Behavioral and Brain Sciences 17 (2):210-210.
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  • Experiment and reality.Mark Hallett - 1989 - Behavioral and Brain Sciences 12 (2):219-219.
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  • When is sensory-motor information necessary, when only useful, and when superfluous?Ralph Norman Haber - 1979 - Behavioral and Brain Sciences 2 (1):68-70.
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  • Motor factors in perception.John Gyr, Richmond Willey & Adele Henry - 1979 - Behavioral and Brain Sciences 2 (1):86-94.
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  • Motor models as steps to higher cognition.Rick Grush - 1994 - Behavioral and Brain Sciences 17 (2):209-210.
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  • Transfer of Training from Virtual to Real Baseball Batting.Rob Gray - 2017 - Frontiers in Psychology 8.
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  • The invariant characteristic isn't.Gerald L. Gottlieb & Gyan C. Agarwal - 1986 - Behavioral and Brain Sciences 9 (4):608-609.
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  • Strategies for the control of voluntary movements with one mechanical degree of freedom.Gerald L. Gottlieb, Daniel M. Corcos & Gyan C. Agarwal - 1989 - Behavioral and Brain Sciences 12 (2):189-210.
    A theory is presented to explain how accurate, single-joint movements are controlled. The theory applies to movements across different distances, with different inertial loads, toward targets of different widths over a wide range of experimentally manipulated velocities. The theory is based on three propositions. (1) Movements are planned according to “strategies” of which there are at least two: a speed-insensitive (SI) and a speed-sensitive (SS) one. (2) These strategies can be equated with sets of rules for performing diverse movement tasks. (...)
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  • What are the building blocks of the frog's wiping reflex?Ilan Golani - 1986 - Behavioral and Brain Sciences 9 (4):607-608.
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  • The strategy used to increase the amplitude of the movement varies with the muscle studied.Emile Godaux - 1989 - Behavioral and Brain Sciences 12 (2):219-219.
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  • Simple changes in reflex threshold cannot explain all aspects of rapid voluntary movements.C. Gielen & J. C. Houk - 1986 - Behavioral and Brain Sciences 9 (4):605-607.
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  • If a particular strategy is used, what aspects of the movement are controlled?C. C. A. M. Gielen & J. J. Denier van der Gon - 1989 - Behavioral and Brain Sciences 12 (2):218-219.
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