Výsledky vyhledávání - Computational Principles of Motor Control and Learning

  1. 1

    Robotic neurorehabilitation: a computational motor learning perspective Autor Huang, Vincent S, Krakauer, John W

    ISSN: 1743-0003, 1743-0003
    Vydáno: London BioMed Central 25.02.2009
    “… Robotic neurorehabilitation has the potential for a greater impact on impairment due to easy deployment, its applicability across of a wide range of motor impairment, its high measurement reliability…”
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  2. 2

    A spiking neural program for sensorimotor control during foraging in flying insects Autor Rapp, Hannes, Nawrot, Martin Paul

    ISSN: 1091-6490, 1091-6490
    Vydáno: United States 10.11.2020
    “… processing, learning, and motor control. We focus on cast and surge strategies employed by flying insects when foraging within turbulent odor plumes…”
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  3. 3

    Computational principles of movement neuroscience Autor Wolpert, Daniel M., Ghahramani, Zoubin

    ISSN: 1097-6256, 1546-1726
    Vydáno: United States Nature Publishing Group 01.11.2000
    Vydáno v Nature neuroscience (01.11.2000)
    “…Unifying principles of movement have emerged from the computational study of motor control…”
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  4. 4

    Cerebellar contributions to motor control and language comprehension: searching for common computational principles Autor Moberget, Torgeir, Ivry, Richard B.

    ISSN: 0077-8923, 1749-6632, 1749-6632
    Vydáno: United States Blackwell Publishing Ltd 01.04.2016
    “…The past 25 years have seen the functional domain of the cerebellum extend beyond the realm of motor control, with considerable discussion of how this subcortical structure contributes to cognitive…”
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  5. 5

    A Computational Model of Limb Impedance Control Based on Principles of Internal Model Uncertainty Autor Mitrovic, Djordje, Klanke, Stefan, Osu, Rieko, Kawato, Mitsuo, Vijayakumar, Sethu

    ISSN: 1932-6203, 1932-6203
    Vydáno: United States Public Library of Science 26.10.2010
    Vydáno v PloS one (26.10.2010)
    “… While there is much experimental evidence available that the nervous system employs such strategies, no generally-valid computational model of impedance control derived from first principles has been proposed so far…”
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  6. 6

    Computational approaches to motor learning by imitation Autor Schaal, Stefan, Ijspeert, Auke, Billard, Aude

    ISSN: 0962-8436
    Vydáno: England 29.03.2003
    “… previously learned movement, resolution of redundant degrees-of-freedom that are unconstrained by the observation, suitable movement representations for imitation, modularization of motor control, etc…”
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  7. 7

    Principles of sensorimotor learning Autor Wolpert, Daniel M., Diedrichsen, Jörn, Flanagan, J. Randall

    ISSN: 1471-003X, 1471-0048, 1471-0048, 1469-3178
    Vydáno: London Nature Publishing Group UK 01.12.2011
    Vydáno v Nature reviews. Neuroscience (01.12.2011)
    “…Key Points Learning movement skills involves a number of interacting components, such as information extraction, decision making, different classes of control, motor learning and its representations…”
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  8. 8

    A Modular Dynamic Sensorimotor Model for Affordances Learning, Sequences Planning, and Tool-Use Autor Braud, Raphael, Pitti, Alexandre, Gaussier, Philippe

    ISSN: 2379-8920, 2379-8939
    Vydáno: Piscataway IEEE 01.03.2018
    “…This paper proposes a computational model for learning robot control and sequence planning based on the ideomotor principle…”
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  9. 9

    Optimality Principles in Human Point-to-Manifold Reaching Accounting for Muscle Dynamics Autor Wochner, Isabell, Driess, Danny, Zimmermann, Heiko, Haeufle, Daniel F. B., Toussaint, Marc, Schmitt, Syn

    ISSN: 1662-5188, 1662-5188
    Vydáno: Lausanne Frontiers Research Foundation 15.05.2020
    “… Many researchers hypothesize that through evolution, learning, and adaption, the human system has developed optimal control strategies to select between these possibilities…”
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  10. 10

    Adaptation across the 2D population code explains the spatially distributive nature of motor learning Autor Masselink, Jana, Lappe, Markus

    ISSN: 1553-7358, 1553-734X, 1553-7358
    Vydáno: United States Public Library of Science 01.06.2025
    Vydáno v PLoS computational biology (01.06.2025)
    “…In current computational models on oculomotor learning ‘the’ movement vector is adapted in response to targeting errors…”
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  11. 11

    Reinforcement Learning or Active Inference? Autor Friston, Karl J., Daunizeau, Jean, Kiebel, Stefan J.

    ISSN: 1932-6203, 1932-6203
    Vydáno: United States Public Library of Science 29.07.2009
    Vydáno v PloS one (29.07.2009)
    “…This paper questions the need for reinforcement learning or control theory when optimising behaviour…”
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  12. 12

    Model-Free Robust Optimal Feedback Mechanisms of Biological Motor Control Autor Bian, Tao, Wolpert, Daniel M, Jiang, Zhong-Ping

    ISSN: 1530-888X, 1530-888X
    Vydáno: United States 01.03.2020
    Vydáno v Neural computation (01.03.2020)
    “… Nevertheless, the central nervous system (CNS) can gracefully coordinate our movements. Most learning frameworks rely on the internal model principle, which requires…”
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  13. 13

    Human decision making anticipates future performance in motor learning Autor Moskowitz, Joshua B., Gale, Daniel J., Gallivan, Jason P., Wolpert, Daniel M., Flanagan, J. Randall

    ISSN: 1553-7358, 1553-734X, 1553-7358
    Vydáno: United States Public Library of Science 01.02.2020
    Vydáno v PLoS computational biology (01.02.2020)
    “… Here we asked whether, in the context of motor learning where errors decrease across trials, people take into account their future, improved performance so as to make optimal decisions to maximize reward…”
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  14. 14

    Goal-related feedback guides motor exploration and redundancy resolution in human motor skill acquisition Autor Rohde, Marieke, Narioka, Kenichi, Steil, Jochen J., Klein, Lina K., Ernst, Marc O.

    ISSN: 1553-7358, 1553-734X, 1553-7358
    Vydáno: United States Public Library of Science 01.03.2019
    Vydáno v PLoS computational biology (01.03.2019)
    “… is underdetermined because a goal can often be achieved by many different movements (motor redundancy). How humans learn to resolve motor redundancy and by which principles they explore high-dimensional motor spaces has hardly been investigated…”
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  15. 15

    Modular Learning Systems for Continual Control: Neural Principles and Computational Models Autor Amematsro, Elom A

    ISBN: 9798291575284
    Vydáno: ProQuest Dissertations & Theses 01.01.2025
    “…: A Framework for Motor Control introduces a probabilistic framework for motor control that unifies principles from optimal feedback control and dynamical systems theory…”
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    Dissertation
  16. 16

    Analogous computations in working memory input, output and motor gating: Electrophysiological and computational modeling evidence Autor Rac-Lubashevsky, Rachel, Frank, Michael J.

    ISSN: 1553-7358, 1553-734X, 1553-7358
    Vydáno: United States Public Library of Science 01.06.2021
    Vydáno v PLoS computational biology (01.06.2021)
    “…), from working-memory (output gating), and of responses (motor gating) and tested the neural dynamics and computational principles that support…”
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  17. 17

    The Concept of Transmission Coefficient Among Different Cerebellar Layers: A Computational Tool for Analyzing Motor Learning Autor Solouki, Saeed, Bahrami, Fariba, Janahmadi, Mahyar

    ISSN: 1662-5110, 1662-5110
    Vydáno: Switzerland Frontiers Research Foundation 27.08.2019
    Vydáno v Frontiers in neural circuits (27.08.2019)
    “…High-fidelity regulation of information transmission among cerebellar layers is mainly provided by synaptic plasticity. Therefore, determining the regulatory…”
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  18. 18

    Action and behavior: a free-energy formulation Autor Friston, Karl J, Daunizeau, Jean, Kilner, James, Kiebel, Stefan J

    ISSN: 0340-1200, 1432-0770, 1432-0770
    Vydáno: Berlin/Heidelberg Berlin/Heidelberg : Springer-Verlag 01.03.2010
    Vydáno v Biological cybernetics (01.03.2010)
    “…We have previously tried to explain perceptual inference and learning under a free-energy principle that pursues Helmholtz's agenda to understand the brain in terms of energy minimization…”
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  19. 19

    A neural active inference model of perceptual-motor learning Autor Yang, Zhizhuo, Diaz, Gabriel J., Fajen, Brett R., Bailey, Reynold, Ororbia, Alexander G.

    ISSN: 1662-5188, 1662-5188
    Vydáno: Switzerland Frontiers Research Foundation 20.02.2023
    “…The active inference framework (AIF) is a promising new computational framework grounded in contemporary neuroscience that can produce human-like behavior through reward-based learning…”
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  20. 20

    Inference of affordances and active motor control in simulated agents Autor Scholz, Fedor, Gumbsch, Christian, Otte, Sebastian, Butz, Martin V.

    ISSN: 1662-5218, 1662-5218
    Vydáno: Lausanne Frontiers Research Foundation 11.08.2022
    Vydáno v Frontiers in neurorobotics (11.08.2022)
    “…Flexible, goal-directed behavior is a fundamental aspect of human life. Based on the free energy minimization principle, the theory of active inference…”
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