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R. C. Miall [5]R. Chris Miall [4]R. Christopher Miall [2]
  1.  74
    Internal Models in the Cerebellum.Daniel M. Wolpert, R. Chris Miall & Mitsuo Kawato - 1998 - Trends in Cognitive Sciences 2 (9):338-347.
  2.  14
    Does Proprioception Influence Human Spatial Cognition? A Study on Individuals With Massive Deafferentation.Alix G. Renault, Malika Auvray, Gaetan Parseihian, R. Chris Miall, Jonathan Cole & Fabrice R. Sarlegna - 2018 - Frontiers in Psychology 9.
  3.  3
    Effect of tDCS Over the Right Inferior Parietal Lobule on Mind-Wandering Propensity.Sean Coulborn, Howard Bowman, R. Chris Miall & Davinia Fernández-Espejo - 2020 - Frontiers in Human Neuroscience 14.
  4.  3
    The Planning and Control Model (PCM) of Motorvisual Priming: Reconciling Motorvisual Impairment and Facilitation Effects.Roland Thomaschke, Brian Hopkins & R. Christopher Miall - 2012 - Psychological Review 119 (2):388-407.
  5.  12
    Graph Network Analysis of Immediate Motor-Learning Induced Changes in Resting State BOLD.S. Sami & R. C. Miall - 2013 - Frontiers in Human Neuroscience 7.
  6. Memory for Time: A Continuous Clock.P. A. Lewis & R. C. Miall - 2006 - Trends in Cognitive Sciences 10:401-406.
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  7.  29
    Sequences of Sensory Predictions.R. C. Miall - 1997 - Behavioral and Brain Sciences 20 (2):258-259.
    I argue that the rôle for the cerebellar cortex is in the generation of sensory predictions, not motor sequences. This proposal may explain the allometric relationship described in Braitenberg et al.'s target article. I also point out that the parallel beam organisation may have a nontemporal basis.
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  8.  7
    Frontoparietal Theta Activity Supports Behavioral Decisions in Movement-Target Selection.Christian J. Rawle, R. Chris Miall & Peter Praamstra - 2012 - Frontiers in Human Neuroscience 6.
  9.  6
    Sensory Prediction as a Role for the Cerebellum.R. C. Miall, M. Malkmus & E. M. Robertson - 1996 - Behavioral and Brain Sciences 19 (3):466-467.
    We suggest that the cerebellum generates sensory or estimates based on outgoing motor commands and sensory feedback. Thus, it is not a motor pattern generator (HOUK et al.) but a predictive system which is intimately involved in motor behavior. This theory may explain the sensitivity of the climbing fibers to both unexpected external events and motor errors (SIMPSON et al.), and we speculate that unusual biophysical properties of the inferior olive might allow the cerebellum to develop multiple asynchronous sensory estimates, (...)
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  10. Motor Control, Biological and Theoretical.R. C. Miall - 1995 - In Michael A. Arbib (ed.), Handbook of Brain Theory and Neural Networks. MIT Press. pp. 597--600.
     
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  11.  3
    Simple or Complex Systems?R. Christopher Miall - 1986 - Behavioral and Brain Sciences 9 (4):734-734.