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Progress in Brain Research|December 4, 2003
Visual awareness and the cerebellum: possible role of decorrelation controlPaul Dean, John Porrill, James V StoneNeural Networks : the Official Journal of the International Neural Network Society|February 9, 2013
Adaptive filters and internal models: multilevel description of cerebellar functionJohn Porrill, Paul Dean, Sean R AndersonProceedings. Biological Sciences|September 28, 2002
Decorrelation control by the cerebellum achieves oculomotor plant compensation in simulated vestibulo-ocular reflexPaul Dean, John Porrill, James V StoneProceedings. Biological Sciences|July 17, 2004
Recurrent cerebellar architecture solves the motor-error problemJohn Porrill, Paul Dean, James V StoneFrontiers in Systems Neuroscience|April 10, 2020
World Statistics Drive Learning of Cerebellar Internal Models in Adaptive Feedback Control: A Case Study Using the Optokinetic ReflexSean R Anderson, John Porrill, Paul DeanBiological Cybernetics|August 17, 2004
Consistency of Listing's law and reciprocal innervation with pseudo-inverse control of eye position in 3-DPaul A Warren, John Porrill, Paul DeanCerebellum (London, England)|July 23, 2005
Report on a workshop concerning the cerebellum and motor learning, held in St Louis October 2004Stephen M Highstein, John Porrill, Paul DeanThe Journal of Physiology|July 10, 2013
An adaptive filter model of cerebellar zone C3 as a basis for safe limb control?Paul Dean, Sean Anderson, John Porrill, et al.Nature Reviews. Neuroscience|December 10, 2009
The cerebellar microcircuit as an adaptive filter: experimental and computational evidencePaul Dean, John Porrill, Carl-Fredrik Ekerot, et al.Vision Research|March 23, 2005
Evidence for wide range of time scales in oculomotor plant dynamics: implications for models of eye-movement controlSokratis Sklavos, John Porrill, Chris R S Kaneko, et al.Pageof 12