Abstract
Long-term adaptive changes in primate vestibuloocular reflex. IV. Electrophysiological observations in flocculus of adapted monkeys.F A Miles, D J Braitman, and B M DowF A Miles, D J Braitman, and B M DowPublished Online:01 May 1980https://doi.org/10.1152/jn.1980.43.5.1477MoreSectionsPDF (3 MB)Download PDF ToolsExport citationAdd to favoritesGet permissionsTrack citations ShareShare onFacebookTwitterLinkedInWeChat Previous Back to Top Download PDF FiguresReferencesRelatedInformation Cited ByPurkinje Cell Representations of Behavior: Diary of a Busy Neuron9 July 2018 | The Neuroscientist, Vol. 10Selective Optogenetic Control of Purkinje Cells in Monkey CerebellumNeuron, Vol. 95, No. 1Gating of neural error signals during motor learning22 April 2014 | eLife, Vol. 3Tuning of gravity-dependent and gravity-independent vertical angular VOR gain changes by frequency of adaptationSergei B. Yakushin15 June 2012 | Journal of Neurophysiology, Vol. 107, No. 12Encoding and Decoding of Learned Smooth-Pursuit Eye Movements in the Floccular Complex of the Monkey CerebellumJavier F. Medina, and Stephen G. Lisberger1 October 2009 | Journal of Neurophysiology, Vol. 102, No. 4CEREBELLUM-DEPENDENT LEARNING: The Role of Multiple Plasticity MechanismsAnnual Review of Neuroscience, Vol. 27, No. 1Signals That Modulate Gain Control for Smooth Pursuit Eye Movements in MonkeysMegan R. Carey, and Stephen G. Lisberger1 February 2004 | Journal of Neurophysiology, Vol. 91, No. 2Long-Lasting Increases in Intrinsic Excitability Triggered by InhibitionNeuron, Vol. 40, No. 3Active Reversal of Motor Memories Reveals Rules Governing Memory EncodingNeuron, Vol. 39, No. 6Computational Study on Monkey VOR Adaptation and Smooth Pursuit Based on the Parallel Control-Pathway TheoryHiromitsu Tabata, Kenji Yamamoto, and Mitsuo Kawato1 April 2002 | Journal of Neurophysiology, Vol. 87, No. 4Effect of Adaptation to Telescopic Spectacles on the Initial Human Horizontal Vestibuloocular ReflexBenjamin T. Crane, and Joseph L. Demer1 January 2000 | Journal of Neurophysiology, Vol. 83, No. 1Topography and Reciprocal Activity of Cerebellar Purkinje Cells in the Uvula-Nodulus Modulated by Vestibular StimulationH. Fushiki, and N. H. Barmack1 December 1997 | Journal of Neurophysiology, Vol. 78, No. 6Learning: A mechanism of learning found?Current Biology, Vol. 5, No. 3Are ventromedial medulla neuronal properties modified by chronic peripheral inflammation? A single-unit study in the awake, freely moving polyarthritic ratBrain Research, Vol. 657, No. 1-2The Role of the Cerebellum in Motor Control and Motor LearningPhysical Medicine and Rehabilitation Clinics of North America, Vol. 4, No. 4Memory traces in spinal cordTrends in Neurosciences, Vol. 13, No. 4Classical conditioning of the eyeblink reflex in the decerebrate-decerebellate rabbitBehavioural Brain Research, Vol. 38, No. 1Vestibular and visual signals in the ventral paraflocculus of the cerebellum in rabbitsNeuroscience Letters, Vol. 108, No. 1-2The neural basis for motor learning in the vestibulo-ocular reflex in monkeysTrends in Neurosciences, Vol. 11, No. 4High thresholds for movement perception in schizophrenia may indicate abnormal extraneous noise levels of central vestibular activityBiological Psychiatry, Vol. 20, No. 11Role of the primate flocculus in adaptation of the vestibulo-ocular reflexNeuroscience Research, Vol. 3, No. 1Cerebellar norepinephrine depletion and impaired acquisition of specific locomotor tasks in ratsBrain Research, Vol. 296, No. 1Role of the cerebellum during motor learning in the vestibulo-ocular reflexTrends in Neurosciences, Vol. 5 More from this issue > Volume 43Issue 5May 1980Pages 1477-93 https://doi.org/10.1152/jn.1980.43.5.1477PubMed6768854History Published online 1 May 1980 Published in print 1 May 1980 Metrics
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