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Cerebrocerebellar communication systems.

生物 计算机科学 化学
作者
G.I. Allen,N. Tsukahara
出处
期刊:Physiological Reviews [American Physiological Society]
卷期号:54 (4): 957-1006 被引量:1042
标识
DOI:10.1152/physrev.1974.54.4.957
摘要

Cerebrocerebellar communication systems.G I Allen, and N TsukaharaG I Allen, and N TsukaharaPublished Online:01 Oct 1974https://doi.org/10.1152/physrev.1974.54.4.957MoreSectionsPDF (8 MB)Download PDF ToolsExport citationAdd to favoritesGet permissionsTrack citations ShareShare onFacebookTwitterLinkedInWeChat Previous Back to Top Next Download PDF FiguresReferencesRelatedInformation Cited ByNeuronal activity reorganization in motor cortex for successful locomotion after a lesion in the ventrolateral thalamusIrina N. Beloozerova6 January 2022 | Journal of Neurophysiology, Vol. 127, No. 1Contribution of the ventrolateral thalamus to the locomotion-related activity of motor cortexIrina N. 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Delayed and slow inhibitory effects: An overlooked salient feature of cerebellar climbing fibersBrain Research, Vol. 187, No. 1Responses of pontine nuclei cells to electrical stimulation of the lateral and suprasylvian gyrus in the catBrain Research, Vol. 188, No. 1Changes in dopamine release in caudate nuclei and substantia nigrae after electrical stimulation of the posterior interposate nucleus of cat cerebellumNeuroscience Letters, Vol. 17, No. 1-2Simple spike activity of Purkinje cells in the posterior vermis of awake cats during spontaneous saccadic eye movementsBrain Research Bulletin, Vol. 5, No. 2Bicyclic phosphates increase the cyclic GMP level in rat cerebellum, presumably due to reduced GABA inhibitionBrain Research, Vol. 181, No. 1Some Notes on the Physiology of Speech Production18 August 2016 | Language and Speech, Vol. 23, No. 1Direct afferents to interpositus nucleus responsible for triggering movementBrain Research, Vol. 177, No. 2Reflex motor output to torque pulses in man: Identification of short- and long-latency loops with individual feedback parametersNeuroscience, Vol. 4, No. 10An anatomical investigation of the corticopontine projection in the primate (Macaca fascicularis and Saimiri sciureus)—II. The projection from frontal and parietal association areasNeuroscience, Vol. 4, No. 6The pontocerebellar projection in the rhesus monkey: An experimental study with retrograde axonal transport of horseradish peroxidaseNeuroscience, Vol. 4, No. 2Input to primate motor cortex from posterior parietal cortex (area 5). I. Demonstration by retrograde transportBrain Research, Vol. 157, No. 2Studies on the cell location of cyclic 3′,5′-guanosine monophosphate-dependent protein kinase in cerebellumBrain Research, Vol. 156, No. 2Cerebellar cGMP varies with motor function and respiratory gas exchangeNeuroscience Letters, Vol. 10, No. 1-2Dependence of the activity of interpositus and red nucleus neurons on sensory input data generated by movementBrain Research, Vol. 152, No. 1Principles of organization of the monkey corticopontine projectionBrain Research, Vol. 148, No. 1Preparation for movement in the cat. II. Unit activity in the basal ganglia and thalamusElectroencephalography and Clinical Neurophysiology, Vol. 44, No. 6Difference in cerebellar norepinephrine metabolism in jumping and non-jumping miceLife Sciences, Vol. 22, No. 22Dentate cooling in monkeys performing a visuo-motor pointing taskNeuroscience Letters, Vol. 8, No. 3A quantitative electron microscope study of cerebellar axon terminals on the magnocellular red nucleus neurons in the catBrain Research, Vol. 147, No. 1Projections of the sensorimotor cortex to the basilar pontine nuclei in the rat: an autoradiographic studyBrain Research, Vol. 145, No. 2Responses of neurones of the pontine nuclei to stimulation of the sensorimotor, visual and auditory cortex of ratsBrain Research Bulletin, Vol. 3, No. 1Cerebellar afferents from neurons in motor nuclei of cranial nerves demonstrated by retrograde axonal transport of horseradish peroxidaseBrain Research, Vol. 137, No. 1Spinal input to the lateral cerebellum mediated by infratentorial structuresNeuroscience, Vol. 2, No. 4The cerebellar control of the pupillary light reflex in the catBrain Research, Vol. 128, No. 1The climbing fiber system in the Weaver mutantBrain Research, Vol. 129, No. 1An instruction-selection theory of learning in the cerebellar cortexBrain Research, Vol. 127, No. 2Modulation of cerebellar electrical and unit activity by low-frequency stimulation of caudate nucleus in chronic catsExperimental Neurology, Vol. 55, No. 1Electrophysiological and horseradish peroxidase studies of precerebellar afferents to the nucleus interpositus anterior. 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The projection from motor and somatosensory areasNeuroscience, Vol. 2, No. 6Reexamination of cerebellar responses to stimulation of sensorimotor areas of the cerebral cortexBrain Research, Vol. 118, No. 2Dual nature of the precentral responses to limb perturbations revealed by cerebellar coolingBrain Research, Vol. 117, No. 2The absence of horseradish peroxidase uptake by cerebellar afferents to the red nucleus of the catNeuroscience Letters, Vol. 2, No. 6Anatomical and physiological evidence for a cerebellar nucleo-cortical projection in the catNeuroscience, Vol. 1, No. 3Climbing fiber activation and 3′,5′-cyclic guanosine monophosphate (cGMP) content in cortex and deep nuclei of cerebellumBrain Research, Vol. 107, No. 2Stereotyped flexion of forelimb and hindlimb to microstimulation of dentate nucleus in cebus monkeysBrain Research, Vol. 107, No. 1Changes in a motor pattern following cerebellar and olivary lesions in the squirrel monkeyBrain Research, Vol. 105, No. 1Comparison between red nucleus and precentral neurons during learned movements in the monkeyBrain Research, Vol. 101, No. 1Functional significance of projection from the cerebellar nuclei to the motor cortex in the catBrain Research, Vol. 98, No. 1Effects of dentate cooling on precentral unit activity following torque pulse injections into elbow movementsBrain Research, Vol. 94, No. 2Integration in a disynaptic cortico-motoneuronal pathway to the forelimb in the catBrain Research, Vol. 93, No. 3New concepts on the mechanism of action of benzodiazepinesLife Sciences, Vol. 17, No. 2The action of the dentate nucleus on the excitability of spinal motoneurons via pathways which do not involve the primary sensorimotor cortexBrain Research, Vol. 88, No. 1Cerebellare Bewegungsst�rungen im TierversuchJournal of Neurology, Vol. 209, No. 3Model of four regions of the cerebellum More from this issue > Volume 54Issue 4October 1974Pages 957-1006 Copyright & PermissionsCopyright © 1974 by American Physiological Societyhttps://doi.org/10.1152/physrev.1974.54.4.957PubMed4370744History Published online 1 October 1974 Published in print 1 October 1974 Metrics
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