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Electrophysiology of the Cerebellar Networks

1981/12/01 by Rodolfó R. Llinás · 1 citation
Neuroscience · #Vestibular and auditory disorders #Hearing, Cochlea, Tinnitus, Genetics #Neuroscience of respiration and sleep

paper · doi:10.1002/cphy.cp010217

openalex publication_date 1981/12/01 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/29

Abstract

The sections in this article are: 1 Comparative Aspects of Cerebellar Circuits 2 Field Potentials 2.1 Local Stimulation of Cerebellar Cortex 2.1.1 General Description 2.1.2 Parallel Fiber Field Potentials 2.1.3 Comparative Aspects of Field Potentials Evoked by Surface Stimulation 2.2 Field Potentials Generated by White Matter Stimulation of Cerebellar Cortex 2.2.1 Activation of Mossy Fiber and Climbing Fiber Afferents 2.2.2 Interactions 2.3 Summary 3 Unitary Cell Recording from Cerebellar Cortex 3.1 Electrophysiology of Purkinje Cells 3.1.1 Extracellular Action Potentials 3.1.2 Spontaneous Activity 3.1.3 Intracellular Studies of Purkinje Cells 3.1.4 Ionic Basis of Purkinje Cell Action Potentials 3.1.5 Integrative Properties of Purkinje Cells 3.1.6 Comparative Aspects of Purkinje Cell Spontaneous Firing 3.2 Activation of Climbing Fiber Afferents 3.2.1 Functional Properties of Climbing Fiber Afferents 3.2.2 Comparative Aspects of Climbing Fiber Activation of Purkinje Cells 3.3 Mossy Fiber Afferents 3.3.1 Radial Organization of Molecular-Layer Afferents 3.3.2 Parallel Fiber Action on Purkinje Cells 3.4 Inhibitory Systems in Cerebellar Cortex 3.4.1 Inhibitory Systems of Molecular Layer 3.4.2 Inhibitory System of Granular Layer: Golgi Cells 3.4.3 Catecholaminergic Inhibitory System 3.4.4 Comparative Aspects 3.5 Summary 4 Purkinje Cell Target Neurons, Cerebellar Nuclei, and Deiters' Nucleus 4.1 Summary 5 Inferior Olive 5.1 Intracellular Recording From Inferior Olivary Cells In Vivo and In Vitro 5.2 Ionic Mechanisms in Spike Generation 5.2.1 High-Threshold Calcium Spike 5.2.2 Low-Threshold Spikes 5.3 Inferior Olivary Cell as Single-Cell Oscillator 5.4 Long-Term Changes in Inferior Olive Neuronal Excitability 5.5 Electrotonic Coupling 5.6 Summary 6 Overall Function of Cerebellum 6.1 Braitenberg's Timing Model 6.2 Marr's Learning Model 6.3 Pellionisz-Llinás Tensor Model 6.4 Boylls' Synergic Parameterization Theory 6.4.1 Mechanisms 6.5 Summary

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