Literature DB >> 11011063

Processing of multiple kinematic signals in the cerebellum and motor cortices.

M T Johnson1, T J Ebner.   

Abstract

The cerebellum and motor cortices are hypothesized to make fundamentally different but synergistic contributions to the control of movement. Richly interconnected, these structures must communicate and translate salient parameters of movement. This review examines the similarities and differences in the encoding of multiple limb movement parameters in the cerebellum and motor cortices. Also presented are recent data on direction and speed coding by cerebellar Purkinje cells and primary motor and dorsal premotor cortical neurons during a visually-instructed, manual tracking task. Both similarities and differences have been found in the way that these two motor areas process movement parameters. For example, the two motor control structures encode direction with almost identical depths of modulation, which may simplify the exchange of directional signals. Two major differences between the cerebellum and motor cortices consist of the distribution of the preferred directions and the manner in which direction and speed are jointly signaled within the discharge of individual neurons. First, an anterior-posterior distribution of preferred directions has been shown for both reaching and manual tracking, consistent with an intrinsic reference frame and/or the structure of afferent input. In contrast, neurons in the motor cortices have uniformly distributed preferred directions, consistent with general purpose directional calculations. Secondly, Purkinje cells in the cerebellum and motor cortices combine movement direction and speed information differently. For example, Purkinje cell discharge encodes combinations of direction and speed, a 'preferred velocity', while the motor cortical neurons use a temporal parcellation scheme to encode multiple parameters of movement. These results demonstrate that the cerebellum and motor cortices process and use kinematic information in fundamentally different ways that may underlie the functional uniqueness of the two motor control structures.

Mesh:

Year:  2000        PMID: 11011063     DOI: 10.1016/s0165-0173(00)00027-8

Source DB:  PubMed          Journal:  Brain Res Brain Res Rev


  17 in total

1.  Recovery of motor deficit, cerebellar serotonin and lipid peroxidation levels in the cortex of injured rats.

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2.  Generalization as a behavioral window to the neural mechanisms of learning internal models.

Authors:  Reza Shadmehr
Journal:  Hum Mov Sci       Date:  2004-11       Impact factor: 2.161

3.  Purkinje cells in the lateral cerebellum of the cat encode visual events and target motion during visually guided reaching.

Authors:  Omür Budanur Miles; Nadia L Cerminara; Dilwyn E Marple-Horvat
Journal:  J Physiol       Date:  2006-01-19       Impact factor: 5.182

4.  An internal model of a moving visual target in the lateral cerebellum.

Authors:  Nadia L Cerminara; Richard Apps; Dilwyn E Marple-Horvat
Journal:  J Physiol       Date:  2008-12-01       Impact factor: 5.182

5.  Signaling of grasp dimension and grasp force in dorsal premotor cortex and primary motor cortex neurons during reach to grasp in the monkey.

Authors:  Claudia M Hendrix; Carolyn R Mason; Timothy J Ebner
Journal:  J Neurophysiol       Date:  2009-04-29       Impact factor: 2.714

Review 6.  Processing of limb kinematics in the interpositus nucleus.

Authors:  Antonino Casabona; Gianfranco Bosco; Vincenzo Perciavalle; Maria Stella Valle
Journal:  Cerebellum       Date:  2010-03       Impact factor: 3.847

7.  Cerebellar nuclei: key roles for strategically located structures.

Authors:  Mario Manto; Nordeyn Oulad Ben Taib
Journal:  Cerebellum       Date:  2010-03       Impact factor: 3.847

8.  Cortical neurons multiplex reward-related signals along with sensory and motor information.

Authors:  Arjun Ramakrishnan; Yoon Woo Byun; Kyle Rand; Christian E Pedersen; Mikhail A Lebedev; Miguel A L Nicolelis
Journal:  Proc Natl Acad Sci U S A       Date:  2017-05-30       Impact factor: 11.205

9.  Mechanisms of short-term training-induced reaching improvement in severely hemiparetic stroke patients: a TMS study.

Authors:  Michelle L Harris-Love; Susanne M Morton; Monica A Perez; Leonardo G Cohen
Journal:  Neurorehabil Neural Repair       Date:  2011-02-22       Impact factor: 3.919

10.  Brief report: postural reactivity to fast visual motion differentiates autistic from children with Asperger syndrome.

Authors:  Bruno Gepner; Daniel R Mestre
Journal:  J Autism Dev Disord       Date:  2002-06
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