articleTop 10% cited
Motor learning in man
Neuroreport · 1990 · Vol. 1(1) · pp. 57–60
Rüdiger J. Seitz✉(Karolinska Institutet)Per E. Roland✉(Karolinska Institutet)Christian Bohm(Stockholm University)T. Greitz(Karolinska University Hospital)Sharon Stone‐Elander
Abstract
We measured regional cerebral blood flow (rCBF) with positron emission tomography to study changes in anatomical structures during the course of learning a complicated finger sequence of voluntary movements. Motor learning was accompanied by rCBF increases in the cerebellum, decreases in all limbic and paralimbic structures, and striatal decreases which changed to striatal increases as the motor skill was learned. Simultaneously, activations of initially contributing non-motor parts of the cerebral cortex vanished. Both cerebellar circuits and striatal circuits appear important for the storage of motor skills in the brain.
Motor Control and AdaptationAction Observation and SynchronizationEEG and Brain-Computer InterfacesCerebellumNeuroscienceCerebral blood flowPsychologyMotor learningMotor cortexCerebral cortexMotor skillPositron emission tomographyMedicine
MeSH terms
AdultBasal GangliaBrainCerebellumCerebrovascular CirculationCorpus StriatumHumansLearningPsychomotor PerformanceTomography, Emission-Computed
Citations
374
FWCI
7.35
field-weighted impact
References
0
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98%
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