Literature DB >> 10669519

Human cerebellum plays an important role in memory-timed finger movement: an fMRI study.

R Kawashima1, J Okuda, A Umetsu, M Sugiura, K Inoue, K Suzuki, M Tabuchi, T Tsukiura, S L Narayan, T Nagasaka, I Yanagawa, T Fujii, S Takahashi, H Fukuda, A Yamadori.   

Abstract

The purpose of this study was to determine, by using functional magnetic resonance imaging, the areas of the brain activated during a memory-timed finger movement task and compare these with those activated during a visually cued movement task. Because it is likely that subjects engage in subvocalization associated with chronometric counting to achieve accurate timing during memory-timed movements, the authors sought to determine the areas of the brain activated during a silent articulation task in which the subjects were instructed to reproduce the same timing as for the memory-timed movement task without any lip movements or vocalization. The memory-timed finger movement task induced activation of the anterior lobe of the cerebellum (lobules IV and V) bilaterally, the contralateral primary motor area, the supplementary motor area (SMA), the premotor area (PMA), the prefrontal cortex, and the posterior parietal cortex bilaterally, compared with the resting condition. The same areas in the SMA and left prefrontal cortex were activated during the silent articulation task compared with the resting condition. The anterior lobe of the cerebellum on both sides was also activated during the silent articulation task compared with the resting condition, but these activations did not reach statistical significance (P < 0.05 corrected). In addition, the anterior cerebellum on both sides showed significant activation during the memory-timed movement task when compared with the visually cued finger movement task. The visually cued finger movement task specifically activated the ipsilateral PMA and the intraparietal cortex bilaterally. The results indicate that the anterior lobe of the cerebellum of both sides, the SMA, and the left prefrontal cortex were probably involved in the generation of accurate timing, functioning as a clock within the CNS, and that the dorsal visual pathway may be involved in the generation of visually cued movements.

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Year:  2000        PMID: 10669519     DOI: 10.1152/jn.2000.83.2.1079

Source DB:  PubMed          Journal:  J Neurophysiol        ISSN: 0022-3077            Impact factor:   2.714


  34 in total

1.  Modulation of cerebellar activation by predictive and non-predictive sequential finger movements.

Authors:  Matthias F Nitschke; Gregor Stavrou; Uwe H Melchert; Christian Erdmann; Dirk Petersen; Karl Wessel; Wolfgang Heide
Journal:  Cerebellum       Date:  2003       Impact factor: 3.847

2.  Reduced recruitment of motor association areas during bimanual coordination in concert pianists.

Authors:  Bernhard Haslinger; Peter Erhard; Eckart Altenmüller; Andreas Hennenlotter; Markus Schwaiger; Helga Gräfin von Einsiedel; Ernst Rummeny; Bastian Conrad; Andrés O Ceballos-Baumann
Journal:  Hum Brain Mapp       Date:  2004-07       Impact factor: 5.038

3.  The right dorsolateral prefrontal cortex is essential in time reproduction: an investigation with repetitive transcranial magnetic stimulation.

Authors:  Catherine R G Jones; Karin Rosenkranz; John C Rothwell; Marjan Jahanshahi
Journal:  Exp Brain Res       Date:  2004-05-15       Impact factor: 1.972

4.  Carving the clock at its component joints: neural bases for interval timing.

Authors:  Elaine B Wencil; H Branch Coslett; Geoffrey K Aguirre; Anjan Chatterjee
Journal:  J Neurophysiol       Date:  2010-03-24       Impact factor: 2.714

5.  The influence of normal human ageing on automatic movements.

Authors:  Tao Wu; Mark Hallett
Journal:  J Physiol       Date:  2004-10-28       Impact factor: 5.182

6.  Fusing EEG and fMRI based on a bottom-up model: inferring activation and effective connectivity in neural masses.

Authors:  J Riera; E Aubert; K Iwata; R Kawashima; X Wan; T Ozaki
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2005-05-29       Impact factor: 6.237

7.  Three-dimensional locations and boundaries of motor and premotor cortices as defined by functional brain imaging: a meta-analysis.

Authors:  Mary A Mayka; Daniel M Corcos; Sue E Leurgans; David E Vaillancourt
Journal:  Neuroimage       Date:  2006-03-29       Impact factor: 6.556

8.  The supplementary motor area in motor and perceptual time processing: fMRI studies.

Authors:  Françoise Macar; Jennifer Coull; Franck Vidal
Journal:  Cogn Process       Date:  2006-01-18

9.  Functional neural circuits for mental timekeeping.

Authors:  Michael C Stevens; Kent A Kiehl; Godfrey Pearlson; Vince D Calhoun
Journal:  Hum Brain Mapp       Date:  2007-05       Impact factor: 5.038

10.  Coordinate-based activation likelihood estimation meta-analysis of neuroimaging data: a random-effects approach based on empirical estimates of spatial uncertainty.

Authors:  Simon B Eickhoff; Angela R Laird; Christian Grefkes; Ling E Wang; Karl Zilles; Peter T Fox
Journal:  Hum Brain Mapp       Date:  2009-09       Impact factor: 5.038

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