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Cerebellar activity evoked by common tool-use execution and imagery tasks: An fMRI study.

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Cerebellar activity evoked by common tool-use execution and imagery tasks: An fMRI study. / Higuchi, Satomi; Imamizu, Hiroshi; Kawato, Mitsuo.
In: Cortex, Vol. 43, No. 3, 2007, p. 350-349.

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Higuchi S, Imamizu H, Kawato M. Cerebellar activity evoked by common tool-use execution and imagery tasks: An fMRI study. Cortex. 2007;43(3):350-349. doi: 10.1016/S0010-9452(08)70460-X

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Higuchi, Satomi ; Imamizu, Hiroshi ; Kawato, Mitsuo. / Cerebellar activity evoked by common tool-use execution and imagery tasks: An fMRI study. In: Cortex. 2007 ; Vol. 43, No. 3. pp. 350-349.

Bibtex

@article{044d5e25941a425aac6b814662c3f2cf,
title = "Cerebellar activity evoked by common tool-use execution and imagery tasks: An fMRI study.",
abstract = "The purpose of this study is to identify the functional brain networks activated in relation to actual tool-use in humans. Although previous studies have identified brain activity related to tool-use gestures (Moll et al., 2000), they did not investigate the brain activity involved in such tool-use. We investigated brain activity using functional magnetic resonance imaging (fMRI) while human subjects mentally imagined using sixteen common tools and while they actually used them. Brain activity for both actual and imagined tool-use was found in the posterior part of the parietal cortex, in the supplementary motor area, and in the cerebellum. Under imagined tool-use conditions, we found brain activity in the premotor and right pars opercularis. Under actual tool-use conditions, we found it in the primary motor area, in the thalamus, and in the left pars opercularis. Our precise analysis in the cerebellum indicated that activity evoked by imagery was located significantly more lateral to that evoked by actual use. We found a relationship between activity in the tool imagery and execution conditions by comparing their t-value-weighted centroid of activation coordinates. Moreover, for half of the subjects the spatial distribution pattern for each tool was similar, suggesting that neural mechanisms contributing to skillful tool-use are modularly organized in the cerebellum.",
keywords = "tool-use, imagery, fMRI, cerebellum",
author = "Satomi Higuchi and Hiroshi Imamizu and Mitsuo Kawato",
year = "2007",
doi = "10.1016/S0010-9452(08)70460-X",
language = "English",
volume = "43",
pages = "350--349",
journal = "Cortex",
issn = "0010-9452",
publisher = "Masson SpA",
number = "3",

}

RIS

TY - JOUR

T1 - Cerebellar activity evoked by common tool-use execution and imagery tasks: An fMRI study.

AU - Higuchi, Satomi

AU - Imamizu, Hiroshi

AU - Kawato, Mitsuo

PY - 2007

Y1 - 2007

N2 - The purpose of this study is to identify the functional brain networks activated in relation to actual tool-use in humans. Although previous studies have identified brain activity related to tool-use gestures (Moll et al., 2000), they did not investigate the brain activity involved in such tool-use. We investigated brain activity using functional magnetic resonance imaging (fMRI) while human subjects mentally imagined using sixteen common tools and while they actually used them. Brain activity for both actual and imagined tool-use was found in the posterior part of the parietal cortex, in the supplementary motor area, and in the cerebellum. Under imagined tool-use conditions, we found brain activity in the premotor and right pars opercularis. Under actual tool-use conditions, we found it in the primary motor area, in the thalamus, and in the left pars opercularis. Our precise analysis in the cerebellum indicated that activity evoked by imagery was located significantly more lateral to that evoked by actual use. We found a relationship between activity in the tool imagery and execution conditions by comparing their t-value-weighted centroid of activation coordinates. Moreover, for half of the subjects the spatial distribution pattern for each tool was similar, suggesting that neural mechanisms contributing to skillful tool-use are modularly organized in the cerebellum.

AB - The purpose of this study is to identify the functional brain networks activated in relation to actual tool-use in humans. Although previous studies have identified brain activity related to tool-use gestures (Moll et al., 2000), they did not investigate the brain activity involved in such tool-use. We investigated brain activity using functional magnetic resonance imaging (fMRI) while human subjects mentally imagined using sixteen common tools and while they actually used them. Brain activity for both actual and imagined tool-use was found in the posterior part of the parietal cortex, in the supplementary motor area, and in the cerebellum. Under imagined tool-use conditions, we found brain activity in the premotor and right pars opercularis. Under actual tool-use conditions, we found it in the primary motor area, in the thalamus, and in the left pars opercularis. Our precise analysis in the cerebellum indicated that activity evoked by imagery was located significantly more lateral to that evoked by actual use. We found a relationship between activity in the tool imagery and execution conditions by comparing their t-value-weighted centroid of activation coordinates. Moreover, for half of the subjects the spatial distribution pattern for each tool was similar, suggesting that neural mechanisms contributing to skillful tool-use are modularly organized in the cerebellum.

KW - tool-use

KW - imagery

KW - fMRI

KW - cerebellum

U2 - 10.1016/S0010-9452(08)70460-X

DO - 10.1016/S0010-9452(08)70460-X

M3 - Journal article

VL - 43

SP - 350

EP - 349

JO - Cortex

JF - Cortex

SN - 0010-9452

IS - 3

ER -