Literature DB >> 16495453

Dissociating the role of ventral and dorsal premotor cortex in precision grasping.

Marco Davare1, Michael Andres, Guy Cosnard, Jean-Louis Thonnard, Etienne Olivier.   

Abstract

Small-object manipulation is essential in numerous human activities, although its neural bases are still essentially unknown. Recent functional imaging studies have shown that precision grasping activates a large bilateral frontoparietal network, including ventral (PMv) and dorsal (PMd) premotor areas. To dissociate the role of PMv and PMd in the control of hand and finger movements, we produced, by means of transcranial magnetic stimulation (TMS), transient virtual lesions of these two areas in both hemispheres, in healthy subjects performing a grip-lift task with their right, dominant hand. We found that a virtual lesion of PMv specifically impaired the grasping component of these movements: a lesion of either the left or right PMv altered the correct positioning of fingers on the object, a prerequisite for an efficient grasping, whereas lesioning the left, contralateral PMv disturbed the sequential recruitment of intrinsic hand muscles, all other movement parameters being unaffected by PMv lesions. Conversely, we found that a virtual lesion of the left PMd impaired the proper coupling between the grasping and lifting phases, as evidenced by the TMS-induced delay in the recruitment of proximal muscles responsible for the lifting phase; lesioning the right PMd failed to affect dominant hand movements. Finally, an analysis of the time course of these effects allowed us to demonstrate the sequential involvement of PMv and PMd in movement preparation. These results provide the first compelling evidence for a neuronal dissociation between the different phases of precision grasping in human premotor cortex.

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Year:  2006        PMID: 16495453      PMCID: PMC6674806          DOI: 10.1523/JNEUROSCI.3386-05.2006

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  53 in total

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4.  Cortical mechanism for the visual guidance of hand grasping movements in the monkey: A reversible inactivation study.

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9.  Impaired grip-lift synergy in children with unilateral brain lesions.

Authors:  H Forssberg; A C Eliasson; C Redon-Zouitenn; E Mercuri; L Dubowitz
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10.  A fronto-parietal circuit for object manipulation in man: evidence from an fMRI-study.

Authors:  F Binkofski; G Buccino; S Posse; R J Seitz; G Rizzolatti; H Freund
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  115 in total

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2.  Information about the weight of grasped objects from vision and internal models interacts within the primary motor cortex.

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Review 3.  Specialization of reach function in human posterior parietal cortex.

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Journal:  Exp Brain Res       Date:  2012-07-10       Impact factor: 1.972

4.  The differential modulation of the ventral premotor-motor interaction during movement initiation is deficient in patients with focal hand dystonia.

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

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Journal:  J Neurophysiol       Date:  2009-04-29       Impact factor: 2.714

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9.  Selective modulation of interactions between ventral premotor cortex and primary motor cortex during precision grasping in humans.

Authors:  Marco Davare; Roger Lemon; Etienne Olivier
Journal:  J Physiol       Date:  2008-04-10       Impact factor: 5.182

10.  Multimodal connectivity of motor learning-related dorsal premotor cortex.

Authors:  Robert M Hardwick; Elise Lesage; Claudia R Eickhoff; Mareike Clos; Peter Fox; Simon B Eickhoff
Journal:  Neuroimage       Date:  2015-08-15       Impact factor: 6.556

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