Literature DB >> 17470782

Actor's and observer's primary motor cortices stabilize similarly after seen or heard motor actions.

Gina Caetano1, Veikko Jousmäki, Riitta Hari.   

Abstract

We quantified rhythmic brain activity, recorded with whole-scalp magnetoencephalography (MEG), of 13 healthy subjects who were performing, seeing, or hearing the tapping of a drum membrane with the right index finger. In the actor's primary motor (M1) cortex, the level of the approximately 20-Hz brain rhythms started to decrease, as a sign of M1 activation, approximately 2 s before the action and then increased, with a clear rebound approximately 0.6 s after the tapping, as a sign of M1 stabilization. A very similar time course occurred in the M1 cortex of the observer: the activation, although less vigorous than in the actor, started approximately 0.8 s before the action and was followed by a rebound. When the subject just heard the tapping sound, no preaction activation was visible, but a rebound followed the sound. The approximately 10-Hz somatosensory rhythm, which also started to decrease before own and viewed actions, returned to the baseline level approximately 0.6 s later after own actions than observed actions. This delay likely reflects proprioceptive input to the cortex, available only during own actions, and therefore could be related to the brain signature of the sense of agency. The strikingly similar motor cortex reactivity during the first and third person actions expands previous data on brain mechanisms of intersubjective understanding. Besides motor cortex activation before own and observed (predicted) actions, the M1 cortex of both the viewer and the listener stabilized in a very similar manner after brisk motor actions.

Entities:  

Mesh:

Year:  2007        PMID: 17470782      PMCID: PMC1859994          DOI: 10.1073/pnas.0702453104

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  29 in total

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7.  Hearing sounds, understanding actions: action representation in mirror neurons.

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  69 in total

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3.  Mapping the information flow from one brain to another during gestural communication.

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4.  Modulation of the response to a somatosensory stimulation of the hand during the observation of manual actions.

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7.  Distinct EEG amplitude suppression to facial gestures as evidence for a mirror mechanism in newborn monkeys.

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8.  Dynamic Modulation of Beta Band Cortico-Muscular Coupling Induced by Audio-Visual Rhythms.

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Review 10.  Neural interface technology for rehabilitation: exploiting and promoting neuroplasticity.

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