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Temporal dynamics of cortical representation for action

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TLDR
The results suggest that the left BA44 is the orchestrator of the human "mirror neuron system" and is strongly involved in action imitation, and probably contributes to the understanding of actions made by others.
Abstract
Brain-imaging studies have shown that the human Broca's region and precentral motor cortex are activated both during execution of hand actions and during observation of similar actions performed by other individuals We aimed to clarify the temporal dynamics of this cortical activation by neuromagnetic recordings during execution, on-line imitation, and observation of right-hand reaching movements that ended with a precision pinch of the tip of a manipulandum During execution, the left inferior frontal cortex [Brodmann's area (BA) 44] was activated first (peak approximately 250 ms before the pinching); this activation was followed within 100-200 ms by activation in the left primary motor area (BA4) and 150-250 ms later in the right BA4 During imitation and observation, the sequence was otherwise similar, but it started from the left occipital cortex (BA19) Activation was always strongest during action imitation Only the occipital activation was detected when the subject observed the experimenter reaching his hand without pinching These results suggest that the left BA44 is the orchestrator of the human "mirror neuron system" and is strongly involved in action imitation The mirror system matches action observation and execution and probably contributes to our understanding of actions made by others

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Citations
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Journal ArticleDOI

The mirror-neuron system.

TL;DR: A neurophysiological mechanism appears to play a fundamental role in both action understanding and imitation, and those properties specific to the human mirror-neuron system that might explain the human capacity to learn by imitation are stressed.
Journal ArticleDOI

Empathy: Its ultimate and proximate bases.

TL;DR: The Perception-Action Model (PAM), together with an understanding of how representations change with experience, can explain the major empirical effects in the literature and can also predict a variety of empathy disorders.
Journal ArticleDOI

The mirror neuron system.

TL;DR: The mirror-neuron mechanism appears to play a fundamental role in both action understanding and imitation as mentioned in this paper, which is at the basis of human culture and ability to learn by imitation.
Journal ArticleDOI

Neurophysiological mechanisms underlying the understanding and imitation of action.

TL;DR: Evidence for the existence of a system, the 'mirror system', that seems to serve this mapping function in primates and humans is discussed, and its implications for the understanding and imitation of action are explored.
References
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Journal ArticleDOI

The assessment and analysis of handedness: The Edinburgh inventory

TL;DR: An inventory of 20 items with a set of instructions and response- and computational-conventions is proposed and the results obtained from a young adult population numbering some 1100 individuals are reported.
Book

Co-planar stereotaxic atlas of the human brain : 3-dimensional proportional system : an approach to cerebral imaging

TL;DR: Direct and Indirect Radiologic Localization Reference System: Basal Brain Line CA-CP Cerebral Structures in Three-Dimensional Space Practical Examples for the Use of the Atlas in Neuroradiologic Examinations Three- Dimensional Atlas of a Human Brain Nomenclature-Abbreviations Anatomic Index Conclusions.
Journal ArticleDOI

Magnetoencephalography—theory, instrumentation, and applications to noninvasive studies of the working human brain

TL;DR: The mathematical theory of the method is explained in detail, followed by a thorough description of MEG instrumentation, data analysis, and practical construction of multi-SQUID devices.
Journal ArticleDOI

Action recognition in the premotor cortex

TL;DR: It is proposed that mirror neurons form a system for matching observation and execution of motor actions, similar to that of mirror neurons exists in humans and could be involved in recognition of actions as well as phonetic gestures.
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