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This view has furthermore been strengthened by studies that found stronger mu desynchronization to the observation of actions that were already established in the observer's motor repertoire (e.g. dancing moves by professional dancers [9], or infants' ability to crawl or walk [10]) as compared to actions that were not mastered yet.
A research conducted by Buccino et al. [ 12] revealed that the mirror neuron system is especially active during the observation of actions which are part of the motor repertoire of the observer.
Mukamel, R., Ekstrom, A. D., Kaplan, J., Iacoboni, M. & Fried, I. Single-neuresponsesnses in humans during execution and observation of actions.
Recent electrophysiological studies have shown that the human electroencephalographic mu rhythm is suppressed during the observation of actions performed by other persons, an effect that may be functionally related to the behaviour of so-called "mirror neurons" observed in area F5 of nonhuman primates.
These areas are known to become active during the observation of actions done by others (see [26]).
Mirror neurons in both left and right F5 of the macaque monkey respond to the observation of actions performed by both the right and the left hands [2].
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That is, if motor actions already exist as part of the observer agent's movement repertoire then observation of action, even when partially triggered, can be sufficient to evoke the representation.
Our experiment demonstrates that the human MNS exhibits a gender difference during the observation of action.
Alpha desynchronization, instead, was stronger during the observation of action sequences, reflecting involvement in perceptual processing of action sequences.
This hypothesis receives support from the discovery of two ipsilateral parieto-frontal networks overlying the two respective hemispheres that were found activated during observation of action sequences for imitation.
The potential of CPC derived cardiomyocytes to form functional gap junctions was determined by utilizing a previously described in vitro NRVM co-culture assay [17], [18] which allows the observation of action potential propagation by the means of optical mapping over a macroscopic (3 culturelture area [18].
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