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It is hypothesized that linking the observation of movement (visual input) to extant motor representations such that later observed actions can retrieve these stored patterns automatically can explain how the mirror neuron system develops.
The observation of movement can be used as meaningful information of health.
Through static and dynamic feature points matching on the objective target plane and the observation of movement compensation for benchmark instability, the three-component motion detection (lateral displacement, wind deviation of uplifting and torsion angle) of catenary suspension structure was realized, including the contact wire, messenger wire and dropper.
Of note is that in previous studies the scoring of live/dead and worms with and without filaments was accomplished by direct microscopic observation of movement and morphology of the nematodes.
Consistent with the direct matching hypothesis, coherence analysis rendered two ipsilateral fronto-parietal networks, one over the left and one over the right hemisphere, revealing stronger fronto-parietal coherence during the observation of movement sequences than during subsequent pauses.
Interestingly, a reversed pattern of results was found during the third repetition, where imitation accuracy correlated positively with fronto-parietal coherence during the pause, r = 0.54, p = .027, but not during observation of movement sequences.
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On the other hand, observation of movements of others may interfere with our own actions when observed and performed actions are dissimilar [39], [40].
In this work, we ascertained whether: first, the frequency of self-paced finger movements (SPMs), which in normal subjects is around 2 Hz, is modified by prior observation of movements performed at either 1 or 3 Hz; second, such changes are lasting; third, there is an effect of time interval between observation and performance.
Increased excitability during observation of movements performed by racial out-group members may seem counterintuitive.
Inspection of the resulting networks indicated a specific pair of fronto-parietal networks that were maximally coherent during the observation of movements.
The properties of these networks, i.e. their fronto-parietal distribution, their ipsilateral organization and their sensitivity to the observation of movements, match closely with the known properties of the mirror neuron system (MNS) as studied in the macaque brain.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com