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Understanding motor events-a neurophysiological study

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It is reported here that many neurons of the rostral part of inferior premotor cortex of the monkey discharge during goal-directed hand movements such as grasping, holding, and tearing, which indicates that premotor neurons can retrieve movements not only on the basis of stimulus characteristics, but also on the based of the meaning of the observed actions.
Abstract
Neurons of the rostral part of inferior premotor cortex of the monkey discharge during goal-directed hand movements such as grasping, holding, and tearing. We report here that many of these neurons become active also when the monkey observes specific, meaningful hand movements performed by the experimenters. The effective experimenters' movements include among others placing or retrieving a piece of food from a table, grasping food from another experimenter's hand, and manipulating objects. There is always a clear link between the effective observed movement and that executed by the monkey and, often, only movements of the experimenter identical to those controlled by a given neuron are able to activate it. These findings indicate that premotor neurons can retrieve movements not only on the basis of stimulus characteristics, as previously described, but also on the basis of the meaning of the observed actions.

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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.
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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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Premotor cortex and the recognition of motor actions.

TL;DR: It is suggested that the development of the lateral verbal communication system in man derives from a more ancient communication system based on recognition of hand and face gestures.

Research report Premotor cortex and the recognition of motor actions

TL;DR: In the monkey premotor cortex there are neurons that discharge both when the monkey performs an action and when he observes a similar action made by another monkey or by the experimenter as mentioned in this paper.
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Six views of embodied cognition.

TL;DR: The sixth claim has received the least attention in the literature on embodied cognition, but it may in fact be the best documented and most powerful of the six claims.
References
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The motor theory of speech perception revised

TL;DR: A motor theory of speech perception, initially proposed to account for results of early experiments with synthetic speech, is now extensively revised to accommodate recent findings, and to relate the assumptions of the theory to those that might be made about other perceptual modes.
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Frontal lobe inputs to primate motor cortex: evidence for four somatotopically organized ‘premotor’ areas

TL;DR: The present experiments sought to define more clearly the origin of frontal lobe inputs to the face, arm and leg areas of the primate motor cortex (area 4) and the distribution of labeled neurons in arhesus monkey with multiple injections of HRP in the arm area of the motor cortex.
Journal ArticleDOI

Frameworks of analysis for the neural representation of animate objects and actions.

TL;DR: This work has investigated the sensitivity of cells in the temporal cortex to different viewing conditions to determine the frame(s) of reference utilized in processing and found goal-centred sensitivity to interaction allowed the cells to be selectively activated in situations where human subjects would attribute causal and intentional relationships.
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There is always a clear link between the effective observed movement and that executed by the monkey and, often, only movements of the experimenter identical to those controlled by a given neuron are able to activate it.