Cortical basis of communication : Local computation, coordination, attention
Identifieur interne : 003B85 ( Main/Exploration ); précédent : 003B84; suivant : 003B86Cortical basis of communication : Local computation, coordination, attention
Auteurs : Frederic Alexandre [France]Source :
- Neural networks [ 0893-6080 ] ; 2009.
Descripteurs français
- KwdFr :
- Algorithmes, Attention (physiologie), Cognition (physiologie), Communication, Cortex cérébral (physiologie), Humains, Modèles neurologiques, Mouvements oculaires, Neurones (physiologie), Perception visuelle (physiologie), Réseaux neuronaux (ordinateur), Rétroaction, Thalamus (physiologie), Voies nerveuses (physiologie).
- MESH :
- physiologie : Attention, Cognition, Cortex cérébral, Neurones, Perception visuelle, Thalamus, Voies nerveuses.
- Pascal (Inist)
- Algorithmes, Communication, Coordination, Attention visuelle, Homme, Humains, Implémentation, Modèles neurologiques, Modélisation, Flux information, Mouvements oculaires, Réseaux neuronaux (ordinateur), Rétroaction, Traitement flux donnée, Théorie, Animation par ordinateur, Incarnation, Cognition, Vision, Mémoire, Cortex cérébral, Neurosciences.
- Wicri :
- topic : Homme.
English descriptors
- KwdEn :
- Algorithms, Attention (physiology), Cerebral Cortex (physiology), Cerebral cortex, Cognition, Cognition (physiology), Communication, Computer animation, Coordination, Data flow processing, Embodiment, Eye Movements, Feedback, Human, Humans, Implementation, Information flow, Memory, Modeling, Models, Neurological, Neural Networks (Computer), Neural Pathways (physiology), Neurons (physiology), Thalamus (physiology), Theory, Vision, Visual Perception (physiology), Visual attention.
- MESH :
- mix :
Abstract
Human communication emerges from cortical processing, known to be implemented on a regular repetitive neuronal substratum. The supposed genericity of cortical processing has elicited a series of modeling works in computational neuroscience that underline the information flows driven by the cortical circuitry. In the minimalist framework underlying the current theories for the embodiment of cognition, such a generic cortical processing is exploited for the coordination of poles of representation, as is reported in this paper for the case of visual attention. Interestingly, this case emphasizes how abstract internal referents are built to conform to memory requirements. This paper proposes that these referents are the basis for communication in humans, which is firstly a coordination and an attentional procedure with regard to their congeners.
Url:
Affiliations:
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Le document en format XML
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<term>Attention (physiology)</term>
<term>Cerebral Cortex (physiology)</term>
<term>Cerebral cortex</term>
<term>Cognition</term>
<term>Cognition (physiology)</term>
<term>Communication</term>
<term>Computer animation</term>
<term>Coordination</term>
<term>Data flow processing</term>
<term>Embodiment</term>
<term>Eye Movements</term>
<term>Feedback</term>
<term>Human</term>
<term>Humans</term>
<term>Implementation</term>
<term>Information flow</term>
<term>Memory</term>
<term>Modeling</term>
<term>Models, Neurological</term>
<term>Neural Networks (Computer)</term>
<term>Neural Pathways (physiology)</term>
<term>Neurons (physiology)</term>
<term>Thalamus (physiology)</term>
<term>Theory</term>
<term>Vision</term>
<term>Visual Perception (physiology)</term>
<term>Visual attention</term>
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<term>Attention (physiologie)</term>
<term>Cognition (physiologie)</term>
<term>Communication</term>
<term>Cortex cérébral (physiologie)</term>
<term>Humains</term>
<term>Modèles neurologiques</term>
<term>Mouvements oculaires</term>
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<term>Cortex cérébral</term>
<term>Neurones</term>
<term>Perception visuelle</term>
<term>Thalamus</term>
<term>Voies nerveuses</term>
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<term>Cognition</term>
<term>Neural Pathways</term>
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<term>Thalamus</term>
<term>Visual Perception</term>
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<term>Communication</term>
<term>Eye Movements</term>
<term>Feedback</term>
<term>Humans</term>
<term>Models, Neurological</term>
<term>Neural Networks (Computer)</term>
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<term>Coordination</term>
<term>Attention visuelle</term>
<term>Homme</term>
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<term>Implémentation</term>
<term>Modèles neurologiques</term>
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<term>Flux information</term>
<term>Mouvements oculaires</term>
<term>Réseaux neuronaux (ordinateur)</term>
<term>Rétroaction</term>
<term>Traitement flux donnée</term>
<term>Théorie</term>
<term>Animation par ordinateur</term>
<term>Incarnation</term>
<term>Cognition</term>
<term>Vision</term>
<term>Mémoire</term>
<term>Cortex cérébral</term>
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<keywords scheme="mix" xml:lang="en"><term>Communication</term>
<term>Computational neurosciences</term>
<term>Coordination</term>
<term>Model of the cortex</term>
<term>Visual attention</term>
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<front><div type="abstract" xml:lang="en">Human communication emerges from cortical processing, known to be implemented on a regular repetitive neuronal substratum. The supposed genericity of cortical processing has elicited a series of modeling works in computational neuroscience that underline the information flows driven by the cortical circuitry. In the minimalist framework underlying the current theories for the embodiment of cognition, such a generic cortical processing is exploited for the coordination of poles of representation, as is reported in this paper for the case of visual attention. Interestingly, this case emphasizes how abstract internal referents are built to conform to memory requirements. This paper proposes that these referents are the basis for communication in humans, which is firstly a coordination and an attentional procedure with regard to their congeners.</div>
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