Heuristics for solving the multiple problem identification of the responses of brain and artificial neural networks in the presence of usual and unusual stimuli by means of Kalman-type filters

 

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Auteurs: Cardo, Romina, Corvalán, Alvaro
Format: artículo original
Statut:Versión publicada
Date de publication:2011
Description:We consider the problem of obtaining information about the recognition of logical inconsistencies with already imprinted patterns of a subnetwork of a neural network, both cerebral and artificially designed, by means of the measurement of the event related potentials (ERP). One of the subsequent aims, it is the detection of logical inconsistencies of the speech, not purely semantic, but of the recognition of not coherent phrases with a story line. The possibility of the use, with this goal, of ERP obtained of superficially located electrodes on the scalp would be interesting: relevant conclusions would be obtained from a non-invasive method and by means of equipment that is relatively economic, easily transportable and installable. The alternative that we propose is the utilization of Kalman type filters (with necessary modifications). The idea is to deal with the evoked response as a not accessible variable, with a relation (non linear, but locally linealizable) respect to the measurable variable. We study, as guide example, the evolution of a variable that measures, in a neural network of type Hopfield attractors, the adjustment between the conditions of a subnetwork associated with the recognition of some patterns, after a quantity prearranged of iterations.
Pays:Portal de Revistas UCR
Institution:Universidad de Costa Rica
Repositorio:Portal de Revistas UCR
Langue:Español
OAI Identifier:oai:portal.ucr.ac.cr:article/2114
Accès en ligne:https://revistas.ucr.ac.cr/index.php/matematica/article/view/2114
Mots-clés:event related potentials
signal processing,
Kalman filters
neural networks
cognitive neuroscience
potenciales evocados cerebrales
procesamiento de señales
filtros de Kalman
redes neuronales
neurociencia cognitiva