Functional Frontoparietal Connectivity During Short-Term Memory as Revealed by High-Resolution EEG Coherence Analysis.

In this electroencephalographic study, the authors modeled the functional connectivity between frontal and parietal areas during short-term memory (STM) processes by spectral coherence analysis and the directed transfer function, that is, for the estimation of coherence “direction.” A no-STM task wa...

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Detalles Bibliográficos
Publicado en:Behavioral Neuroscience Vol. 118; no. 4; pp. 687 - 698
Autores principales: Babiloni, Claudio, Carducci, Filippo, Vecchio, Fabrizio
Formato: Artículo
Publicado: American Psychological Association August 2004
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Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:In this electroencephalographic study, the authors modeled the functional connectivity between frontal and parietal areas during short-term memory (STM) processes by spectral coherence analysis and the directed transfer function, that is, for the estimation of coherence “direction.” A no-STM task was used as a reference. STM was characterized by an increased frontoparietal electroencephalograph coherence at high frequencies (beta and gamma, 14-45 Hz). In the control task, parietal-to-frontal flow prevailed at those frequencies. However, the STM task showed a bidirectional frontoparietal flow at the gamma band. In conclusion, frontoparietal connectivity would optimize “representational” memory during STM. In this context, the frontal areas would increase their influence on parietal areas for memory retention. Reprinted by permission of the publisher.