Mechanistic role of alpha oscillations in a computational model of working memory.

Brain oscillations are believed to be involved in the different operations necessary to manipulate information during working memory tasks. We propose a mechanistic role for the observed inhibition effect of the alpha rhythm based on its interference with the theta rhythm. Using the Lisman-Idiart mo...

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Main Authors: Gustavo Soroka, Marco Idiart, Aline Villavicencio
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2024-01-01
Series:PLoS ONE
Online Access:https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0296217&type=printable
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author Gustavo Soroka
Marco Idiart
Aline Villavicencio
author_facet Gustavo Soroka
Marco Idiart
Aline Villavicencio
author_sort Gustavo Soroka
collection DOAJ
description Brain oscillations are believed to be involved in the different operations necessary to manipulate information during working memory tasks. We propose a mechanistic role for the observed inhibition effect of the alpha rhythm based on its interference with the theta rhythm. Using the Lisman-Idiart model for multi-item working memory, we show that the interaction between these two oscillations is capable of creating a long lasting destructive interference that prevents the cyclic reactivation of neuronal ensembles and, as a consequence, memory maintenance. Additionally, to ensure robustness we propose a modular version of the model and implement oscillations as traveling waves. Using this model, we show that the interactions between theta and gamma determine the allocation of multiple memories in distinct modules, while the interference between theta and alpha disrupts the maintenance of the information already stored in them. The effect of alpha in erasing or blocking storage is robust and seems fairly independent of frequency, as long as it stays within the alpha range. This model helps us to understand why the alpha and theta oscillations, which have close frequency bands, could have opposite roles in working memory.
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spelling doaj.art-c30fcd40024243118c970fe9ae9887562024-02-17T05:33:08ZengPublic Library of Science (PLoS)PLoS ONE1932-62032024-01-01192e029621710.1371/journal.pone.0296217Mechanistic role of alpha oscillations in a computational model of working memory.Gustavo SorokaMarco IdiartAline VillavicencioBrain oscillations are believed to be involved in the different operations necessary to manipulate information during working memory tasks. We propose a mechanistic role for the observed inhibition effect of the alpha rhythm based on its interference with the theta rhythm. Using the Lisman-Idiart model for multi-item working memory, we show that the interaction between these two oscillations is capable of creating a long lasting destructive interference that prevents the cyclic reactivation of neuronal ensembles and, as a consequence, memory maintenance. Additionally, to ensure robustness we propose a modular version of the model and implement oscillations as traveling waves. Using this model, we show that the interactions between theta and gamma determine the allocation of multiple memories in distinct modules, while the interference between theta and alpha disrupts the maintenance of the information already stored in them. The effect of alpha in erasing or blocking storage is robust and seems fairly independent of frequency, as long as it stays within the alpha range. This model helps us to understand why the alpha and theta oscillations, which have close frequency bands, could have opposite roles in working memory.https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0296217&type=printable
spellingShingle Gustavo Soroka
Marco Idiart
Aline Villavicencio
Mechanistic role of alpha oscillations in a computational model of working memory.
PLoS ONE
title Mechanistic role of alpha oscillations in a computational model of working memory.
title_full Mechanistic role of alpha oscillations in a computational model of working memory.
title_fullStr Mechanistic role of alpha oscillations in a computational model of working memory.
title_full_unstemmed Mechanistic role of alpha oscillations in a computational model of working memory.
title_short Mechanistic role of alpha oscillations in a computational model of working memory.
title_sort mechanistic role of alpha oscillations in a computational model of working memory
url https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0296217&type=printable
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