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The Neural Substrates of Memory Suppression: A fMRI Exploration of Directed Forgetting

The directed forgetting paradigm is frequently used to determine the ability to voluntarily suppress information. However, little is known about brain areas associated with information to forget. The present study used functional magnetic resonance imaging to determine brain activity during the enco...

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Autores principales: Bastin, Christine, Feyers, Dorothée, Majerus, Steve, Balteau, Evelyne, Degueldre, Christian, Luxen, André, Maquet, Pierre, Salmon, Eric, Collette, Fabienne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3253105/
https://www.ncbi.nlm.nih.gov/pubmed/22238671
http://dx.doi.org/10.1371/journal.pone.0029905
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author Bastin, Christine
Feyers, Dorothée
Majerus, Steve
Balteau, Evelyne
Degueldre, Christian
Luxen, André
Maquet, Pierre
Salmon, Eric
Collette, Fabienne
author_facet Bastin, Christine
Feyers, Dorothée
Majerus, Steve
Balteau, Evelyne
Degueldre, Christian
Luxen, André
Maquet, Pierre
Salmon, Eric
Collette, Fabienne
author_sort Bastin, Christine
collection PubMed
description The directed forgetting paradigm is frequently used to determine the ability to voluntarily suppress information. However, little is known about brain areas associated with information to forget. The present study used functional magnetic resonance imaging to determine brain activity during the encoding and retrieval phases of an item-method directed forgetting recognition task with neutral verbal material in order to apprehend all processing stages that information to forget and to remember undergoes. We hypothesized that regions supporting few selective processes, namely recollection and familiarity memory processes, working memory, inhibitory and selection processes should be differentially activated during the processing of to-be-remembered and to-be-forgotten items. Successful encoding and retrieval of items to remember engaged the entorhinal cortex, the hippocampus, the anterior medial prefrontal cortex, the left inferior parietal cortex, the posterior cingulate cortex and the precuneus; this set of regions is well known to support deep and associative encoding and retrieval processes in episodic memory. For items to forget, encoding was associated with higher activation in the right middle frontal and posterior parietal cortex, regions known to intervene in attentional control. Items to forget but nevertheless correctly recognized at retrieval yielded activation in the dorsomedial thalamus, associated with familiarity-based memory processes and in the posterior intraparietal sulcus and the anterior cingulate cortex, involved in attentional processes.
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spelling pubmed-32531052012-01-11 The Neural Substrates of Memory Suppression: A fMRI Exploration of Directed Forgetting Bastin, Christine Feyers, Dorothée Majerus, Steve Balteau, Evelyne Degueldre, Christian Luxen, André Maquet, Pierre Salmon, Eric Collette, Fabienne PLoS One Research Article The directed forgetting paradigm is frequently used to determine the ability to voluntarily suppress information. However, little is known about brain areas associated with information to forget. The present study used functional magnetic resonance imaging to determine brain activity during the encoding and retrieval phases of an item-method directed forgetting recognition task with neutral verbal material in order to apprehend all processing stages that information to forget and to remember undergoes. We hypothesized that regions supporting few selective processes, namely recollection and familiarity memory processes, working memory, inhibitory and selection processes should be differentially activated during the processing of to-be-remembered and to-be-forgotten items. Successful encoding and retrieval of items to remember engaged the entorhinal cortex, the hippocampus, the anterior medial prefrontal cortex, the left inferior parietal cortex, the posterior cingulate cortex and the precuneus; this set of regions is well known to support deep and associative encoding and retrieval processes in episodic memory. For items to forget, encoding was associated with higher activation in the right middle frontal and posterior parietal cortex, regions known to intervene in attentional control. Items to forget but nevertheless correctly recognized at retrieval yielded activation in the dorsomedial thalamus, associated with familiarity-based memory processes and in the posterior intraparietal sulcus and the anterior cingulate cortex, involved in attentional processes. Public Library of Science 2012-01-06 /pmc/articles/PMC3253105/ /pubmed/22238671 http://dx.doi.org/10.1371/journal.pone.0029905 Text en Bastin et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Bastin, Christine
Feyers, Dorothée
Majerus, Steve
Balteau, Evelyne
Degueldre, Christian
Luxen, André
Maquet, Pierre
Salmon, Eric
Collette, Fabienne
The Neural Substrates of Memory Suppression: A fMRI Exploration of Directed Forgetting
title The Neural Substrates of Memory Suppression: A fMRI Exploration of Directed Forgetting
title_full The Neural Substrates of Memory Suppression: A fMRI Exploration of Directed Forgetting
title_fullStr The Neural Substrates of Memory Suppression: A fMRI Exploration of Directed Forgetting
title_full_unstemmed The Neural Substrates of Memory Suppression: A fMRI Exploration of Directed Forgetting
title_short The Neural Substrates of Memory Suppression: A fMRI Exploration of Directed Forgetting
title_sort neural substrates of memory suppression: a fmri exploration of directed forgetting
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3253105/
https://www.ncbi.nlm.nih.gov/pubmed/22238671
http://dx.doi.org/10.1371/journal.pone.0029905
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