Theta rhythm supports hippocampus-dependent integrative encoding in schematic/semantic memory networks
Integrating new information into existing schematic/semantic structures of knowledge is the basis of learning in our everyday life as it enables structured representation of information and goal-directed behaviour in an ever-changing environment. However, how schematic/semantic mnemonic structures a...
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doaj-b09dd9c1f06d4e20b4cf59883414c6452020-12-01T04:04:58ZengElsevierNeuroImage1095-95722021-02-01226117558Theta rhythm supports hippocampus-dependent integrative encoding in schematic/semantic memory networksBerta Nicolás0Jacint Sala-Padró1David Cucurell2Mila Santurino3Mercè Falip4Lluís Fuentemilla5Cognition and Brain Plasticity Group, Bellvitge Institute for Biomedical Research, Hospitalet de Llobregat 08907, Spain; Department of Cognition, Development and Educational Psychology, University of Barcelona, Barcelona 08035, Spain; Institute of Neurosciences, University of Barcelona, Barcelona 08035, SpainEpilepsy Unit, University Hospital of Bellvitge, 08907 L'Hospitalet de Llobregat, SpainCognition and Brain Plasticity Group, Bellvitge Institute for Biomedical Research, Hospitalet de Llobregat 08907, Spain; Department of Cognition, Development and Educational Psychology, University of Barcelona, Barcelona 08035, SpainEpilepsy Unit, University Hospital of Bellvitge, 08907 L'Hospitalet de Llobregat, SpainEpilepsy Unit, University Hospital of Bellvitge, 08907 L'Hospitalet de Llobregat, SpainCognition and Brain Plasticity Group, Bellvitge Institute for Biomedical Research, Hospitalet de Llobregat 08907, Spain; Department of Cognition, Development and Educational Psychology, University of Barcelona, Barcelona 08035, Spain; Institute of Neurosciences, University of Barcelona, Barcelona 08035, Spain; Corresponding author.Integrating new information into existing schematic/semantic structures of knowledge is the basis of learning in our everyday life as it enables structured representation of information and goal-directed behaviour in an ever-changing environment. However, how schematic/semantic mnemonic structures aid the integration of novel elements remains poorly understood. Here, we showed that the ability to integrate novel picture information into learned structures of picture associations that overlapped by the same picture scene (i.e., simple network) or by a conceptually related picture scene (i.e., schematic/semantic network) is hippocampus-dependent, as patients with lesions at the medial temporal lobe (including the hippocampus) were impaired in inferring novel relations between pictures within these memory networks. We also found more persistent and widespread scalp EEG theta oscillations (3–5 Hz) while participants integrated novel pictures into schematic/semantic memory networks than into simple networks. On the other hand, greater neural similarity was observed between EEG patterns elicited by novel and related events within simple networks than between novel and related events within schematic/semantic memory networks. These findings have important implications for our understanding of the neural mechanisms that support the development and organization of structures of knowledge.http://www.sciencedirect.com/science/article/pii/S1053811920310430Theta rhythmHippocampusIntegrative encodingEpisodic memoryInferential learning |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Berta Nicolás Jacint Sala-Padró David Cucurell Mila Santurino Mercè Falip Lluís Fuentemilla |
spellingShingle |
Berta Nicolás Jacint Sala-Padró David Cucurell Mila Santurino Mercè Falip Lluís Fuentemilla Theta rhythm supports hippocampus-dependent integrative encoding in schematic/semantic memory networks NeuroImage Theta rhythm Hippocampus Integrative encoding Episodic memory Inferential learning |
author_facet |
Berta Nicolás Jacint Sala-Padró David Cucurell Mila Santurino Mercè Falip Lluís Fuentemilla |
author_sort |
Berta Nicolás |
title |
Theta rhythm supports hippocampus-dependent integrative encoding in schematic/semantic memory networks |
title_short |
Theta rhythm supports hippocampus-dependent integrative encoding in schematic/semantic memory networks |
title_full |
Theta rhythm supports hippocampus-dependent integrative encoding in schematic/semantic memory networks |
title_fullStr |
Theta rhythm supports hippocampus-dependent integrative encoding in schematic/semantic memory networks |
title_full_unstemmed |
Theta rhythm supports hippocampus-dependent integrative encoding in schematic/semantic memory networks |
title_sort |
theta rhythm supports hippocampus-dependent integrative encoding in schematic/semantic memory networks |
publisher |
Elsevier |
series |
NeuroImage |
issn |
1095-9572 |
publishDate |
2021-02-01 |
description |
Integrating new information into existing schematic/semantic structures of knowledge is the basis of learning in our everyday life as it enables structured representation of information and goal-directed behaviour in an ever-changing environment. However, how schematic/semantic mnemonic structures aid the integration of novel elements remains poorly understood. Here, we showed that the ability to integrate novel picture information into learned structures of picture associations that overlapped by the same picture scene (i.e., simple network) or by a conceptually related picture scene (i.e., schematic/semantic network) is hippocampus-dependent, as patients with lesions at the medial temporal lobe (including the hippocampus) were impaired in inferring novel relations between pictures within these memory networks. We also found more persistent and widespread scalp EEG theta oscillations (3–5 Hz) while participants integrated novel pictures into schematic/semantic memory networks than into simple networks. On the other hand, greater neural similarity was observed between EEG patterns elicited by novel and related events within simple networks than between novel and related events within schematic/semantic memory networks. These findings have important implications for our understanding of the neural mechanisms that support the development and organization of structures of knowledge. |
topic |
Theta rhythm Hippocampus Integrative encoding Episodic memory Inferential learning |
url |
http://www.sciencedirect.com/science/article/pii/S1053811920310430 |
work_keys_str_mv |
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