Retroactive interference model of forgetting

Abstract Memory and forgetting constitute two sides of the same coin, and although the first has been extensively investigated, the latter is often overlooked. A possible approach to better understand forgetting is to develop phenomenological models that implement its putative mechanisms in the most...

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Main Authors: Antonios Georgiou, Mikhail Katkov, Misha Tsodyks
Format: Article
Language:English
Published: SpringerOpen 2021-01-01
Series:Journal of Mathematical Neuroscience
Subjects:
Online Access:https://doi.org/10.1186/s13408-021-00102-6
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spelling doaj-06a7992c3892493c9fd3b5e3651f81982021-01-24T12:41:51ZengSpringerOpenJournal of Mathematical Neuroscience2190-85672021-01-0111111510.1186/s13408-021-00102-6Retroactive interference model of forgettingAntonios Georgiou0Mikhail Katkov1Misha Tsodyks2Department of Neurobiology, Weizmann Institute of ScienceDepartment of Neurobiology, Weizmann Institute of ScienceDepartment of Neurobiology, Weizmann Institute of ScienceAbstract Memory and forgetting constitute two sides of the same coin, and although the first has been extensively investigated, the latter is often overlooked. A possible approach to better understand forgetting is to develop phenomenological models that implement its putative mechanisms in the most elementary way possible, and then experimentally test the theoretical predictions of these models. One such mechanism proposed in previous studies is retrograde interference, stating that a memory can be erased due to subsequently acquired memories. In the current contribution, we hypothesize that retrograde erasure is controlled by the relevant “importance” measures such that more important memories eliminate less important ones acquired earlier. We show that some versions of the resulting mathematical model are broadly compatible with the previously reported power-law forgetting time course and match well the results of our recognition experiments with long, randomly assembled streams of words.https://doi.org/10.1186/s13408-021-00102-6TheoryMemoryRetention curveRecognitionMemory valence
collection DOAJ
language English
format Article
sources DOAJ
author Antonios Georgiou
Mikhail Katkov
Misha Tsodyks
spellingShingle Antonios Georgiou
Mikhail Katkov
Misha Tsodyks
Retroactive interference model of forgetting
Journal of Mathematical Neuroscience
Theory
Memory
Retention curve
Recognition
Memory valence
author_facet Antonios Georgiou
Mikhail Katkov
Misha Tsodyks
author_sort Antonios Georgiou
title Retroactive interference model of forgetting
title_short Retroactive interference model of forgetting
title_full Retroactive interference model of forgetting
title_fullStr Retroactive interference model of forgetting
title_full_unstemmed Retroactive interference model of forgetting
title_sort retroactive interference model of forgetting
publisher SpringerOpen
series Journal of Mathematical Neuroscience
issn 2190-8567
publishDate 2021-01-01
description Abstract Memory and forgetting constitute two sides of the same coin, and although the first has been extensively investigated, the latter is often overlooked. A possible approach to better understand forgetting is to develop phenomenological models that implement its putative mechanisms in the most elementary way possible, and then experimentally test the theoretical predictions of these models. One such mechanism proposed in previous studies is retrograde interference, stating that a memory can be erased due to subsequently acquired memories. In the current contribution, we hypothesize that retrograde erasure is controlled by the relevant “importance” measures such that more important memories eliminate less important ones acquired earlier. We show that some versions of the resulting mathematical model are broadly compatible with the previously reported power-law forgetting time course and match well the results of our recognition experiments with long, randomly assembled streams of words.
topic Theory
Memory
Retention curve
Recognition
Memory valence
url https://doi.org/10.1186/s13408-021-00102-6
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AT mikhailkatkov retroactiveinterferencemodelofforgetting
AT mishatsodyks retroactiveinterferencemodelofforgetting
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