Searching for Semantic Knowledge: A Vector Space Semantic Analysis of the Feature Generation Task

A recent neuropsychological study found that amnesic patients with hippocampal damage (HP) and severe declarative memory impairment produce markedly fewer responses than healthy comparison (CO) participants in a semantic feature generation task (Klooster and Duff, 2015), consistent with the idea tha...

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Main Authors: Rebecca A. Cutler, Melissa C. Duff, Sean M. Polyn
Format: Article
Language:English
Published: Frontiers Media S.A. 2019-10-01
Series:Frontiers in Human Neuroscience
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fnhum.2019.00341/full
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spelling doaj-f4979a1e28f84399a79f5d161d4f8b012020-11-25T03:52:54ZengFrontiers Media S.A.Frontiers in Human Neuroscience1662-51612019-10-011310.3389/fnhum.2019.00341482421Searching for Semantic Knowledge: A Vector Space Semantic Analysis of the Feature Generation TaskRebecca A. Cutler0Melissa C. Duff1Sean M. Polyn2Department of Psychology, Vanderbilt University, Nashville, TN, United StatesDepartment of Hearing and Speech Sciences, Vanderbilt University Medical Center, Nashville, TN, United StatesDepartment of Psychology, Vanderbilt University, Nashville, TN, United StatesA recent neuropsychological study found that amnesic patients with hippocampal damage (HP) and severe declarative memory impairment produce markedly fewer responses than healthy comparison (CO) participants in a semantic feature generation task (Klooster and Duff, 2015), consistent with the idea that hippocampal damage is associated with semantic cognitive deficits. Participants were presented with a target word and asked to produce as many features of that word as possible (e.g., for target word “book,” “read words on a page”). Here, we use the response sequences collected by Klooster and Duff (2015) to develop a vector space model of semantic search. We use this model to characterize the dynamics of semantic feature generation and consider the role of the hippocampus in this search process. Both HP and CO groups tended to initiate the search process with features close in semantic space to the target word, with a gradual decline in similarity to the target word over the first several responses. Adjacent features in the response sequence showed stronger similarity to each other than to non-adjacent features, suggesting that the search process follows a local trajectory in semantic space. Overall, HP patients generated features that were closer in semantic space to the representation of the target word, as compared to the features generated by the CO group, which ranged more widely in semantic space. These results are consistent with a model in which a compound retrieval cue (containing a representation of the target word and a representation of the previous response) is used to probe semantic memory. The model suggests that the HP group's search process is restricted from ranging as far in semantic space from the target word, relative to the CO group. These results place strong constraints on the structure of models of semantic memory search, and on the role of hippocampus in probing semantic memory.https://www.frontiersin.org/article/10.3389/fnhum.2019.00341/fullhippocampussemantic searchamnesiarelational memoryvector space model
collection DOAJ
language English
format Article
sources DOAJ
author Rebecca A. Cutler
Melissa C. Duff
Sean M. Polyn
spellingShingle Rebecca A. Cutler
Melissa C. Duff
Sean M. Polyn
Searching for Semantic Knowledge: A Vector Space Semantic Analysis of the Feature Generation Task
Frontiers in Human Neuroscience
hippocampus
semantic search
amnesia
relational memory
vector space model
author_facet Rebecca A. Cutler
Melissa C. Duff
Sean M. Polyn
author_sort Rebecca A. Cutler
title Searching for Semantic Knowledge: A Vector Space Semantic Analysis of the Feature Generation Task
title_short Searching for Semantic Knowledge: A Vector Space Semantic Analysis of the Feature Generation Task
title_full Searching for Semantic Knowledge: A Vector Space Semantic Analysis of the Feature Generation Task
title_fullStr Searching for Semantic Knowledge: A Vector Space Semantic Analysis of the Feature Generation Task
title_full_unstemmed Searching for Semantic Knowledge: A Vector Space Semantic Analysis of the Feature Generation Task
title_sort searching for semantic knowledge: a vector space semantic analysis of the feature generation task
publisher Frontiers Media S.A.
series Frontiers in Human Neuroscience
issn 1662-5161
publishDate 2019-10-01
description A recent neuropsychological study found that amnesic patients with hippocampal damage (HP) and severe declarative memory impairment produce markedly fewer responses than healthy comparison (CO) participants in a semantic feature generation task (Klooster and Duff, 2015), consistent with the idea that hippocampal damage is associated with semantic cognitive deficits. Participants were presented with a target word and asked to produce as many features of that word as possible (e.g., for target word “book,” “read words on a page”). Here, we use the response sequences collected by Klooster and Duff (2015) to develop a vector space model of semantic search. We use this model to characterize the dynamics of semantic feature generation and consider the role of the hippocampus in this search process. Both HP and CO groups tended to initiate the search process with features close in semantic space to the target word, with a gradual decline in similarity to the target word over the first several responses. Adjacent features in the response sequence showed stronger similarity to each other than to non-adjacent features, suggesting that the search process follows a local trajectory in semantic space. Overall, HP patients generated features that were closer in semantic space to the representation of the target word, as compared to the features generated by the CO group, which ranged more widely in semantic space. These results are consistent with a model in which a compound retrieval cue (containing a representation of the target word and a representation of the previous response) is used to probe semantic memory. The model suggests that the HP group's search process is restricted from ranging as far in semantic space from the target word, relative to the CO group. These results place strong constraints on the structure of models of semantic memory search, and on the role of hippocampus in probing semantic memory.
topic hippocampus
semantic search
amnesia
relational memory
vector space model
url https://www.frontiersin.org/article/10.3389/fnhum.2019.00341/full
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