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An Attractor Model of Lexical Conceptual Processing: Simulating Semantic Priming
Author(s) -
Cree George S.,
McRae Ken,
McNorgan Chris
Publication year - 1999
Publication title -
cognitive science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.498
H-Index - 114
eISSN - 1551-6709
pISSN - 0364-0213
DOI - 10.1207/s15516709cog2303_4
Subject(s) - semantic similarity , priming (agriculture) , natural language processing , computer science , stimulus onset asynchrony , semantic network , similarity (geometry) , set (abstract data type) , attractor , semantic memory , artificial intelligence , psychology , mathematics , cognition , mathematical analysis , botany , germination , image (mathematics) , programming language , neuroscience , biology
An attractor network was trained to compute from word form to semantic representations that were based on subject‐generated features. The model was driven largely by higher‐order semantic structure. The network simulated two recent experiments that employed items included in its training set (McRae and Boisvert, 1998). In Simulation 1, short stimulus onset asynchrony priming was demonstrated for semantically similar items. Simulation 2 reproduced subtle effects obtained by varying degree of similarity. Two predictions from the model were then tested on human subjects. In Simulation 3 and Experiment 1, the items from Simulation 1 were reversed, and both the network and subjects showed minimally different priming effects in the two directions. In Experiment 2, consistent with attractor networks but contrary to a key aspect of hierarchical spreading activation accounts priming was determined by featural similarity rather than shared superordinate category. It is concluded that semantic‐similarity priming is due to featural overlap that is a natural consequence of distributed representations of word meaning.
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