Oren Shriki

Senior Academic

Integrating the automatic and the controlled

Strategies in semantic priming in an attractor network with latching dynamics

Itamar Lerner, Shlomo Bentin, Oren Shriki

Semantic priming has long been recognized to reflect, along with automatic semantic mechanisms, the contribution of controlled strategies. However, previous theories of controlled priming were mostly qualitative, lacking common grounds with modern mathematical models of automatic priming based on neural networks. Recently, we introduced a novel attractor network model of automatic semantic priming with latching dynamics. Here, we extend this work to show how the same model can also account for important findings regarding controlled processes. Assuming the rate of semantic transitions in the network can be adapted using simple reinforcement learning, we show how basic findings attributed to controlled processes in priming can be achieved, including their dependency on stimulus onset asynchrony and relatedness proportion and their unique effect on associative, category-exemplar, mediated and backward prime-target relations. We discuss how our mechanism relates to the classic expectancy theory and how it can be further extended in future developments of the model.

Publication language English
Pages 1562-1603
Journal Cognitive Science
Volume 38
Issue number 8
Publication status Published - 01.11.2014

Keywords

Controlled processes
Distributed representations
Expectancy
Latching dynamics
Neural networks
Semantic matching
Semantic priming
Word recognition

ASJC Scopus subject areas

Experimental and Cognitive Psychology
Cognitive Neuroscience
Artificial Intelligence
Access to Document
10.1111/cogs.12133
Other files and links
Link to publication in Scopus