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Journal Article

Citation

Aminoff EM, Baror S, Roginek EW, Leeds DD. Sci. Rep. 2022; 12(1): e5570.

Copyright

(Copyright © 2022, Nature Publishing Group)

DOI

10.1038/s41598-022-09451-y

PMID

35368046

Abstract

Contextual associations facilitate object recognition in human vision. However, the role of context in artificial vision remains elusive as does the characteristics that humans use to define context. We investigated whether contextually related objects (bicycle-helmet) are represented more similarly in convolutional neural networks (CNNs) used for image understanding than unrelated objects (bicycle-fork). Stimuli were of objects against a white background and consisted of a diverse set of contexts (Nā€‰=ā€‰73). CNN representations of contextually related objects were more similar to one another than to unrelated objects across all CNN layers. Critically, the similarity found in CNNs correlated with human behavior across multiple experiments assessing contextual relatedness, emerging significant only in the later layers. The results demonstrate that context is inherently represented in CNNs as a result of object recognition training, and that the representation in the later layers of the network tap into the contextual regularities that predict human behavior.


Language: en

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