Perceptual learning of bisection stimuli under roving: Slow and largely specific
Author(s) -
Khatuna Parkosadze,
T. Otto,
Maka Malania,
A. R. Kezeli,
Michael H. Herzog
Publication year - 2008
Publication title -
journal of vision
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.126
H-Index - 113
ISSN - 1534-7362
DOI - 10.1167/8.1.5
Subject(s) - bisection , stimulus (psychology) , perception , perceptual learning , cognitive psychology , psychology , artificial intelligence , computer science , speech recognition , communication , mathematics , neuroscience , geometry
In perceptual learning, performance often improves within a short time if only one stimulus variant is presented, such as a line bisection stimulus with one outer-line-distance. However, performance stagnates if two bisection stimuli with two outer-line-distances are presented randomly interleaved. Recently, S. G. Kuai, J. Y. Zhang, S. A. Klein, D. M. Levi, and C. Yu, (2005) proposed that learning under roving conditions is impossible in general. Contrary to this proposition, we show here that perceptual learning with bisection stimuli under roving is possible with extensive training of 18000 trials. Despite this extensive training, the improvement of performance is still largely specific. Furthermore, this improvement of performance cannot be explained by an accommodation to stimulus uncertainty caused by roving.
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