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A comparison of latent inhibition and learned irrelevance pre-exposure effects in rabbit and human eyeblink conditioning
Authors:M. Todd Allen Ph.D.  Lori Chelius  Vivek Masand  Mark A. Gluck  Catherine E. Myers  Geoffrey Schnirman
Affiliation:(1) Center for Molecular and Behavioral Neuroscience, Rutgers University, Newark, NJ;(2) Department of Psychology, Rutgers University, Newark, NJ;(3) Department of Psychology, Fordham University, New York, NY;(4) Dept. of Psychology, College of Charleston, 29424 Charleston, SC
Abstract:The learning of an association between a CS and a US can be retarded by unreinforced presentations of the CS alone (termed latent inhibition or LI) or by un-correlated presentations of the CS and US (termed learned irrelevance or LIRR). In rabbit eyeblink conditioning, there have been some recent failures to replicate LI. LIRR has been hypothesized as producing a stronger retardation effect than LI based on both empirical studies and computational models. In the work presented here, we examined the relative strength of LI and LIRR in eyeblink conditioning in rabbits and humans. In both species, a number of pre-exposure trials sufficient to produce LIRR failed to produce LI (Experiments 1 & 3). Doubling the number of CS pre-exposures did produce LI in rabbits (Experiment 2), but not in humans (Experiment 4). LI was demonstrated in humans only after manipulations including an increased inter-trial interval or ITI (Experiment 5). Overall, it appears that LIRR is a more easily producible pre-exposure retardation effect than LI for eyeblink conditioning in both rabbits and humans. Several theoretical mechanisms for LI including the conditioned attention theory, stimulus compression, novelty, and the switching theory are discussed as possible explanations for the differences between LIRR and LI. Overall, future work involving testing the neural substrates of pre-exposure effects may benefit from the use of LIRR rather than LI.
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