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Stuttgen, Maik C.; Yildiz, Ali; Gunturkun, Onur – Journal of the Experimental Analysis of Behavior, 2011
Pigeons responded in a perceptual categorization task with six different stimuli (shades of gray), three of which were to be classified as "light" or "dark", respectively. Reinforcement probability for correct responses was varied from 0.2 to 0.6 across blocks of sessions and was unequal for correct light and dark responses. Introduction of a new…
Descriptors: Infants, Reinforcement, Probability, Animals
Boutros, Nathalie; Elliffe, Douglas; Davison, Michael – Journal of the Experimental Analysis of Behavior, 2011
Reinforcers may increase operant responding via a response-strengthening mechanism whereby the probability of the preceding response increases, or via some discriminative process whereby the response more likely to provide subsequent reinforcement becomes, itself, more likely. We tested these two accounts. Six pigeons responded for food…
Descriptors: Reinforcement, Probability, Animals, Evaluation Methods
Mazur, James E.; Biondi, Dawn R. – Journal of the Experimental Analysis of Behavior, 2009
An adjusting-delay procedure was used to study the choices of pigeons and rats when both delay and amount of reinforcement were varied. In different conditions, the choice alternatives included one versus two reinforcers, one versus three reinforcers, and three versus two reinforcers. The delay to one alternative (the standard alternative) was…
Descriptors: Delay of Gratification, Reinforcement, Psychological Patterns, Animals
Zarcone, Troy J.; Chen, Rong; Fowler, Stephen C. – Journal of the Experimental Analysis of Behavior, 2009
The effect of force requirements on response effort was examined using inbred C57BL/6J mice trained to press a disk with their snout. Lateral peak forces greater than 2 g were defined as responses (i.e., all responses above the measurement threshold). Different, higher force requirements were used to define criterion responses (a subclass of all…
Descriptors: Animals, Reinforcement, Animal Behavior, Evaluation Methods
MacDonall, James S. – Journal of the Experimental Analysis of Behavior, 2009
This experiment compared descriptions of concurrent choice by the stay/switch model, which says choice is a function of the reinforcers obtained for staying at and for switching from each alternative, and the generalized matching law, which says choice is a function of the total reinforcers obtained at each alternative. For the stay/switch model…
Descriptors: Academic Achievement, Comparative Analysis, Models, Animals
Cancado, Carlos R. X.; Lattal, Kennon A. – Journal of the Experimental Analysis of Behavior, 2011
The resurgence of temporal patterns of key pecking by pigeons was investigated in two experiments. In Experiment 1, positively accelerated and linear patterns of responding were established on one key under a discrete-trial multiple fixed-interval variable-interval schedule. Subsequently, only responses on a second key produced reinforcers…
Descriptors: Intervals, Reinforcement, Feedback (Response), Animals
Berg, Mark E.; Grace, Randolph C. – Journal of the Experimental Analysis of Behavior, 2011
Six pigeons responded in a visual category learning task in which the stimuli were dimensionally separable Gabor patches that varied in frequency and orientation. We compared performance in two conditions which varied in terms of whether accurate performance required that responding be controlled jointly by frequency and orientation, or…
Descriptors: Stimuli, Classification, Reinforcement, Animals
Podlesnik, Christopher A.; Jimenez-Gomez, Corina; Thrailkill, Eric A.; Shahan, Timothy A. – Journal of the Experimental Analysis of Behavior, 2011
According to behavioral momentum theory, preference and relative resistance to change in concurrent chains schedules are correlated and reflect the relative conditioned value of discriminative stimuli. In the present study, we explore the generality of this relation by manipulating the temporal context within a concurrent-chains procedure through…
Descriptors: Resistance to Change, Reinforcement, Theories, Behavior
Vasconcelos, Marco; Urcuioli, Peter J. – Journal of the Experimental Analysis of Behavior, 2009
Zentall and Singer (2007a) hypothesized that our failure to replicate the work-ethic effect in pigeons (Vasconcelos, Urcuioli, & Lionello-DeNolf, 2007) was due to insufficient overtraining following acquisition of the high- and low-effort discriminations. We tested this hypothesis using the original work-ethic procedure (Experiment 1) and one…
Descriptors: Ethics, Enrollment, Evaluation Methods, Animals
Pizzo, Matthew J.; Kirkpatrick, Kimberly; Blundell, Pamela J. – Journal of the Experimental Analysis of Behavior, 2009
The differential reinforcement of low rate (DRL) schedule is commonly used to assess impulsivity, hyperactivity, and the cognitive effects of pharmacological treatments on performance. A DRL schedule requires subjects to wait a certain minimum amount of time between successive responses to receive reinforcement. The DRL criterion value, which…
Descriptors: Reaction Time, Hyperactivity, Learning, Reinforcement
White, K. Geoffrey; Brown, Glenn S. – Journal of the Experimental Analysis of Behavior, 2011
Forgetting functions were generated for pigeons in a delayed matching-to-sample task, in which accuracy decreased with increasing retention-interval duration. In baseline training with dark retention intervals, accuracy was high overall. Illumination of the experimental chamber by a houselight during the retention interval impaired performance…
Descriptors: Intervals, Retention (Psychology), Animals, Task Analysis
Madden, Gregory J.; Smethells, John R.; Ewan, Eric E.; Hursh, Steven R. – Journal of the Experimental Analysis of Behavior, 2007
This experiment was conducted to test the predictions of two behavioral-economic approaches to quantifying relative reinforcer efficacy. The normalized demand analysis suggests that characteristics of averaged normalized demand curves may be used to predict progressive-ratio breakpoints and peak responding. By contrast, the demand analysis holds…
Descriptors: Positive Reinforcement, Correlation, Prediction, Evaluation Methods