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Showing 16 to 30 of 82 results Save | Export
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Barba, Lourenco de Souza – Behavior Analyst, 2012
Some researchers claim that variability is an operant dimension of behavior. The present paper reviews the concept of operant behavior and emphasizes that differentiation is the behavioral process that demonstrates an operant relation. Differentiation is conceived as change in the overlap between two probability distributions: the distribution of…
Descriptors: Probability, Reinforcement, Operant Conditioning, Animals
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Bedecarrats, Alexis; Cornet, Charles; Simmers, John; Nargeot, Romuald – Learning & Memory, 2013
Feeding in "Aplysia" provides an amenable model system for analyzing the neuronal substrates of motivated behavior and its adaptability by associative reward learning and neuromodulation. Among such learning processes, appetitive operant conditioning that leads to a compulsive-like expression of feeding actions is known to be associated…
Descriptors: Animals, Animal Behavior, Eating Habits, Associative Learning
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Wray, Alisha M.; Mahoney, Amanda; Weetjens, Bart J.; Cox, Christophe; Jubitana, Maureen; Kazwala, Rudovic; Mfinanga, Godfrey S.; Durgin, Amy; Poling, Alan – Psychological Record, 2013
Previous studies have shown that pouched rats can detect the presence of "Mycobacterium tuberculosis," which causes tuberculosis, in human sputum samples obtained from clinical facilities. Although pouched rats evaluate sputum samples quickly, preparing the samples is relatively slow. The present study evaluated whether the rats can detect…
Descriptors: Animals, Diseases, Laboratory Equipment, Science Laboratories
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Machado, Armando; Tonneau, Francois – Behavior Analyst, 2012
Barba's (2012) article deftly weaves three main themes in one argument about operant variability. From general theoretical considerations on operant behavior (Catania, 1973), Barba derives methodological guidelines about response differentiation and applies them to the study of operant variability. In the process, he uncovers unnoticed features of…
Descriptors: Reinforcement, Operant Conditioning, Probability, Stereotypes
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Jurado-Parras, M. Teresa; Gruart, Agnes; Delgado-Garcia, Jose M. – Learning & Memory, 2012
The neural structures involved in ongoing appetitive and/or observational learning behaviors remain largely unknown. Operant conditioning and observational learning were evoked and recorded in a modified Skinner box provided with an on-line video recording system. Mice improved their acquisition of a simple operant conditioning task by…
Descriptors: Animals, Observational Learning, Brain, Stimulation
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Palmer, David C. – Behavior Analyst, 2012
The following article by Barba (2012a) addresses Neuringer's proposal that variability is an operant dimension of behavior, that is, that variability can be reinforced, extinguished, and brought under stimulus control, just like any other response property. Barba confines his argument to methodological considerations: He points out that the…
Descriptors: Behavior Disorders, Reinforcement, Operant Conditioning, Behavior
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Valente, Andre; Huang, Kuo-Hua; Portugues, Ruben; Engert, Florian – Learning & Memory, 2012
The performance of developing zebrafish in both classical and operant conditioning assays was tested with a particular focus on the emergence of these learning behaviors during development. Strategically positioned visual cues paired with electroshocks were used in two fully automated assays to investigate both learning paradigms. These allow the…
Descriptors: Classical Conditioning, Operant Conditioning, Learning, Animals
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Pinkston, Jonathan W.; Lamb, R. J. – Journal of the Experimental Analysis of Behavior, 2012
When given to pigeons, the direct-acting dopamine agonist apomorphine elicits pecking. The response has been likened to foraging pecking because it bears remarkable similarity to foraging behavior, and it is enhanced by food deprivation. On the other hand, other data suggest the response is not related to foraging behavior and may even interfere…
Descriptors: Animals, Brain, Biochemistry, Experiments
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Elcoro, Mirari; Trundle, Melissa B. – International Journal for the Scholarship of Teaching and Learning, 2013
We examined the preference of undergraduate students for a live or a virtual rat when learning about concepts of operant conditioning. Students were provided with the opportunity to directly compare a virtual and a live rat in a supplemental exercise for Learning courses. We argue that the design of teaching exercises should involve a systematic…
Descriptors: Undergraduate Students, Preferences, Animals, Computer Simulation
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Stahlman, W. David; Blaisdell, Aaron P. – Learning and Motivation, 2011
Recent studies have demonstrated that the expectation of reward delivery has an inverse relationship with operant behavioral variation (e.g., Stahlman, Roberts, & Blaisdell, 2010). Research thus far has largely focused on one aspect of reinforcement--the likelihood of food delivery. In two experiments with pigeons, we examined the effect of two…
Descriptors: Reinforcement, Operant Conditioning, Rewards, Animals
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Poling, Alan; Weetjens, Bart; Cox, Christophe; Beyene, Negussie W.; Bach, Harvard; Sully, Andrew – Journal of Applied Behavior Analysis, 2011
We used giant African pouched rats ("Cricetomys gambianus") as land mine-detection animals in Mozambique because they have an excellent sense of smell, weigh too little to activate mines, and are native to sub-Saharan Africa, and therefore are resistant to local parasites and diseases. In 2009 the rats searched 93,400 m[superscript 2] of…
Descriptors: Animals, Weapons, Operant Conditioning, Olfactory Perception
Brackney, Ryan J.; Cheung, Timothy H. C.; Neisewander, Janet L.; Sanabria, Federico – Journal of the Experimental Analysis of Behavior, 2011
Dissociating motoric and motivational effects of pharmacological manipulations on operant behavior is a substantial challenge. To address this problem, we applied a response-bout analysis to data from rats trained to lever press for sucrose on variable-interval (VI) schedules of reinforcement. Motoric, motivational, and schedule factors (effort…
Descriptors: Intervals, Reinforcement, Behavior, Operant Conditioning
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Poling, Alan; Weetjens, Bart; Cox, Christophe; Beyene, Negussie W.; Bach, Harvard; Sully, Andrew – Journal of Applied Behavior Analysis, 2011
We used giant African pouched rats ("Cricetomys gambianus") as land mine-detection animals in Mozambique because they have an excellent sense of smell, weigh too little to activate mines, and are native to sub-Saharan Africa, and therefore are resistant to local parasites and diseases. In 2009 the rats searched 93,400 m[superscript 2] of…
Descriptors: Animals, Safety, Operant Conditioning, Foreign Countries
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Arantes, Joana; Berg, Mark E.; Le, Dien; Grace, Randolph C. – Journal of the Experimental Analysis of Behavior, 2012
In Experiment 1, 4 pigeons were trained on a multiple chain schedule in which the initial link was a variable-interval (VI) 20-s schedule signalled by a red or green center key, and terminal links required four responses made to the left (L) and/or right (R) keys. In the REPEAT component, signalled by red keylights, only LRLR terminal-link…
Descriptors: Resistance to Change, Preferences, Animals, Reinforcement
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Pauli, Wolfgang M.; Clark, Alexandra D.; Guenther, Heidi J.; O'Reilly, Randall C.; Rudy, Jerry W. – Learning & Memory, 2012
Evidence suggests that two regions of the striatum contribute differential support to instrumental response selection. The dorsomedial striatum (DMS) is thought to support expectancy-mediated actions, and the dorsolateral striatum (DLS) is thought to support habits. Currently it is unclear whether these regions store task-relevant information or…
Descriptors: Evidence, Animals, Operant Conditioning, Adjustment (to Environment)
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