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Updated: Apr 13, 2026

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Three Laboratory Procedures for Assessing Different Manifestations of Impulsivity in Rats
Published on: March 17, 2019
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A quantitative analysis of the behavior maintained by delayed reinforcers.
Journal of the Experimental Analysis of Behavior
|May 1, 2015
Summary
Reinforcement delays impact behavior, with response rates decreasing as delays increase. This study shows that the time elapsed since a response, not intervening behaviors, primarily determines reinforcement effectiveness.
Area of Science:
- Behavioral Psychology
- Animal Behavior
- Operant Conditioning
Background:
- Reinforcement is a fundamental principle in operant conditioning.
- The temporal relationship between a response and its consequence influences behavior.
- Previous research suggests reinforcement effects can extend beyond the immediately preceding response.
Purpose of the Study:
- To investigate how delays in reinforcement affect response rates in pigeons.
- To determine whether the time elapsed or the number of intervening responses is more critical in delay gradients.
- To examine the mathematical functions that best describe these delay gradients.
Main Methods:
- Pigeons were trained on a sequence of first-key and second-key pecks under random-interval reinforcement.
- Experiments manipulated the number of responses and time delays between responses and reinforcers.
- Delay gradients were analyzed using exponential, hyperbolic, and logarithmic functions.
Main Results:
- Response rates decreased as the delay between responses and reinforcement increased.
- Delay gradients were well-described by exponential, hyperbolic, and logarithmic functions.
- The time elapsed since a response was a more significant factor than the number of intervening responses.
Conclusions:
- Reinforcers influence responses based on their temporal proximity, not solely on the immediately preceding response.
- The contribution of each response to reinforcement is weighted by the time since the response occurred.
- Understanding delay gradients is crucial for designing effective reinforcement schedules and avoiding the maintenance of unwanted behaviors.
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