Publication Date
In 2025 | 0 |
Since 2024 | 0 |
Since 2021 (last 5 years) | 0 |
Since 2016 (last 10 years) | 2 |
Since 2006 (last 20 years) | 4 |
Descriptor
Associative Learning | 4 |
Learning | 4 |
Animals | 3 |
Brain | 2 |
Cognitive Processes | 2 |
Animal Behavior | 1 |
Behavior | 1 |
Classical Conditioning | 1 |
Conditioning | 1 |
Cytology | 1 |
Differences | 1 |
More ▼ |
Source
Learning & Memory | 4 |
Author
Ardiel, Evan L. | 1 |
Cole, Sindy | 1 |
Faraut, Mailys C. M. | 1 |
Hawkins, Robert D. | 1 |
Kandel, Eric R. | 1 |
Petrovich, Gorica D. | 1 |
Powell, Daniel J. | 1 |
Procyk, Emmanuel | 1 |
Rankin, Catharine H. | 1 |
Wilson, Charles R. E. | 1 |
Publication Type
Journal Articles | 4 |
Reports - Research | 3 |
Reports - Descriptive | 1 |
Education Level
Audience
Location
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Hawkins, Robert D.; Kandel, Eric R. – Learning & Memory, 2019
One of the major questions in psychology is whether associative and nonassociative learning are fundamentally different or whether they involve similar processes and mechanisms. We have addressed this question by comparing mechanisms of a nonassociative form of learning, sensitization, and an associative form of learning, classical conditioning of…
Descriptors: Associative Learning, Classical Conditioning, Brain, Animals
Faraut, Mailys C. M.; Procyk, Emmanuel; Wilson, Charles R. E. – Learning & Memory, 2016
Unexpected outcomes can reflect noise in the environment or a change in the current rules. We should ignore noise but shift strategy after rule changes. How we learn to do this is unclear, but one possibility is that it relies on learning to learn in uncertain environments. We propose that acquisition of latent task structure during learning to…
Descriptors: Learning, Cognitive Processes, Animals, Error Patterns
Cole, Sindy; Powell, Daniel J.; Petrovich, Gorica D. – Learning & Memory, 2013
The amygdala is important for reward-associated learning, but how distinct cell groups within this heterogeneous structure are recruited during appetitive learning is unclear. Here we used Fos induction to map the functional amygdalar circuitry recruited during early and late training sessions of Pavlovian appetitive conditioning. We found that a…
Descriptors: Associative Learning, Brain, Neurological Organization, Conditioning
Ardiel, Evan L.; Rankin, Catharine H. – Learning & Memory, 2010
This article reviews the literature on learning and memory in the soil-dwelling nematode "Caenorhabditis elegans." Paradigms include nonassociative learning, associative learning, and imprinting, as worms have been shown to habituate to mechanical and chemical stimuli, as well as learn the smells, tastes, temperatures, and oxygen levels that…
Descriptors: Learning, Memory, Animals, Literature Reviews