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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
Lee, Jessica C.; Hayes, Brett K.; Lovibond, Peter F. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2018
Two experiments tested whether a peak-shifted generalization gradient could be explained by the averaging of distinct gradients displayed in subgroups reporting different generalization rules. Across experiments using a causal judgment task (Experiment 1) and a fear conditioning paradigm (Experiment 2), we found a close concordance between…
Descriptors: Generalization, Associative Learning, Discrimination Learning, Learning Theories
Marter, Kathrin; Grauel, M. Katharina; Lewa, Carmen; Morgenstern, Laura; Buckemüller, Christina; Heufelder, Karin; Ganz, Marion; Eisenhardt, Dorothea – Learning & Memory, 2014
This study examines the role of stimulus duration in learning and memory formation of honeybees ("Apis mellifera"). In classical appetitive conditioning honeybees learn the association between an initially neutral, conditioned stimulus (CS) and the occurrence of a meaningful stimulus, the unconditioned stimulus (US). Thereby the CS…
Descriptors: Learning Processes, Memory, Classical Conditioning, Associative Learning
Purkis, Helena M.; Lipp, Ottmar V. – Learning and Motivation, 2010
Evaluative learning is said to differ from Pavlovian associative learning in that it reflects stimulus contiguity, not contingency. Thus, evaluative learning should not be subject to stimulus competition, a proposal tested in the current experiments. Participants were presented in elemental and compound training phases with pictures of shapes as…
Descriptors: Classical Conditioning, Competition, Associative Learning, Experiments
Towards a New Study on Associative Learning in Human Fetuses: Fetal Associative Learning in Primates
Kawai, Nobuyuki – Infant and Child Development, 2010
Research has revealed that fetuses can learn from events in their environment. The most convincing evidence for fetal learning is habituation to vibroacoustic stimulation (VAS) in human fetuses and classical conditioning in rat fetuses. However, these two research areas have been independent of each other. There have been few attempts at classical…
Descriptors: Classical Conditioning, Associative Learning, Habituation, Animals
Kim, Jee Hyun; Richardson, Rick – Learning & Memory, 2009
Several recent studies report that neurotransmitters that are critically involved in extinction in adult rats are not important for extinction in young rats. Specifically, pretest injection of the [gamma]-aminobutryic acid (GABA) receptor inverse agonist FG7142 has no effect on extinction in postnatal day (P)17 rats, although it reverses…
Descriptors: Animals, Fear, Pretests Posttests, Experiments
Cook, Richard; Press, Clare; Dickinson, Anthony; Heyes, Cecilia – Journal of Experimental Psychology: Human Perception and Performance, 2010
The associative sequence learning model proposes that the development of the mirror system depends on the same mechanisms of associative learning that mediate Pavlovian and instrumental conditioning. To test this model, two experiments used the reduction of automatic imitation through incompatible sensorimotor training to assess whether mirror…
Descriptors: Learning Theories, Imitation, Operant Conditioning, Classical Conditioning
Cornejo, Felipe A.; Castillo, Ramon D.; Saavedra, Maria A.; Vogel, Edgar H. – Psicologica: International Journal of Methodology and Experimental Psychology, 2010
Considerable research has examined the contrasting predictions of configural and elemental associative accounts of learning. One of the simplest methods to distinguish between these approaches is the summation test, in which the associative strength of a novel compound (AB) made of two separately-trained cues (A+ and B+) is examined. The…
Descriptors: Animals, Cues, Classical Conditioning, Prediction
Rabinak, Christine A.; Orsini, Caitlin A.; Zimmerman, Joshua M.; Maren, Stephen – Learning & Memory, 2009
The basolateral complex (BLA) and central nucleus (CEA) of the amygdala play critical roles in associative learning, including Pavlovian conditioning. However, the precise role for these structures in Pavlovian conditioning is not clear. Recent work in appetitive conditioning paradigms suggests that the amygdala, particularly the BLA, has an…
Descriptors: Stimuli, Classical Conditioning, Associative Learning, Brain Hemisphere Functions
Hussaini, Syed Abid; Komischke, Bernhard; Menzel, Randolf; Lachnit, Harald – Learning & Memory, 2007
Second-order conditioning (SOC) is the association of a neutral stimulus with another stimulus that had previously been combined with an unconditioned stimulus (US). We used classical conditioning of the proboscis extension response (PER) in honeybees ("Apis mellifera") with odors (CS) and sugar (US). Previous SOC experiments in bees were…
Descriptors: Classical Conditioning, Entomology, Stimuli, Food
Pineno, Oskar; Zilski, Jessica M.; Schachtman, Todd R. – Learning and Motivation, 2007
Two conditioned taste aversion experiments with rats were conducted to establish if a target taste that had received a prior pairing with illness could be subject to second-order conditioning during extinction treatment in compound with a flavor that also received prior conditioning. In these experiments, the occurrence of second-order…
Descriptors: Classical Conditioning, Associative Learning, Animals, Animal Behavior
Beckers, Tom; Miller, Ralph R.; De Houwer, Jan; Urushihara, Kouji – Journal of Experimental Psychology: General, 2006
Forward blocking is one of the best-documented phenomena in Pavlovian animal conditioning. According to contemporary associative learning theories, forward blocking arises directly from the hardwired basic learning rules that govern the acquisition or expression of associations. Contrary to this view, here the authors demonstrate that blocking in…
Descriptors: Animals, Inferences, Cognitive Processes, Classical Conditioning
Thompson, Laura; Wright, William G.; Hoover, Brian A.; Nguyen, Hoang – Learning & Memory, 2006
Much recent research on mechanisms of learning and memory focuses on the role of heterosynaptic neuromodulatory signaling. Such neuromodulation appears to stabilize Hebbian synaptic changes underlying associative learning, thereby extending memory. Previous comparisons of three related sea-hares (Mollusca, Opisthobranchia) uncovered interspecific…
Descriptors: Classical Conditioning, Memory, Associative Learning, Correlation
Simon, Barbara B.; Knuckley, Bryan; Powell, Donald A. – Learning & Memory, 2004
Previous work has demonstrated that drugs increasing brain concentrations of acetylcholine can enhance cognition in aging and brain-damaged organisms. The present study assessed whether galantamine (GAL), an allosteric modulator of nicotinic cholinergic receptors and weak acetylcholinesterase inhibitor, could improve acquisition and retention of…
Descriptors: Classical Conditioning, Animals, Eye Movements, Biochemistry
Giurfa, Martin; Malun, Dagmar – Learning & Memory, 2004
The present work introduces a form of associative mechanosensory conditioning of the proboscis extension reflex (PER) in honeybees. In our paradigm, harnessed honeybees learn the elemental association between mechanosensory, antennal stimulation and a reward of sucrose solution delivered to the proboscis. Thereafter, bees extend their proboscis to…
Descriptors: Models, Cues, Stimulation, Classical Conditioning
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