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Smedley, Elizabeth B.; Smith, Kyle S. – Learning & Memory, 2018
Sign-tracking is a form of autoshaping where animals develop conditioned responding directed toward stimuli predictive of an outcome even though the outcome is not contingent on the animal's behavior. Sign-tracking behaviors are thought to arise out of the attribution of incentive salience (i.e., motivational value) to reward-predictive cues. It…
Descriptors: Cues, Rewards, Persistence, Responses
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Atlas, Lauren Y.; Phelps, Elizabeth A. – Learning & Memory, 2018
Fear-relevant stimuli such as snakes and spiders are thought to capture attention due to evolutionary significance. Classical conditioning experiments indicate that these stimuli accelerate learning, while instructed extinction experiments suggest they may be less responsive to instructions. We manipulated stimulus type during instructed aversive…
Descriptors: Fear, Stimuli, Hypothesis Testing, Visual Stimuli
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Gehring, Katrin B.; Heufelder, Karin; Feige, Janina; Bauer, Paul; Dyck, Yan; Ehrhardt, Lea; Kühnemund, Johannes; Bergmann, Anja; Göbel, Josefine; Isecke, Marlene; Eisenhardt, Dorothea – Learning & Memory, 2016
The transcription factor cAMP-response element-binding protein (CREB) is involved in neuronal plasticity. Phosphorylation activates CREB and an increased level of phosphorylated CREB is regarded as an indicator of CREB-dependent transcriptional activation. In honeybees ("Apis mellifera") we recently demonstrated a particular high…
Descriptors: Entomology, Animal Behavior, Responses, Stimuli
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Kehoe, E. James; Ludvig, Elliot A.; Sutton, Richard S. – Learning & Memory, 2013
Rabbits were classically conditioned using compounds of tone and light conditioned stimuli (CSs) presented with either simultaneous onsets (Experiment 1) or serial onsets (Experiment 2) in a delay conditioning paradigm. Training with the simultaneous compound reduced the likelihood of a conditioned response (CR) to the individual CSs ("mutual…
Descriptors: Animals, Classical Conditioning, Brain, Responses
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Fuchs, Jason R.; Robinson, Gain M.; Dean, Aaron M.; Schoenberg, Heidi E.; Williams, Michael R.; Morielli, Anthony D.; Green, John T. – Learning & Memory, 2014
We have previously shown that intracerebellar infusion of the neuropeptide secretin enhances the acquisition phase of eyeblink conditioning (EBC). Here, we sought to test whether endogenous secretin also regulates EBC and to test whether the effect of exogenous and endogenous secretin is specific to acquisition. In Experiment 1, rats received…
Descriptors: Classical Conditioning, Neurological Organization, Animals, Behavioral Science Research
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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
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Singh, Teghpal; McDannald, Michael A.; Takahashi, Yuji K.; Haney, Richard Z.; Cooch, Nisha K.; Lucantonio, Federica; Schoenbaum, Geoffrey – Learning & Memory, 2011
While knowing what to expect is important, it is equally important to know when to expect it and to respond accordingly. This is apparent even in simple Pavlovian training situations in which animals learn to respond more strongly closer to reward delivery. Here we report that the nucleus accumbens core, an area well-positioned to represent…
Descriptors: Rewards, Classical Conditioning, Behavior Modification, Operant Conditioning
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Darvas, Martin; Fadok, Jonathan P.; Palmiter, Richard D. – Learning & Memory, 2011
Two-way active avoidance (2WAA) involves learning Pavlovian (association of a sound cue with a foot shock) and instrumental (shock avoidance) contingencies. To identify regions where dopamine (DA) is involved in mediating 2WAA, we restored DA signaling in specific brain areas of dopamine-deficient (DD) mice by local reactivation of conditionally…
Descriptors: Animals, Classical Conditioning, Genetics, Biochemistry
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Maren, Stephen; Hobin, Jennifer A. – Learning & Memory, 2007
Pavlovian fear conditioning is a robust and enduring form of emotional learning that provides an ideal model system for studying contextual regulation of memory retrieval. After extinction the expression of fear conditional responses (CRs) is context-specific: A conditional stimulus (CS) elicits greater conditional responding outside compared with…
Descriptors: Fear, Classical Conditioning, Memory, Neurology
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Kehoe, E. James – Learning & Memory, 2006
The rabbit nictitating membrane (NM) response underwent successive stages of acquisition and extinction training in both delay (Experiment 1) and trace (Experiment 2) classical conditioning. In both cases, successive acquisitions became progressively faster, although the largest, most reliable acceleration occurred between the first and second…
Descriptors: Classical Conditioning, Animals, Responses, Brain
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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
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Dirikx, Trinette; Hermans, Dirk; Vansteenwegen, Debora; Baeyens, Frank; Eelen, Paul – Learning & Memory, 2004
The present study investigated reinstatement of conditioned responses in humans by using a differential Pavlovian conditioning procedure. Evidence for reinstatement was established in a direct (fear rating) and in an indirect measure (secondary reaction time task) of conditioning. Moreover, the amount of reinstatement in the secondary reaction…
Descriptors: Stimuli, Fear, Classical Conditioning, Reaction Time
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Brembs, Bjorn; Baxter, Douglas A.; Byrne, John H. – Learning & Memory, 2004
Operant and classical conditioning are major processes shaping behavioral responses in all animals. Although the understanding of the mechanisms of classical conditioning has expanded significantly, the understanding of the mechanisms of operant conditioning is more limited. Recent developments in "Aplysia" are helping to narrow the gap in the…
Descriptors: Operant Conditioning, Classical Conditioning, Responses, Animals
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Fister, Mathew; Bickford, Paula C.; Cartford, M. Claire; Samec, Amy – Learning & Memory, 2004
The neurotransmitter norepinephrine (NE) has been shown to modulate cerebellar-dependent learning and memory. Lesions of the nucleus locus coeruleus or systemic blockade of noradrenergic receptors has been shown to delay the acquisition of several cerebellar-dependent learning tasks. To date, no studies have shown a direct involvement of…
Descriptors: Eye Movements, Classical Conditioning, Learning Processes, Biochemistry
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Delgado-Garcia, Jose Maria; Troncoso, Julieta; Munera, Alejandro – Learning & Memory, 2004
The murine vibrissae sensorimotor system has been scrutinized as a target of motor learning through trace classical conditioning. Conditioned eyelid responses were acquired by using weak electrical whisker-pad stimulation as conditioned stimulus (CS) and strong electrical periorbital stimulation as unconditioned stimulus (US). In addition,…
Descriptors: Motor Development, Animals, Eye Movements, Responses
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