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Flores, Veronica L.; Parmet, Tamar; Mukherjee, Narendra; Nelson, Sacha; Katz, Donald B.; Levitan, David – Learning & Memory, 2018
The strength of learned associations between pairs of stimuli is affected by multiple factors, the most extensively studied of which is prior experience with the stimuli themselves. In contrast, little data is available regarding how experience with "incidental" stimuli (independent of any conditioning situation) impacts later learning.…
Descriptors: Sensory Experience, Memory, Incidental Learning, Neurology
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Cho, Jin-Hyung; Rendall, Sam D.; Gray, Jesse M. – Learning & Memory, 2017
"Fos" induction during learning labels neuronal ensembles in the hippocampus that encode a specific physical environment, revealing a memory trace. In the cortex and other regions, the extent to which "Fos" induction during learning reveals specific sensory representations is unknown. Here we generate high-quality brain-wide…
Descriptors: Brain, Fear, Recall (Psychology), Memory
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McGann, John P. – Learning & Memory, 2015
Historically, the body's sensory systems have been presumed to provide the brain with raw information about the external environment, which the brain must interpret to select a behavioral response. Consequently, studies of the neurobiology of learning and memory have focused on circuitry that interfaces between sensory inputs and behavioral…
Descriptors: Associative Learning, Sensory Experience, Brain, Perception
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Singer, Bryan F.; Bryan, Myranda A.; Popov, Pavlo; Scarff, Raymond; Carter, Cody; Wright, Erin; Aragona, Brandon J.; Robinson, Terry E. – Learning & Memory, 2016
The sensory properties of a reward-paired cue (a conditioned stimulus; CS) may impact the motivational value attributed to the cue, and in turn influence the form of the conditioned response (CR) that develops. A cue with multiple sensory qualities, such as a moving lever-CS, may activate numerous neural pathways that process auditory and visual…
Descriptors: Food, Cues, Influences, Brain Hemisphere Functions
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Remmelink, Esther; Smit, August B.; Verhage, Matthijs; Loos, Maarten – Learning & Memory, 2016
Many neurological and psychiatric disorders are characterized by deficits in cognitive flexibility. Modeling cognitive flexibility in mice enables the investigation of mechanisms underlying these deficits. The majority of currently available behavioral tests targeting this cognitive domain are reversal learning tasks that require scheduled food…
Descriptors: Animals, Food, Sensory Experience, Models
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McNamara, Ann Marie; Magidson, Phillip D.; Linster, Christiane; Wilson, Donald A.; Cleland, Thomas A. – Learning & Memory, 2008
Habituation is one of the oldest forms of learning, broadly expressed across sensory systems and taxa. Here, we demonstrate that olfactory habituation induced at different timescales (comprising different odor exposure and intertrial interval durations) is mediated by different neural mechanisms. First, the persistence of habituation memory is…
Descriptors: Persistence, Memory, Habituation, Brain
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Freeman, John H.; Halverson, Hunter E.; Hubbard, Erin M. – Learning & Memory, 2007
The neural plasticity necessary for acquisition and retention of eyeblink conditioning has been localized to the cerebellum. However, the sources of sensory input to the cerebellum that are necessary for establishing learning-related plasticity have not been identified completely. The inferior colliculus may be a source of sensory input to the…
Descriptors: Conditioning, Brain, Animals, Eye Movements
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Sevelinges, Yannick; Sullivan, Regina M.; Messaoudi, Belkacem; Mouly, Anne-Marie – Learning & Memory, 2008
Adult learning and memory functions are strongly dependent on neonatal experiences. We recently showed that neonatal odor-shock learning attenuates later life odor fear conditioning and amygdala activity. In the present work we investigated whether changes observed in adults can also be observed in other structures normally involved, namely…
Descriptors: Conditioning, Inhibition, Adult Learning, Brain
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Zong, Lin; Tanaka, Nobuaki K.; Ito, Kei; Davis, Ronald L.; Akalal, David-Benjamin G.; Wilson, Curtis F. – Learning & Memory, 2006
Olfactory learning assays in Drosophila have revealed that distinct brain structures known as mushroom bodies (MBs) are critical for the associative learning and memory of olfactory stimuli. However, the precise roles of the different neurons comprising the MBs are still under debate. The confusion surrounding the roles of the different neurons…
Descriptors: Memory, Associative Learning, Entomology, Sensory Experience
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Harley, Carolyn W.; Darby-King, Andrea; McCann, Jennifer; McLean, John H. – Learning & Memory, 2006
We proposed that mitral cell [beta]1-adrenoceptor activation mediates rat pup odor preference learning. Here we evaluate [beta]1-, [beta]2-, [alpha]1-, and [alpha]2-adrenoceptor agonists in such learning. The [beta]1-adrenoceptor agonist, dobutamine, and the [alpha]1-adrenoceptor agonist, phenylephrine, induced learning, and both exhibited an…
Descriptors: Molecular Structure, Learning Processes, Animals, Brain
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Lunday, Lauren; Miner, Cathrine; Roth, Tania L.; Sullivan, Regina M.; Shionoya, Kiseko; Moriceau, Stephanie – Learning & Memory, 2006
Fetal and infant rats can learn to avoid odors paired with illness before development of brain areas supporting this learning in adults, suggesting an alternate learning circuit. Here we begin to document the transition from the infant to adult neural circuit underlying odor-malaise avoidance learning using LiCl (0.3 M; 1% of body weight, ip) and…
Descriptors: Body Weight, Conditioning, Animals, Brain
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Roullet, Florence; Lienard, Fabienne; Datiche, Frederique; Cattarelli, Martine – Learning & Memory, 2005
Fos protein immunodetection was used to investigate the neuronal activation elicited in some olfactory-related areas after either learning of an olfactory discrimination task or its reactivation 10 d later. Trained rats (T) progressively acquired the association between one odor of a pair and water-reward in a four-arm maze. Two groups of…
Descriptors: Memory, Brain, Discrimination Learning, Animals