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Wong, J. Y. Hilary; Wan, Bo Angela; Bland, Tom; Montagnese, Marcella; McLachlan, Alex D.; O'Kane, Cahir J.; Zhang, Shuo Wei; Masuda-Nakagawa, Liria M. – Learning & Memory, 2021
Discrimination of sensory signals is essential for an organism to form and retrieve memories of relevance in a given behavioral context. Sensory representations are modified dynamically by changes in behavioral state, facilitating context-dependent selection of behavior, through signals carried by noradrenergic input in mammals, or octopamine (OA)…
Descriptors: Human Body, Olfactory Perception, Animal Behavior, Memory
Bjorni, Max; Rovero, Natalie G.; Yang, Elissa R.; Holmes, Andrew; Halladay, Lindsay R. – Learning & Memory, 2020
While results from many past studies have implicated the bed nucleus of the stria terminalis (BNST) in mediating the expression of sustained negative affect, recent studies have highlighted a more complex role for BNST that includes aspects of fear learning in addition to defensive responding. As BNST is thought to encode ambiguous or…
Descriptors: Fear, Cues, Brain Hemisphere Functions, Learning Processes
Oruro, Enver Miguel; Pardo, Grace V. E.; Lucion, Aldo B.; Calcagnotto, Maria Elisa; Idiart, Marco A. P. – Learning & Memory, 2020
Studies have shown that neonate rodents exhibit high ability to learn a preference for novel odors associated with thermo-tactile stimuli that mimics maternal care. Artificial odors paired with vigorous strokes in rat pups younger than 10 postnatal days (P), but not older, rapidly induce an orientation-approximation behavior toward the conditioned…
Descriptors: Animal Behavior, Cytology, Learning Processes, Preferences
Marchal, Paul; Villar, Maria Eugenia; Geng, Haiyang; Arrufat, Patrick; Combe, Maud; Viola, HaydĂ©e; Massou, Isabelle; Giurfa, Martin – Learning & Memory, 2019
Honeybees are a standard model for the study of appetitive learning and memory. Yet, fewer attempts have been performed to characterize aversive learning and memory in this insect and uncover its molecular underpinnings. Here, we took advantage of the positive phototactic behavior of bees kept away from the hive in a dark environment and…
Descriptors: Inhibition, Learning Processes, Memory, Molecular Structure
Tong, Michelle T.; Kim, Tae-Young P.; Cleland, Thomas A. – Learning & Memory, 2018
Long-term fear memory formation in the hippocampus and neocortex depends upon brain-derived neurotrophic factor (BDNF) signaling after acquisition. Incremental, appetitive odor discrimination learning is thought to depend substantially on the differentiation of adult-born neurons within the olfactory bulb (OB)--a process that is closely associated…
Descriptors: Memory, Olfactory Perception, Role, Animals
Kutlu, Munir G.; Tumolo, Jessica M.; Holliday, Erica; Garrett, Brendan; Gould, Thomas J. – Learning & Memory, 2016
Exposure therapy, which focuses on extinguishing fear-triggering cues and contexts, is widely used to treat post-traumatic stress disorder (PTSD). Yet, PTSD patients who received successful exposure therapy are vulnerable to relapse of fear response after a period of time, a phenomenon known as spontaneous recovery (SR). Increasing evidence…
Descriptors: Fear, Cues, Animal Behavior, Animals
Shakhawat, Amin MD.; Harley, Carolyn W.; Yuan, Qi – Learning & Memory, 2012
In this study, three lines of evidence suggest a role for [alpha][subscript 2]-adrenoreceptors in rat pup odor-preference learning: olfactory bulb infusions of the [alpha][subscript 2]-antagonist, yohimbine, prevents learning; the [alpha][subscript 2]-agonist, clonidine, paired with odor, induces learning; and subthreshold clonidine paired with…
Descriptors: Evolution, Olfactory Perception, Animals, Role
Kodirov, Sodikdjon A.; Jasiewicz, Julia; Amirmahani, Parisa; Psyrakis, Dimitrios; Bonni, Kathrin; Wehrmeister, Michael; Lutz, Beat – Learning & Memory, 2010
The amygdala is a key area of the brain where the emotional memories are stored throughout the lifespan. It is well established that synapses in the lateral nucleus of amygdala (LA) can undergo long-term potentiation, a putative cellular correlate of learning and memory. However, a type of short-term synaptic plasticity, known as…
Descriptors: Brain Hemisphere Functions, Memory, Cytology, Correlation
Cohen-Matsliah, Sivan Ida; Seroussi, Yaron; Rosenblum, Kobi; Barkai, Edi – Learning & Memory, 2008
Pyramidal neurons in the piriform cortex from olfactory-discrimination (OD) trained rats undergo synaptic modifications that last for days after learning. A particularly intriguing modification is reduced paired-pulse facilitation (PPF) in the synapses interconnecting these cells; a phenomenon thought to reflect enhanced synaptic release. The…
Descriptors: Animals, Neurological Organization, Molecular Structure, Physiology
Havekes, Robbert; Nijholt, Ingrid M.; Luiten, Paul G. M.; Van der Zee, Eddy A. – Learning & Memory, 2006
The regulation and function of the calcium-dependent phosphatase calcineurin (CaN, protein phosphatase 2B) in learning and memory remain unclear, although recent work indicates that CaN may play a differential role in training and reversal training. To gain more insight into the involvement of CaN in these two types of learning, hippocampal CaN…
Descriptors: Memory, Biochemistry, Learning Processes, Training
Trifilieff, Pierre; Vanhoutte, Peter; Caboche, Jocelyne; Desmedt, Aline; Riedel, Gernot; Mons, Nicole; Micheau, Jacques; Herry, Cyril – Learning & Memory, 2006
Fear conditioning is a popular model for investigating physiological and cellular mechanisms of memory formation. In this paradigm, a footshock is either systematically associated to a tone (paired conditioning) or is pseudorandomly distributed (unpaired conditioning). In the former procedure, the tone/shock association is acquired, whereas in the…
Descriptors: Conditioning, Memory, Physiology, Learning Processes
Blouin, Ashley M.; Cain, Chris K.; Barad, Mike – Learning & Memory, 2004
Having recently shown that extinction of conditioned fear depends on L-type voltage-gated calcium channels (LVGCCs), we have been seeking other protocols that require this unusual induction mechanism. We tested latent inhibition (LI) of fear, because LI resembles extinction except that cue exposures precede, rather than follow, cue-shock pairing.…
Descriptors: Conditioning, Animals, Cytology, Neurology
Yuan, Qi; Mutoh, Hiroki; Debarbieux, Franck; Knopfel, Thomas – Learning & Memory, 2004
Synapses formed by the olfactory nerve (ON) provide the source of excitatory synaptic input onto mitral cells (MC) in the olfactory bulb. These synapses, which relay odor-specific inputs, are confined to the distally tufted single primary dendrites of MCs, the first stage of central olfactory processing. Beta-adrenergic modulation of electrical…
Descriptors: Animals, Biology, Brain Hemisphere Functions, Biochemistry
Josselyn, Sheena A. – Learning & Memory, 2005
The first gene-targeting studies that examined learning and memory in mice were performed in 1992 (Grant et al. 1992; Silva et al. 1992). The ultimate goal of this new field was to understand the molecular and cellular process underlying normal cognition and how they may be altered in disease states. In the years since these pioneering studies,…
Descriptors: Genetics, Learning Processes, Cytology, Molecular Biology
Cohen, Marlene R.; Meissner, Geoffrey W.; Schafer, Robert J.; Raymond, Jennifer L. – Learning & Memory, 2004
Motor learning in the vestibulo-ocular reflex (VOR) and eyeblink conditioning use similar neural circuitry, and they may use similar cellular plasticity mechanisms. Classically conditioned eyeblink responses undergo extinction after prolonged exposure to the conditioned stimulus in the absence of the unconditioned stimulus. We investigated the…
Descriptors: Visual Stimuli, Stimulation, Eye Movements, Motor Development