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Lotfipour, Shahrdad; Mojica, Celina; Nakauchi, Sakura; Lipovsek, Marcela; Silverstein, Sarah; Cushman, Jesse; Tirtorahardjo, James; Poulos, Andrew; Elgoyhen, Ana Belén; Sumikawa, Katumi; Fanselow, Michael S.; Boulter, Jim – Learning & Memory, 2017
The absence of a2* nicotinic acetylcholine receptors (nAChRs) in oriens lacunosum moleculare (OLM) GABAergic interneurons ablate the facilitation of nicotine-induced hippocampal CA1 long-term potentiation and impair memory. The current study delineated whether genetic mutations of a2* nAChRs ("Chrna2"[superscript L9'S/L9'S] and…
Descriptors: Brain, Brain Hemisphere Functions, Animals, Long Term Memory
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
Lieberman, David A. – Cambridge University Press, 2012
This innovative textbook is the first to integrate learning and memory, behaviour, and cognition. It focuses on fascinating human research in both memory and learning (while also bringing in important animal studies) and brings the reader up to date with the latest developments in the subject. Students are encouraged to think critically: key…
Descriptors: Memory, Learning Processes, Classical Conditioning, Reinforcement
Foster, Jennifer A.; Burman, Michael A. – Learning & Memory, 2010
Long-term memory for fear of an environment (contextual fear conditioning) emerges later in development (postnatal day; PD 23) than long-term memory for fear of discrete stimuli (PD 17). As contextual, but not explicit cue, fear conditioning relies on the hippocampus; this has been interpreted as evidence that the hippocampus is not fully…
Descriptors: Conditioning, Neurology, Long Term Memory, Developmental Stages
Lazzaro, Stephanie C.; Hou, Mian; Cunha, Catarina; LeDoux, Joseph E.; Cain, Christopher K. – Learning & Memory, 2010
Norepinephrine receptors have been studied in emotion, memory, and attention. However, the role of alpha1-adrenergic receptors in fear conditioning, a major model of emotional learning, is poorly understood. We examined the effect of terazosin, an alpha1-adrenergic receptor antagonist, on cued fear conditioning. Systemic or intra-lateral amygdala…
Descriptors: Posttraumatic Stress Disorder, Conditioning, Long Term Memory, Fear
Bredy, Timothy W.; Barad, Mark – Learning & Memory, 2008
Histone modifications contribute to the epigenetic regulation of gene expression, a process now recognized to be important for the consolidation of long-term memory. Valproic acid (VPA), used for many years as an anticonvulsant and a mood stabilizer, has effects on learning and memory and enhances the extinction of conditioned fear through its…
Descriptors: Behavior Modification, Long Term Memory, Fear, Anxiety
Kelley, Jonathan B.; Balda, Mara A.; Anderson, Karen L.; Itzhak, Yossef – Learning & Memory, 2009
The fear conditioning paradigm is used to investigate the roles of various genes, neurotransmitters, and substrates in the formation of fear learning related to contextual and auditory cues. In the brain, nitric oxide (NO) produced by neuronal nitric oxide synthase (nNOS) functions as a retrograde neuronal messenger that facilitates synaptic…
Descriptors: Animals, Cues, Scientific Research, Conditioning
Lovibond, Peter F. – Learning & Memory, 2004
Human conditioning research shows that learning is closely related to consciously available contingency knowledge, requires attentional resources, and is influenced by language. This research suggests a cognitive model in which extinction consists of changes in contingency beliefs in long-term memory. Laboratory and clinical evidence on extinction…
Descriptors: Learning Processes, Models, Scientific Research, Cognitive Processes
Ribeiro, Maria J.; Schofield, Michael G.; Kemenes, Ildiko; O'Shea, Michael; Kemenes, Gyorgy; Benjamin, Paul R. – Learning & Memory, 2005
Although an important role for the mitogen-activated protein kinase (MAPK) has been established for memory consolidation in a variety of learning paradigms, it is not known if this pathway is also involved in appetitive classical conditioning. We address this question by using a single-trial food-reward conditioning paradigm in the freshwater…
Descriptors: Stimuli, Models, Classical Conditioning, Long Term Memory
Peer reviewedNelson, Charles A. – Developmental Psychology, 1995
Reviews the literature on the relation between early memory development and corresponding changes in brain development of infants. Finds that an adult-like form of explicit memory emerges between 8 and 12 months of age, drawing heavily on limbic and cortical structures. Offers theoretical perspectives for studying the ontogeny of memory. (JW)
Descriptors: Cognitive Development, Cognitive Processes, Conditioning, Developmental Stages
Donley, Melanie P.; Rosen, Jeffrey B.; Malkani, Seema; Wallace, Karin J. – Learning & Memory, 2004
Studies of gene expression following fear conditioning have demonstrated that the inducible transcription factor, "egr-1," is increased in the lateral nucleus of the amygdala shortly following fear conditioning. These studies suggest that "egr-1" and its protein product Egr-1 in the amygdala are important for learning and memory of fear. To…
Descriptors: Animals, Animal Behavior, Brain, Learning Processes
Kandel, Eric R.; Hawkins, Robert D. – Scientific American, 1992
Describes the biological basis of learning and individuality. Presents an overview of recent discoveries that suggest learning engages a simple set of rules that modify the strength of connection between neurons in the brain. The changes are cited as playing an important role in making each individual unique. (MCO)
Descriptors: Biology, Classical Conditioning, Cognitive Processes, Definitions

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