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Madalan, Adrian; Yang, Xiao; Ferris, Jacob; Zhang, Shixing; Roman, Gregg – Learning & Memory, 2012
Heterotrimeric G(o) is an abundant brain protein required for negatively reinforced short-term associative olfactory memory in "Drosophila". G(o) is the only known substrate of the S1 subunit of pertussis toxin (PTX) in fly, and acute expression of PTX within the mushroom body neurons (MB) induces a reversible deficit in associative olfactory…
Descriptors: Associative Learning, Short Term Memory, Cognitive Processes, Animals
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Wu, Yanying; Ren, Qingzhong; Li, Hao; Guo, Aike – Learning & Memory, 2012
Reversal learning has been widely used to probe the implementation of cognitive flexibility in the brain. Previous studies in monkeys identified an essential role of the orbitofrontal cortex (OFC) in reversal learning. However, the underlying circuits and molecular mechanisms are poorly understood. Here, we use the T-maze to investigate the neural…
Descriptors: Learning, Brain, Olfactory Perception, Entomology
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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
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Bhattacharya, Sriya; Mukherjee, Bandhan; Doré, Jules J. E.; Yuan, Qi; Harley, Carolyn W.; McLean, John H. – Learning & Memory, 2017
Histone deacetylase (HDAC) plays a role in synaptic plasticity and long-term memory formation. We hypothesized that trichostatin-A (TSA), an HDAC inhibitor, would promote long-term odor preference memory and maintain enhanced GluA1 receptor levels that have been hypothesized to support memory. We used an early odor preference learning model in…
Descriptors: Long Term Memory, Inhibition, Olfactory Perception, Preferences
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Matsumoto, Yukihisa; Sandoz, Jean-Christophe; Devaud, Jean-Marc; Lormant, Flore; Mizunami, Makoto; Giurfa, Martin – Learning & Memory, 2014
Memory is a dynamic process that allows encoding, storage, and retrieval of information acquired through individual experience. In the honeybee "Apis mellifera," olfactory conditioning of the proboscis extension response (PER) has shown that besides short-term memory (STM) and mid-term memory (MTM), two phases of long-term memory (LTM)…
Descriptors: Animals, Olfactory Perception, Short Term Memory, Long Term Memory
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Huang, Guang-Zhe; Taniguchi, Mutsuo; Zhou, Ye-Bo; Zhang, Jing-Ji; Okutani, Fumino; Murata, Yoshihiro; Yamaguchi, Masahiro; Kaba, Hideto – Learning & Memory, 2018
The formation of mate recognition memory in mice is associated with neural changes at the reciprocal dendrodendritic synapses between glutamatergic mitral cell (MC) projection neurons and GABAergic granule cell (GC) interneurons in the accessory olfactory bulb (AOB). Although noradrenaline (NA) plays a critical role in the formation of the memory,…
Descriptors: Brain Hemisphere Functions, Biochemistry, Stimulation, Olfactory Perception
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Hosono, Shouhei; Matsumoto, Yukihisa; Mizunami, Makoto – Learning & Memory, 2016
Animals learn through experience and consolidate the memories into long-time storage. Conditioning parameters to induce protein synthesis-dependent long-term memory (LTM) have been the subject of extensive studies in many animals. Here we found a case in which a conditioning trial inhibits or facilitates LTM formation depending on the intervals…
Descriptors: Animal Behavior, Conditioning, Long Term Memory, Olfactory Perception
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Grella, Stephanie L.; Fortin, Amanda H.; McKissick, Olivia; Leblanc, Heloise; Ramirez, Steve – Learning & Memory, 2020
Systems consolidation (SC) theory proposes that recent, contextually rich memories are stored in the hippocampus (HPC). As these memories become remote, they are believed to rely more heavily on cortical structures within the prefrontal cortex (PFC), where they lose much of their contextual detail and become schematized. Odor is a particularly…
Descriptors: Olfactory Perception, Fear, Memory, Recall (Psychology)
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Grimes, Matthew T.; Harley, Carolyn W.; Darby-King, Andrea; McLean, John H. – Learning & Memory, 2012
Neonatal odor-preference memory in rat pups is a well-defined associative mammalian memory model dependent on cAMP. Previous work from this laboratory demonstrates three phases of neonatal odor-preference memory: short-term (translation-independent), intermediate-term (translation-dependent), and long-term (transcription- and…
Descriptors: Animals, Olfactory Perception, Preferences, Learning
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Pressler, R. Todd; Rozman, Peter A.; Strowbridge, Ben W. – Learning & Memory, 2013
In the mammalian olfactory bulb (OB), local synaptic circuits modulate the evolving pattern of activity in mitral and tufted cells following olfactory sensory stimulation. GABAergic granule cells, the most numerous interneuron subtype in this brain region, have been extensively studied. However, classic studies using Golgi staining methods…
Descriptors: Brain, Olfactory Perception, Stimulation, Stimuli
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Schmidt, Loren J.; Strowbridge, Ben W. – Learning & Memory, 2014
Although inhibition has often been proposed as a central mechanism for coordinating activity in the olfactory system, relatively little is known about how activation of different inhibitory local circuit pathways can generate coincident inhibition of principal cells. We used serotonin (5-HT) as a pharmacological tool to induce spiking in ensembles…
Descriptors: Olfactory Perception, Inhibition, Biochemistry, Cytology
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Andrione, Mara; Timberlake, Benjamin F.; Vallortigara, Giorgio; Antolini, Renzo; Haase, Albrecht – Learning & Memory, 2017
Repeated or prolonged exposure to an odorant without any positive or negative reinforcement produces experience-dependent plasticity, which results in habituation and latent inhibition. In the honeybee ("Apis mellifera"), it has been demonstrated that, even if the absolute neural representation of an odor in the primary olfactory center,…
Descriptors: Olfactory Perception, Brain Hemisphere Functions, Novelty (Stimulus Dimension), Familiarity
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Fernandez, Vanesa M.; Giurfa, Martin; Devaud, Jean-Marc; Farina, Walter M. – Learning & Memory, 2012
Latent inhibition (LI) is a decrement in learning performance that results from the nonreinforced pre-exposure of the to-be-conditioned stimulus, in both vertebrates and invertebrates. In vertebrates, LI development involves dopamine and serotonin; in invertebrates there is yet no information. We studied differential olfactory conditioning of the…
Descriptors: Entomology, Inhibition, Learning, Olfactory Perception
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Larkin, Aoife; Karak, Somdatta; Priya, Rashi; Das, Abhijit; Ayyub, Champakali; Ito, Kei; Rodrigues, Veronica; Ramaswami, Mani – Learning & Memory, 2010
Naive "Drosophila" larvae show vigorous chemotaxis toward many odorants including ethyl acetate (EA). Chemotaxis toward EA is substantially reduced after a 5-min pre-exposure to the odorant and recovers with a half-time of [image omitted]20 min. An analogous behavioral decrement can be induced without odorant-receptor activation through…
Descriptors: Habituation, Brain Hemisphere Functions, Inhibition, Entomology
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Felsenberg, Johannes; Plath, Jenny Aino; Lorang, Steven; Morgenstern, Laura; Eisenhardt, Dorothea – Learning & Memory, 2014
In classical conditioning, the temporal sequence of stimulus presentations is critical for the association between the conditioned stimulus (CS) and the unconditioned stimulus (US). In forward conditioning, the CS precedes the US and is learned as a predictor for the US. Thus it acquires properties to elicit a behavioral response, defined as…
Descriptors: Short Term Memory, Long Term Memory, Animals, Stimuli
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