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Schultz, Heidrun; Yoo, Jungsun; Meshi, Dar; Heekeren, Hauke R. – Learning & Memory, 2022
The medial temporal lobe (MTL), including the hippocampus (HC), perirhinal cortex (PRC), and parahippocampal cortex (PHC), is central to memory formation. Reward enhances memory through interplay between the HC and substantia nigra/ventral tegmental area (SNVTA). While the SNVTA also innervates the MTL cortex and amygdala (AMY), their role in…
Descriptors: Memory, Cognitive Processes, Brain, Brain Hemisphere Functions
Shultz, Brianna; Farkash, Abigail; Collins, Bailey; Mohammadmirzaei, Negin; Knox, Dayan – Learning & Memory, 2022
NMDA receptors (NMDARs) and AMPA receptors (AMPARs) in amygdala nuclei and the dorsal hippocampus (dHipp) are critical for fear conditioning. Enhancements in synaptic AMPAR expression in amygdala nuclei and the dHipp are critical for fear conditioning, with some studies observing changes in AMPAR expression across many neurons in these brain…
Descriptors: Fear, Brain, Physiology, Change
Fujii, Satoshi; Yamazaki, Yoshihiko; Goto, Jun-ichi; Fujiwara, Hiroki; Mikoshiba, Katsuhiko – Learning & Memory, 2020
In CA1 neurons of guinea pig hippocampal slices, long-term potentiation (LTP) was induced in field excitatory postsynaptic potentials (EPSPs) or population spikes (PSs) by the delivery of high-frequency stimulation (HFS, 100 pulses at 100 Hz) to CA1 synapses, and was reversed by the delivery of a train of low-frequency stimulation (LFS, 1000…
Descriptors: Brain, Animals, Brain Hemisphere Functions, Stimuli
Taylor, William W.; Imhoff, Barry R.; Sathi, Zakia Sultana; Liu, Wei Y.; Garza, Kristie M.; Dias, Brian G. – Learning & Memory, 2021
Dysfunctions in memory recall lead to pathological fear; a hallmark of trauma-related disorders, like posttraumatic stress disorder (PTSD). Both, heightened recall of an association between a cue and trauma, as well as impoverished recall that a previously trauma-related cue is no longer a threat, result in a debilitating fear toward the cue.…
Descriptors: Brain, Memory, Recall (Psychology), Brain Hemisphere Functions
Goto, Jun-Ichi; Fujii, Satoshi; Fujiwara, Hiroki; Mikoshiba, Katsuhiko; Yamazaki, Yoshihiko – Learning & Memory, 2022
In hippocampal CA1 neurons of wild-type mice, a short tetanus (15 or 20 pulses at 100 Hz) or a standard tetanus (100 pulses at 100 Hz) to a naive input pathway induces long-term potentiation (LTP) of the responses. Low-frequency stimulation (LFS; 1000 pulses at 1 Hz) 60 min after the standard tetanus reverses LTP (depotentiation [DP]), while LFS…
Descriptors: Animals, Brain Hemisphere Functions, Stimuli, Neurology
da Silva, Thiago Rodrigues; Sohn, Jeferson Machado Batista; Andreatini, Roberto; Stern, Cristina Aparecida – Learning & Memory, 2020
Reconsolidation is a time-limited process under which reactivated memory content can be modified. Works focused on studying reconsolidation mainly restrict intervention to the moments immediately after reactivation and to recently acquired memories. However, the brain areas activated during memory retrieval depend on when it was acquired, and it…
Descriptors: Brain, Brain Hemisphere Functions, Fear, Memory
Cowan, Emily T.; Liu, Anli A.; Henin, Simon; Kothare, Sanjeev; Devinsky, Orrin; Davachi, Lila – Learning & Memory, 2021
Research has shown that sleep is beneficial for the long-term retention of memories. According to theories of memory consolidation, memories are gradually reorganized, becoming supported by widespread, distributed cortical networks, particularly during postencoding periods of sleep. However, the effects of sleep on the organization of memories in…
Descriptors: Time, Memory, Brain, Sleep
Butler, Anderson A.; Sanchez, Richard G.; Jarome, Timothy J.; Webb, William M.; Lubin, Farah D. – Learning & Memory, 2019
O-GlcNAcylation of serine/threonine residues on target proteins occurs dynamically in postmitotic neurons of the hippocampus and may serve to control both the stability and activity of target proteins. Remarkably, the addition and removal of the O-GlcNAc posttranslational modifications are catalyzed by a pair of enzymes, the O-GlcNAc transferase…
Descriptors: Genetics, Fear, Memory, Brain
Beamish, Sarah B.; Gross, Kellie S.; Anderson, McKenna M.; Helmstetter, Fred J.; Frick, Karyn M. – Learning & Memory, 2022
The ubiquitin proteasome system (UPS) is a primary mechanism through which proteins are degraded in cells. UPS activity in the dorsal hippocampus (DH) is necessary for multiple types of memory, including object memory, in male rodents. However, sex differences in DH UPS activation after fear conditioning suggest that other forms of learning may…
Descriptors: Gender Differences, Cognitive Processes, Animals, Memory
Sahoo, Biswaranjan; Sharma, Shiv K. – Learning & Memory, 2022
A critical role of protein modifications such as phosphorylation and acetylation in synaptic plasticity and memory is well documented. Tyrosine sulfation plays important roles in several biological processes. However, its role in synaptic plasticity and memory is not well understood. Here, we show that sulfation contributes to long-term…
Descriptors: Long Term Memory, Biochemistry, Brain Hemisphere Functions, Spatial Ability
Vasudevan, Krithika; Ramanathan, Karthik R.; Vierkant, Valerie; Maren, Stephen – Learning & Memory, 2022
Recent data reveal that the thalamic nucleus reuniens (RE) has a critical role in the extinction of conditioned fear. Muscimol (MUS) infusions into the RE impair within-session extinction of conditioned freezing and result in poor long-term extinction memories in rats. Although this suggests that RE inactivation impairs extinction learning, it is…
Descriptors: Brain Hemisphere Functions, Conditioning, Fear, Animals
Sayegh, Fares; Herraiz, Laurie; Colom, Morgane; Lopez, Sébastien; Rampon, Claire; Dahan, Lionel – Learning & Memory, 2022
Dopamine participates in encoding memories and could either encode rewarding/aversive value of unconditioned stimuli or act as a novelty signal triggering contextual learning. Here we show that intraperitoneal injection of the dopamine D1/5R antagonist SCH23390 impairs contextual fear conditioning and tone-shock association, while intrahippocampal…
Descriptors: Cognitive Processes, Memory, Fear, Conditioning
Carbone, Julia; Bibián, Carlos; Reischl, Patrick; Born, Jan; Forcato, Cecilia; Diekelmann, Susanne – Learning & Memory, 2021
According to the active system consolidation theory, memory consolidation during sleep relies on the reactivation of newly encoded memory representations. This reactivation is orchestrated by the interplay of sleep slow oscillations, spindles, and theta, which are in turn modulated by certain neurotransmitters like GABA to enable long-lasting…
Descriptors: Drug Therapy, Memory, Sleep, Brain
Ostroff, Linnaea E.; Cain, Christopher K. – Learning & Memory, 2022
Local protein synthesis at synapses can provide a rapid supply of proteins to support synaptic changes during consolidation of new memories, but its role in the maintenance or updating of established memories is unknown. Consolidation requires new protein synthesis in the period immediately following learning, whereas established memories are…
Descriptors: Long Term Memory, Associative Learning, Brain, Cognitive Processes
Low, Sock Ching; Verschure, Paul F. M. J.; Santos-Pata, Diogo – Learning & Memory, 2022
Working memory has been shown to rely on theta oscillations' phase synchronicity for item encoding and recall. At the same time, saccadic eye movements during visual exploration have been observed to trigger theta-phase resets, raising the question of whether the neuronal substrates of mnemonic processing rely on motor-evoked responses. To…
Descriptors: Short Term Memory, Recall (Psychology), Eye Movements, Interference (Learning)