Publication Date
In 2025 | 0 |
Since 2024 | 0 |
Since 2021 (last 5 years) | 1 |
Since 2016 (last 10 years) | 5 |
Since 2006 (last 20 years) | 22 |
Descriptor
Animals | 28 |
Neurological Organization | 28 |
Neurology | 28 |
Brain Hemisphere Functions | 14 |
Brain | 13 |
Memory | 13 |
Physiology | 9 |
Spatial Ability | 6 |
Stimulation | 6 |
Genetics | 5 |
Stimuli | 5 |
More ▼ |
Author
Publication Type
Journal Articles | 26 |
Reports - Research | 19 |
Reports - Descriptive | 5 |
Dissertations/Theses -… | 2 |
Reports - Evaluative | 2 |
Education Level
Audience
Location
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
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
Farah, Carole A.; Hastings, Margaret H.; Dunn, Tyler W.; Gong, Katrina; Baker-Andresen, Danay; Sossin, Wayne S. – Learning & Memory, 2017
Atypical PKM, a persistently active form of atypical PKC, is proposed to be a molecular memory trace, but there have been few examinations of the role of PKMs generated from other PKCs. We demonstrate that inhibitors used to inhibit PKMs generated from atypical PKCs are also effective inhibitors of other PKMs. In contrast, we demonstrate that…
Descriptors: Memory, Brain, Neurological Organization, Neurology
Fujii, Satoshi; Yamazaki, Yoshihiko; Goto, Jun-Ichi; Fujiwara, Hiroki; Mikoshiba, Katsuhiko – Learning & Memory, 2016
We investigated the role of inositol 1,4,5-trisphosphate receptors (IP3Rs) activated by preconditioning low-frequency afferent stimulation (LFS) in the subsequent induction of long-term potentiation (LTP) in CA1 neurons in hippocampal slices from mature guinea pigs. Induction of LTP in the field excitatory postsynaptic potential or the population…
Descriptors: Conditioning, Stimulation, Neurological Organization, Brain Hemisphere Functions
le Feber, Joost; Witteveen, Tim; van Veenendaal, Tamar M.; Dijkstra, Jelle – Learning & Memory, 2015
During systems consolidation, memories are spontaneously replayed favoring information transfer from hippocampus to neocortex. However, at present no empirically supported mechanism to accomplish a transfer of memory from hippocampal to extra-hippocampal sites has been offered. We used cultured neuronal networks on multielectrode arrays and…
Descriptors: Memory, Brain Hemisphere Functions, Neurological Organization, Networks
Mason, Maria J.; Watkins, Amanda J.; Wakabayashi, Jordann; Buechler, Jennifer; Pepino, Christine; Brown, Michelle; Wright, William G. – Learning & Memory, 2014
Previous research on sensitization in "Aplysia" was based entirely on unnatural noxious stimuli, usually electric shock, until our laboratory found that a natural noxious stimulus, a single sublethal lobster attack, causes short-term sensitization. We here extend that finding by demonstrating that multiple lobster attacks induce…
Descriptors: Stimuli, Animals, Neurological Organization, Responses
Vernon, Jeffrey; Irvine, Elaine E.; Peters, Marco; Jeyabalan, Jeshmi; Giese, K. Peter – Learning & Memory, 2016
Phosphorylation is a ubiquitous post-translational modification of proteins, and a known physiological regulator of K[superscript +] channel function. Phosphorylation of K[superscript +] channels by kinases has long been presumed to regulate neuronal processing and behavior. Although circumstantial evidence has accumulated from behavioral studies…
Descriptors: Physiology, Neurological Organization, Cognitive Processes, Genetics
Novitskaya, Yulia; Sara, Susan J.; Logothetis, Nikos K.; Eschenko, Oxana – Learning & Memory, 2016
Experience-induced replay of neuronal ensembles occurs during hippocampal high-frequency oscillations, or ripples. Post-learning increase in ripple rate is predictive of memory recall, while ripple disruption impairs learning. Ripples may thus present a fundamental component of a neurophysiological mechanism of memory consolidation. In addition to…
Descriptors: Brain Hemisphere Functions, Memory, Recall (Psychology), Interference (Learning)
Cicchese, Joseph J.; Darling, Ryan D.; Berry, Stephen D. – Learning & Memory, 2015
Eyeblink conditioning given in the explicit presence of hippocampal ? results in accelerated learning and enhanced multiple-unit responses, with slower learning and suppression of unit activity under non-? conditions. Recordings from putative pyramidal cells during ?-contingent training show that pretrial ?-state is linked to the probability of…
Descriptors: Animals, Research, Brain Hemisphere Functions, Learning Processes
Villers, Agnès; Giese, Karl Peter; Ris, Lauerence – Learning & Memory, 2014
a-calcium/calmodulin-dependent protein kinase (aCaMKII) T286-autophosphorylation provides a short-term molecular memory that was thought to be required for LTP and for learning and memory. However, it has been shown that learning can occur in aCaMKII-T286A mutant mice after a massed training protocol. This raises the question of whether there…
Descriptors: Memory, Animals, Brain Hemisphere Functions, Learning
Pu, Lu; Kopec, Ashley M.; Boyle, Heather D.; Carew, Thomas J. – Learning & Memory, 2014
Neurotrophins are critically involved in developmental processes such as neuronal cell survival, growth, and differentiation, as well as in adult synaptic plasticity contributing to learning and memory. Our previous studies examining neurotrophins and memory formation in "Aplysia" showed that a TrkB ligand is required for MAPK…
Descriptors: Brain, Memory, Learning Processes, Neurological Organization
Jalil, Sajiya J.; Sacktor, Todd Charlton; Shouval, Harel Z. – Learning & Memory, 2015
Memories that last a lifetime are thought to be stored, at least in part, as persistent enhancement of the strength of particular synapses. The synaptic mechanism of these persistent changes, late long-term potentiation (L-LTP), depends on the state and number of specific synaptic proteins. Synaptic proteins, however, have limited dwell times due…
Descriptors: Long Term Memory, Brain Hemisphere Functions, Neurological Organization, Maintenance
Drew, Liam J.; Fusi, Stefano; Hen, René – Learning & Memory, 2013
In the adult mammalian brain, newly generated neurons are continuously incorporated into two networks: interneurons born in the subventricular zone migrate to the olfactory bulb, whereas the dentate gyrus (DG) of the hippocampus integrates locally born principal neurons. That the rest of the mammalian brain loses significant neurogenic capacity…
Descriptors: Brain Hemisphere Functions, Adults, Neurological Organization, Olfactory Perception
Klappenbach, Martin; Maldonado, Hector; Locatelli, Fernando; Kaczer, Laura – Learning & Memory, 2012
The understanding of how the reinforcement is represented in the central nervous system during memory formation is a current issue in neurobiology. Several studies in insects provide evidence of the instructive role of biogenic amines during the learning and memory process. In insects it was widely accepted that dopamine (DA) mediates aversive…
Descriptors: Stimuli, Neurology, Adjustment (to Environment), Memory
Vieira, Philip A.; Lovelace, Jonathan W.; Corches, Alex; Rashid, Asim J.; Josselyn, Sheena A.; Korzus, Edward – Learning & Memory, 2014
The neural mechanisms underlying the attainment of fear memory accuracy for appropriate discriminative responses to aversive and nonaversive stimuli are unclear. Considerable evidence indicates that coactivator of transcription and histone acetyltransferase cAMP response element binding protein (CREB) binding protein (CBP) is critically required…
Descriptors: Neurological Organization, Neurology, Fear, Memory
Li, Qin; Burrell, Brian D. – Learning & Memory, 2011
Persistent, bidirectional changes in synaptic signaling (that is, potentiation and depression of the synapse) can be induced by the precise timing of individual pre- and postsynaptic action potentials. However, far less attention has been paid to the ability of paired trains of action potentials to elicit persistent potentiation or depression. We…
Descriptors: Intervals, Neurological Organization, Brain Hemisphere Functions, Animals
Previous Page | Next Page »
Pages: 1 | 2