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Showing 1 to 15 of 110 results Save | Export
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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
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Deirdre M. McCarthy; Thomas J. Spencer; Pradeep G. Bhide – Journal of Attention Disorders, 2024
Objective: We offer an overview of ADHD research using mouse models of nicotine exposure. Method: Nicotine exposure of C57BL/6 or Swiss Webster mice occurred during prenatal period only or during the prenatal and the preweaning periods. Behavioral, neuroanatomical and neurotransmitter assays were used to investigate neurobiological mechanisms of…
Descriptors: Models, Attention Deficit Hyperactivity Disorder, Smoking, Animals
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Ammassari-Teule, Martine – Learning & Memory, 2020
Largely inspired from clinical concepts like brain reserve, cognitive reserve, and neural compensation, here we review data showing how neural circuits reorganize in presymptomatic and early symptomatic hAPP mice to maintain memory intact. By informing on molecular alterations and compensatory adaptations which take place in the brain before mice…
Descriptors: Brain, Cognitive Processes, Neurological Organization, Animals
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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
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Zhang, Wen-Hua; Zhou, Jin; Pan, Han-Qing; Wang, Xiao-Yang; Liu, Wei-Zhu; Zhang, Jun-Yu; Yin, Xiao-Ping; Pan, Bing-Xing – Learning & Memory, 2017
The role of d subunit-containing GABA[subscript A] receptor (GABA[subscript A](d)R) in fear generalization is uncertain. Here, by using mice with or without genetic deletion of GABA[subscript A](d)R and using protocols in which the conditioned tone stimuli were cross presented with different nonconditioned stimuli, we observed that when the two…
Descriptors: Adults, Animals, Fear, Brain
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Steinmetz, Adam B.; Ng, Ka H.; Freeman, John H. – Learning & Memory, 2017
Amygdala lesions impair, but do not prevent, acquisition of cerebellum-dependent eyeblink conditioning suggesting that the amygdala modulates cerebellar learning. Two-factor theories of eyeblink conditioning posit that a fast-developing memory within the amygdala facilitates slower-developing memory within the cerebellum. The current study tested…
Descriptors: Memory, Brain, Neurological Organization, Learning
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Davies, Don A.; Hurtubise, Jessica L.; Greba, Quentin; Howland, John G. – Learning & Memory, 2017
The trial-unique, delayed nonmatching-to-location (TUNL) task is a recently developed behavioral task that measures spatial working memory and a form of pattern separation in touchscreen-equipped operant conditioning chambers. Limited information exists regarding the neurotransmitters and neural substrates involved in the task. The present…
Descriptors: Brain Hemisphere Functions, Brain, Short Term Memory, Neurological Organization
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Baker, Phillip M.; Ragozzino, Michael E. – Learning & Memory, 2014
Switches in reward outcomes or reward-predictive cues are two fundamental ways in which information is used to flexibly shift response patterns. The rat prelimbic cortex and dorsomedial striatum support behavioral flexibility based on a change in outcomes. The present experiments investigated whether these two brain regions are necessary for…
Descriptors: Brain, Animals, Cues, Rewards
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O'Dell, Thomas J.; Connor, Steven A.; Guglietta, Ryan; Nguyen, Peter V. – Learning & Memory, 2015
Encoding new information in the brain requires changes in synaptic strength. Neuromodulatory transmitters can facilitate synaptic plasticity by modifying the actions and expression of specific signaling cascades, transmitter receptors and their associated signaling complexes, genes, and effector proteins. One critical neuromodulator in the…
Descriptors: Cognitive Processes, Brain, Neurological Organization, Animals
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Venna, Venugopal Reddy; Benashski, Sharon E.; Chauhan, Anjali; McCullough, Louise D. – Learning & Memory, 2015
Memory deficits are common among stroke survivors. Identifying neuroprotective agents that can prevent memory impairment or improve memory recovery is a vital area of research. Glycogen synthase kinase-3ß (GSK-3ß) is involved in several essential intracellular signaling pathways. Unlike many other kinases, GSK-3ß is active only when…
Descriptors: Memory, Neurological Impairments, Brain, Neurological Organization
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Tayler, Kaycie K.; Wiltgen, Brian J. – Learning & Memory, 2013
According to the standard model of systems consolidation (SMC), neocortical circuits are reactivated during the retrieval of declarative memories. This process initially requires the hippocampus. However, with the passage of time, neocortical circuits become strengthened and can eventually retrieve memory without input from the hippocampus.…
Descriptors: Brain, Memory, Neurosciences, Neurological Organization
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Zhou, Hou-Cheng; Sun, Yan-Yan; Cai, Wei; He, Xiao-Ting; Yi, Feng; Li, Bao-Ming; Zhang, Xue-Han – Learning & Memory, 2013
The prefrontal cortex (PFC) plays a critical role in cognitive functions, including working memory, attention regulation, behavioral inhibition, as well as memory storage. The functions of PFC are very sensitive to norepinephrine (NE), and even low levels of endogenously released NE exert a dramatic influence on the functioning of the PFC.…
Descriptors: Animals, Brain, Memory, Neurological Organization
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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
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Jacobs, Stephanie; Wei, Wei; Wang, Deheng; Tsien, Joe Z. – Learning & Memory, 2015
The N-methyl-D-aspartate (NMDA) receptor is known to be necessary for many forms of learning and memory, including social recognition memory. Additionally, the GluN2 subunits are known to modulate multiple forms of memory, with a high GluN2A:GluN2B ratio leading to impairments in long-term memory, while a low GluN2A:GluN2B ratio enhances some…
Descriptors: Learning, Memory, Recognition (Psychology), Animals
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Cullen, Patrick K.; Dulka, Brooke N.; Ortiz, Samantha; Riccio, David C.; Jasnow, Aaron M. – Learning & Memory, 2014
Though much attention has been given to the neural structures that underlie the long-term consolidation of contextual memories, little is known about the mechanisms responsible for the maintenance of memory precision. Here, we demonstrate a rapid time-dependent decline in memory precision in GABA [subscript B(1a)] receptor knockout mice. First, we…
Descriptors: Inhibition, Long Term Memory, Cognitive Psychology, Neurological Organization
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