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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
Honda, Takato – Learning & Memory, 2022
Neural network dynamics underlying flexible animal behaviors remain elusive. The fruit fly "Drosophila" melanogaster is considered an excellent model in behavioral neuroscience because of its simple neuroanatomical architecture and the availability of various genetic methods. Moreover, "Drosophila" larvae's transparent body…
Descriptors: Neurological Organization, Animals, Neurosciences, Behavior
Dunn, Tyler W.; Sossin, Wayne S. – Learning & Memory, 2021
A more thorough description of the changes in synaptic strength underlying synaptic plasticity may be achieved with quantal resolution measurements at individual synaptic sites. Here, we demonstrate that by using a membrane targeted genetic calcium sensor, we can measure quantal synaptic events at the individual synaptic sites of…
Descriptors: Neurological Organization, Animals, Measurement, Memory
Jin, Iksung; Kassabov, Stefan; Kandel, Eric R.; Hawkins, Robert D. – Learning & Memory, 2021
Most studies of molecular mechanisms of synaptic plasticity have focused on the sequence of changes either at individual synapses or in the cell nucleus. However, studies of long-term facilitation at "Aplysia" sensory neuron--motor neuron synapses in isolated cell culture suggest two additional features of facilitation. First, that there…
Descriptors: Animals, Neurological Organization, Molecular Structure, Physiology
Briggs, Sherri B.; Hannapel, Reilly; Ramesh, Janavi; Parent, Marise B. – Learning & Memory, 2021
Research into the neural mechanisms that underlie higher-order cognitive control of eating behavior suggests that ventral hippocampal (vHC) neurons, which are critical for emotional memory, also inhibit energy intake. We showed previously that optogenetically inhibiting vHC glutamatergic neurons during the early postprandial period, when the…
Descriptors: Neurological Organization, Brain Hemisphere Functions, Inhibition, Energy
Adrià Rofes; Magdalena Beran; Roel Jonkers; Mirjam I. Geerlings; Jet M. J. Vonk – Journal of Speech, Language, and Hearing Research, 2023
Purpose: In this study, we aim to understand whether and how performance in animal fluency (i.e., total correct word count) relates to linguistic levels and/or executive functions by looking at sequence information and item-level metrics (i.e., clusters, switches, and word properties). Method: Seven hundred thirty-one Dutch-speaking individuals…
Descriptors: Indo European Languages, Language Skills, Executive Function, Animals
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
Costa, Renan M.; Baxter, Douglas A.; Byrne, John H. – Learning & Memory, 2020
Operant reward learning of feeding behavior in "Aplysia" increases the frequency and regularity of biting, as well as biases buccal motor patterns (BMPs) toward ingestion-like BMPs (iBMPs). The engram underlying this memory comprises cells that are part of a central pattern generating (CPG) circuit and includes increases in the intrinsic…
Descriptors: Memory, Brain Hemisphere Functions, Neurological Organization, Operant Conditioning
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
Badwal, Areen; Poertner, JoHanna; Samlan, Robin A.; Miller, Julie E. – Journal of Speech, Language, and Hearing Research, 2019
Purpose: The zebra finch is used as a model to study the neural circuitry of auditory-guided human vocal production. The terminology of birdsong production and acoustic analysis, however, differs from human voice production, making it difficult for voice researchers of either species to navigate the literature from the other. The purpose of this…
Descriptors: Animals, Neurological Organization, Auditory Perception, Acoustics
Gobin, Christina; Wu, Lizhen; Schwendt, Marek – Learning & Memory, 2020
The delayed match-to-sample task (DMS) is used to probe working memory (WM) across species. While the involvement of the PFC in this task has been established, limited information exists regarding the recruitment of broader circuitry, especially under the low- versus high-WM load. We sought to address this question by using a variable-delay…
Descriptors: Animals, Short Term Memory, Brain Hemisphere Functions, Training
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
Arkell, Daisy; Groves, Isabelle; Wood, Emma R.; Hardt, Oliver – Learning & Memory, 2021
Reducing sensory experiences during the period that immediately follows learning improves long-term memory retention in healthy humans, and even preserves memory in patients with amnesia. To date, it is entirely unclear why this is the case, and identifying the neurobiological mechanisms underpinning this effect requires suitable animal models,…
Descriptors: Sensory Experience, Long Term Memory, Learning, Neurological Organization
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
Dolleman-van der Weel, Margriet J.; Griffin, Amy L.; Ito, Hiroshi T.; Shapiro, Matthew L.; Witter, Menno P.; Vertes, Robert P.; Allen, Timothy A. – Learning & Memory, 2019
The nucleus reuniens of the thalamus (RE) is a key component of an extensive network of hippocampal and cortical structures and is a fundamental substrate for cognition. A common misconception is that RE is a simple relay structure. Instead, a better conceptualization is that RE is a critical component of a canonical higher-order…
Descriptors: Brain Hemisphere Functions, Neurological Impairments, Anatomy, Physiology