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Zimmermann, Josua; Bach, Dominik R. – Learning & Memory, 2020
A reminder can render consolidated memory labile and susceptible to amnesic agents during a reconsolidation window. For the case of threat memory (also termed fear memory), it has been suggested that extinction training during this reconsolidation window has the same disruptive impact. This procedure could provide a powerful therapeutic principle…
Descriptors: Physiology, Responses, Conditioning, Eye Movements
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Tomasetto, Carlo; Morsanyi, Kinga; Guardabassi, Veronica; O'Connor, Patrick A. – Journal of Educational Psychology, 2021
Whereas some evidence exists that math anxiety may interfere with math performance from the very beginning of primary school, no study to date has attempted to investigate whether math anxiety may also interfere with early math learning (i.e., the encoding of new math knowledge) and not only with recalling already mastered contents in test…
Descriptors: Foreign Countries, Mathematics Anxiety, Elementary School Students, Interference (Learning)
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Monti, Roque I. Ferrer; Alfei, Joaquin M.; Mugnaini, Matias; Bueno, Adrian M.; Beckers, Tom; Urcelay, Gonzalo P.; Molina, Victor A. – Learning & Memory, 2017
Two experiments using rats in a contextual fear memory preparation compared two approaches to reduce conditioned fear: (1) pharmacological reconsolidation blockade and (2) reactivation-plus-extinction training. In Experiment 1, we explored different combinations of reactivation-plus-extinction parameters to reduce conditioned fear and attenuate…
Descriptors: Behavior, Fear, Memory, Drug Therapy
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Valle, Rebecca Della; Mohammadmirzaei, Negin; Knox, Dayan – Learning & Memory, 2019
Clinical and preclinical studies that have examined the neurobiology of persistent fear memory in posttraumatic stress disorder (PTSD) have focused on the medial prefrontal cortex, hippocampus, and amygdala. Sensory systems, the periaqueductal gray (PAG), and midline thalamic nuclei have been implicated in fear and extinction memory, but whether…
Descriptors: Stress Variables, Fear, Memory, Brain Hemisphere Functions
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Ocampo, Amber C.; Squire, Larry R.; Clark, Robert E. – Learning & Memory, 2018
Prior experience has been shown to improve learning in both humans and animals, but it is unclear what aspects of recent experience are necessary to produce beneficial effects. Here, we examined the capacity of rats with complete hippocampal lesions, restricted CA1 lesions, or sham surgeries to benefit from prior experience. Animals were tested in…
Descriptors: Prior Learning, Experience, Spatial Ability, Memory
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Huff, Mary L.; Emmons, Eric B.; Narayanan, Nandakumar S.; LaLumiere, Ryan T. – Learning & Memory, 2016
The basolateral amygdala (BLA) modulates memory consolidation for a variety of types of learning, whereas other brain regions play more selective roles in specific kinds of learning suggesting a role for differential consolidation via distinct BLA pathways. The ventral hippocampus (VH), an efferent target of the BLA, has been suggested to…
Descriptors: Memory, Learning Processes, Brain Hemisphere Functions, Animals
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Sanchez, Daniel J.; Reber, Paul J. – Cognition, 2013
Memory systems theory argues for separate neural systems supporting implicit and explicit memory in the human brain. Neuropsychological studies support this dissociation, but empirical studies of cognitively healthy participants generally observe that both kinds of memory are acquired to at least some extent, even in implicit learning tasks. A key…
Descriptors: Memory, Brain, Systems Approach, Training
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Salehi, Basira; Cordero, M. Isabel; Sandi, Carmen – Learning & Memory, 2010
Although the relationship between stress intensity and memory function is generally believed to follow an inverted-U-shaped curve, strikingly this phenomenon has not been demonstrated under the same experimental conditions. We investigated this phenomenon for rats' performance in a hippocampus-dependent learning task, the radial arm water maze…
Descriptors: Memory, Animals, Learning Processes, Stress Variables
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Canal, Clinton E.; Chang, Qing; Gold, Paul E. – Learning & Memory, 2008
Infusions of CREB antisense into the amygdala prior to training impair memory for aversive tasks, suggesting that the antisense may interfere with CRE-mediated gene transcription and protein synthesis important for the formation of new memories within the amygdala. However, the amygdala also appears to modulate memory formation in distributed…
Descriptors: Memory, Brain Hemisphere Functions, Role, Drug Use
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Havekes, Robbert; Nijholt, Ingrid M.; Luiten, Paul G. M.; Van der Zee, Eddy A. – Learning & Memory, 2006
The regulation and function of the calcium-dependent phosphatase calcineurin (CaN, protein phosphatase 2B) in learning and memory remain unclear, although recent work indicates that CaN may play a differential role in training and reversal training. To gain more insight into the involvement of CaN in these two types of learning, hippocampal CaN…
Descriptors: Memory, Biochemistry, Learning Processes, Training
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Florian, Cedrick; Mons, Nicole; Roullet, Pascal – Learning & Memory, 2006
The transcription factor cAMP response-element binding protein (CREB) has a pivotal role in hippocampal synaptic plasticity and hippocampus-dependent long-term memory. We recently demonstrated that the dorsal hippocampal CA3 region is involved in memory consolidation of spatial information tested on a Morris water maze in mice. To test whether…
Descriptors: Spatial Ability, Long Term Memory, Animals, Short Term Memory
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Kuriyama, Kenichi; Stickgold, Robert; Walker, Matthew P. – Learning & Memory, 2004
Learning of a procedural motor-skill task is known to progress through a series of unique memory stages. Performance initially improves during training, and continues to improve, without further rehearsal, across subsequent periods of sleep. Here, we investigate how this delayed sleep-dependent learning is affected when the task characteristics…
Descriptors: Sleep, Psychomotor Skills, Learning Processes, Memory
Horgan, Dianne; Morgan, David – 1986
Aspects of chess relevant to certain educational issues are explored. Based on findings from a sample of about 50 children from 6 to 18 years of age, discussion focuses on (1) how children play chess and how the process of acquiring expertise differs among children and adults, (2) chess training techniques and why they are effective with children,…
Descriptors: Adults, Age Differences, Children, Cognitive Ability
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Rosner, Sue R. – Journal of Experimental Child Psychology, 1971
Descriptors: Age Differences, Cognitive Processes, Elementary School Students, Junior High School Students
Adams, Wayne – 1970
Recent research has shown that certain stimuli are better remembered 6 months after initial exposure than after one week. An alternative explanation of these findings was tested. The explanation posited that the younger children "remember" as well at one week as 6 months later, but at the earlier testing many do not realize what aspect…
Descriptors: Cognitive Development, Learning Processes, Memory, Pictorial Stimuli
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