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Bisaz, Reto; Bessières, Benjamin; Miranda, Janelle M.; Travaglia, Alessio; Alberini, Cristina M. – Learning & Memory, 2021
Episodic memories formed during infancy are rapidly forgotten, a phenomenon associated with infantile amnesia, the inability of adults to recall early-life memories. In both rats and mice, infantile memories, although not expressed, are actually stored long term in a latent form. These latent memories can be reinstated later in life by certain…
Descriptors: Recall (Psychology), Infants, Long Term Memory, Adults
Butler, Christopher W.; Keiser, Ashley A.; Kwapis, Janine L.; Berchtold, Nicole C.; Wall, Vanessa L.; Wood, Marcelo A.; Cotman, Carl W. – Learning & Memory, 2019
The beneficial effects of exercise on cognition are well established; however specific exercise parameters regarding the frequency and duration of physical activity that provide optimal cognitive health have not been well defined. Here, we explore the effects of the duration of exercise and sedentary periods on long-term object location memory…
Descriptors: Exercise, Cognitive Development, Physical Activities, Memory
Bessières, Benjamin; Jia, Margaret; Travaglia, Alessio; Alberini, Cristina M. – Learning & Memory, 2019
The basolateral complex of amygdala (BLA) processes emotionally arousing aversive and rewarding experiences. The BLA is critical for acquisition and storage of threat-based memories and the modulation of the consolidation of arousing explicit memories, that is, the memories that are encoded and stored by the medial temporal lobe. In addition, in…
Descriptors: Brain, Animals, Memory, Individual Development
Stern, Sarah A.; Chen, Dillon Y.; Alberini, Cristina M. – Learning & Memory, 2014
Recent work has reported that the insulin-like growth factor 2 (IGF2) promotes memory enhancement. Furthermore, impaired insulin or IGF1 functions have been suggested to play a role in the pathogenesis of neurodegeneration and cognitive impairments, hence implicating the insulin/IGF system as an important target for cognitive enhancement and/or…
Descriptors: Memory, Drug Use, Neurological Impairments, Cognitive Development
Wang, Szu-Han; Tse, Dorothy; Morris, Richard G. M. – Learning & Memory, 2012
In humans and in animals, mental schemas can store information within an associative framework that enables rapid and efficient assimilation of new information. Using a hippocampal-dependent paired-associate task, we now report that the anterior cingulate cortex is part of a neocortical network of schema storage with NMDA receptor-mediated…
Descriptors: Animals, Learning Processes, Human Body, Brain
Leach, Prescott T.; Poplawski, Shane G.; Kenney, Justin W.; Hoffman, Barbara; Liebermann, Dan A.; Abel, Ted; Gould, Thomas J. – Learning & Memory, 2012
Growth arrest and DNA damage-inducible [beta] ("Gadd45b") has been shown to be involved in DNA demethylation and may be important for cognitive processes. "Gadd45b" is abnormally expressed in subjects with autism and psychosis, two disorders associated with cognitive deficits. Furthermore, several high-throughput screens have identified "Gadd45b"…
Descriptors: Genetics, Brain, Animals, Fear
Raineki, Charlis; Shionoya, Kiseko; Sander, Kristin; Sullivan, Regina M. – Learning & Memory, 2009
Both odor-preference and odor-aversion learning occur in perinatal pups before the maturation of brain structures that support this learning in adults. To characterize the development of odor learning, we compared three learning paradigms: (1) odor-LiCl (0.3M; 1% body weight, ip) and (2) odor-1.2-mA shock (hindlimb, 1sec)--both of which…
Descriptors: Olfactory Perception, Cognitive Development, Animals, Age Differences
A Semi-Persistent Adult Ocular Dominance Plasticity in Visual Cortex Is Stabilized by Activated CREB
Barco, Angel; Kandel, Eric R.; Gordon, Barbara; Lickey, Marvin E.; Suzuki, Seigo; Pham, Tony A.; Graham, Sarah J. – Learning & Memory, 2004
The adult cerebral cortex can adapt to environmental change. Using monocular deprivation as a paradigm, we find that rapid experience-dependent plasticity exists even in the mature primary visual cortex. However, adult cortical plasticity differs from developmental plasticity in two important ways. First, the effect of adult, but not juvenile…
Descriptors: Age Differences, Animals, Visual Stimuli, Science Experiments

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