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Markant, Julie; Cicchetti, Dante; Hetzel, Susan; Thomas, Kathleen M. – Developmental Psychology, 2014
Early selective attention skills are a crucial building block for cognitive development, as attention orienting serves as a primary means by which infants interact with and learn from the environment. Although several studies have examined infants' attention orienting using the spatial cueing task, relatively few studies have examined…
Descriptors: Physiology, Neurology, Cognitive Development, Biochemistry
Moustafa, Ahmed A.; Gluck, Mark A. – Journal of Cognitive Neuroscience, 2011
Most existing models of dopamine and learning in Parkinson disease (PD) focus on simulating the role of basal ganglia dopamine in reinforcement learning. Much data argue, however, for a critical role for prefrontal cortex (PFC) dopamine in stimulus selection in attentional learning. Here, we present a new computational model that simulates…
Descriptors: Neurology, Patients, Reinforcement, Cognitive Development
Sinai, Laleh; Duffy, Steven; Roder, John C. – Learning & Memory, 2010
The Src protein tyrosine kinase plays a central role in the regulation of N-methyl-d-aspartate receptor (NMDAR) activity by regulating NMDAR subunit 2B (NR2B) surface expression. In the amygdala, NMDA-dependent synaptic plasticity resulting from convergent somatosensory and auditory inputs contributes to emotional memory; however, the role of Src…
Descriptors: Brain Hemisphere Functions, Biochemistry, Auditory Stimuli, Role
Miranda, Maria Isabel; Quirarte, Gina L.; Rodriguez-Garcia, Gabriela; McGaugh, James L.; Roozendaal, Benno – Learning & Memory, 2008
It is well established that glucocorticoid hormones strengthen the consolidation of hippocampus-dependent spatial and contextual memory. The present experiments investigated glucocorticoid effects on the long-term formation of conditioned taste aversion (CTA), an associative learning task that does not depend critically on hippocampal function.…
Descriptors: Stimuli, Associative Learning, Memory, Brain Hemisphere Functions
Brown, Travis E.; Lee, Brian R.; Sorg, Barbara A. – Learning & Memory, 2008
Recent research suggests that drug-related memories are reactivated after exposure to environmental cues and may undergo reconsolidation, a process that can strengthen memories. Conversely, reconsolidation may be disrupted by certain pharmacological agents such that the drug-associated memory is weakened. Several studies have demonstrated…
Descriptors: Cues, Cocaine, Animal Behavior, Zoology
Philippsen, Christine; Richter, Steffen; Bohringer, Andreas; Wippich, Werner; Schachinger, Hartmut; Schwabe, Lars; Oitzl, Melly S. – Learning & Memory, 2007
Animal studies provided evidence that stress modulates multiple memory systems, favoring caudate nucleus-based "habit" memory over hippocampus-based "cognitive" memory. However, effects of stress on learning strategy and memory consolidation were not differentiated. We specifically address the effects of psychosocial stress on the applied learning…
Descriptors: Gender Differences, Learning Strategies, Metabolism, Memory
Martel, Guillaume; Millard, Annabelle; Jaffard, Robert; Guillou, Jean-Louis – Learning & Memory, 2006
Procedural and declarative memory systems are postulated to interact in either a synergistic or a competitive manner, and memory consolidation appears to be a highly critical stage for this process. However, the precise cellular mechanisms subserving these interactions remain unknown. To investigate this issue, 24-h retention performances were…
Descriptors: Memory, Stimulation, Brain Hemisphere Functions, Cognitive Processes
Pych, Jason C.; Chang, Qing; Colon-Rivera, Cynthia; Haag, Renee; Gold, Paul E. – Learning & Memory, 2005
These experiments examined the release of acetylcholine in the hippocampus and striatum when rats were trained, within single sessions, on place or response versions of food-rewarded mazes. Microdialysis samples of extra-cellular fluid were collected from the hippocampus and striatum at 5-min increments before, during, and after training. These…
Descriptors: Cues, Time Factors (Learning), Responses, Animals

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