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Konstantin Kaganovsky – ProQuest LLC, 2022
The brain must strike a balance between reliable information processing and adaptation to an ever-changing environment. At a gross anatomical level, the brain's wiring diagram is believed to be relatively set after development. Therefore, a fundamental question arises: how does stereotyped wiring lead to flexible dynamics, computation, and…
Descriptors: Brain Hemisphere Functions, Learning Processes, Brain, Behavior
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McHail, Daniel G.; Valibeigi, Nazanin; Dumas, Theodore C. – Learning & Memory, 2018
The neural bases of cognition may be greatly informed by relating temporally defined developmental changes in behavior with concurrent alterations in neural function. A robust improvement in performance in spatial learning and memory tasks occurs at 3 wk of age in rodents. We reported that the developmental increase of spontaneous alternation in a…
Descriptors: Spatial Ability, Memory, Animals, Brain Hemisphere Functions
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Satish S. Nair; Denis Paré; Aleksandra Vicentic – npj Science of Learning, 2016
The neuronal systems that promote protective defensive behaviours have been studied extensively using Pavlovian conditioning. In this paradigm, an initially neutral-conditioned stimulus is paired with an aversive unconditioned stimulus leading the subjects to display behavioural signs of fear. Decades of research into the neural bases of this…
Descriptors: Fear, Biology, Brain, Models
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Oros, Nicolas; Chiba, Andrea A.; Nitz, Douglas A.; Krichmar, Jeffrey L. – Learning & Memory, 2014
Learning to ignore irrelevant stimuli is essential to achieving efficient and fluid attention, and serves as the complement to increasing attention to relevant stimuli. The different cholinergic (ACh) subsystems within the basal forebrain regulate attention in distinct but complementary ways. ACh projections from the substantia innominata/nucleus…
Descriptors: Stimuli, Cognitive Processes, Attention, Brain Hemisphere Functions
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Lee, Inah; Shin, Ji Yun – Learning & Memory, 2012
The exact roles of the medial prefrontal cortex (mPFC) in conditional choice behavior are unknown and a visual contextual response selection task was used for examining the issue. Inactivation of the mPFC severely disrupted performance in the task. mPFC inactivations, however, did not disrupt the capability of perceptual discrimination for visual…
Descriptors: Visual Stimuli, Cues, Visual Perception, Task Analysis