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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
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Holloway, Ian D.; Ansari, Daniel – Journal of Cognitive Neuroscience, 2010
Because number is an abstract quality of a set, the way in which a number is externally represented does not change its quantitative meaning. In this study, we examined the development of the brain regions that support format-independent representation of numerical magnitude. We asked children and adults to perform both symbolic (Hindu-Arabic…
Descriptors: Brain Hemisphere Functions, Specialization, Cognitive Processes, Numbers
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Libertus, Melissa E.; Pruitt, Laura B.; Woldorff, Marty G.; Brannon, Elizabeth M. – Journal of Cognitive Neuroscience, 2009
Behavioral studies show that infants are capable of discriminating the number of objects or events in their environment, while also suggesting that number discrimination in infancy may be ratio-dependent. However, due to limitations of the dependent measures used with infant behavioral studies, the evidence for ratio dependence falls short of the…
Descriptors: Infants, Discrimination Learning, Brain Hemisphere Functions, Cognitive Processes
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Thomason, Moriah E.; Race, Elizabeth; Burrows, Brittany; Whitfield-Gabrieli, Susan; Glover, Gary H.; Gabrieli, John D. E. – Journal of Cognitive Neuroscience, 2009
A core aspect of working memory (WM) is the capacity to maintain goal-relevant information in mind, but little is known about how this capacity develops in the human brain. We compared brain activation, via fMRI, between children (ages 7-12 years) and adults (ages 20-29 years) performing tests of verbal and spatial WM with varying amounts (loads)…
Descriptors: Brain Hemisphere Functions, Short Term Memory, Brain, Spatial Ability