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Huang, Tsung-Ren; Grossberg, Stephen – Psychological Review, 2010
How do humans use target-predictive contextual information to facilitate visual search? How are consistently paired scenic objects and positions learned and used to more efficiently guide search in familiar scenes? For example, humans can learn that a certain combination of objects may define a context for a kitchen and trigger a more efficient…
Descriptors: Visual Learning, Visual Perception, Brain, Cues
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Foley, Nicholas C.; Grossberg, Stephen; Mingolla, Ennio – Cognitive Psychology, 2012
How are spatial and object attention coordinated to achieve rapid object learning and recognition during eye movement search? How do prefrontal priming and parietal spatial mechanisms interact to determine the reaction time costs of intra-object attention shifts, inter-object attention shifts, and shifts between visible objects and covertly cued…
Descriptors: Priming, Cues, Reaction Time, Eye Movements
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Browning, N. Andrew; Grossberg, Stephen; Mingolla, Ennio – Cognitive Psychology, 2009
Visually-based navigation is a key competence during spatial cognition. Animals avoid obstacles and approach goals in novel cluttered environments using optic flow to compute heading with respect to the environment. Most navigation models try either explain data, or to demonstrate navigational competence in real-world environments without regard…
Descriptors: Optics, Visual Perception, Spatial Ability, Schemata (Cognition)
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Grossberg, Stephen; Rudd, Michael E. – Psychological Review, 1992
A large body of data is reviewed to support a new theory of motion perception described by S. Grossberg and M. E. Rudd (1989). The Motion Boundary Contour System is used to explain classical and recent data about motion perception that have not been explained by other models. (SLD)
Descriptors: Biological Influences, Cognitive Processes, Epistemology, Equations (Mathematics)