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Jee, Benjamin D.; Gentner, Dedre; Uttal, David H.; Sageman, Bradley; Forbus, Kenneth; Manduca, Cathryn A.; Ormand, Carol J.; Shipley, Thomas F.; Tikoff, Basil – Research in Science Education, 2014
Capturing the nature of students' mental representations and how they change with learning is a primary goal in science education research. This can be challenging in spatially intense domains, such as geoscience, architecture, and engineering. In this research, we test whether sketching can be used to gauge level of expertise in geoscience,…
Descriptors: Schemata (Cognition), Science Education, Educational Research, Spatial Ability
Nardi, Daniele; Newcombe, Nora S.; Shipley, Thomas F. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2011
Studies of spatial representation generally focus on flat environments and visual input. However, the world is not flat, and slopes are part of most natural environments. In a series of 4 experiments, we examined whether humans can use a slope as a source of allocentric, directional information for reorientation. A target was hidden in a corner of…
Descriptors: Spatial Ability, Gender Differences, Orientation, Navigation
Kellman, Philip J.; Garrigan, Patrick; Shipley, Thomas F.; Keane, Brian P. – Psychological Review, 2007
P. J. Kellman, P. Garrigan, & T. F. Shipley presented a theory of 3-D interpolation in object perception. Along with results from many researchers, this work supports an emerging picture of how the visual system connects separate visible fragments to form objects. In his commentary, B. L. Anderson challenges parts of that view, especially the idea…
Descriptors: Researchers, Mathematical Models, Visual Perception, Cognitive Processes
Kellman, Philip J.; Garrigan, Patrick; Shipley, Thomas F. – Psychological Review, 2005
Perception of objects in ordinary scenes requires interpolation processes connecting visible areas across spatial gaps. Most research has focused on 2-D displays, and models have been based on 2-D, orientation-sensitive units. The authors present a view of interpolation processes as intrinsically 3-D and producing representations of contours and…
Descriptors: Visual Perception, Cognitive Processes, Spatial Ability, Theories
Palmer, Evan M.; Kellman, Philip J.; Shipley, Thomas F. – Journal of Experimental Psychology: General, 2006
Humans see whole objects from input fragmented in space and time, yet spatiotemporal object perception is poorly understood. The authors propose the theory of spatiotemporal relatability (STR), which describes the visual information and processes that allow visible fragments revealed at different times and places, due to motion and occlusion, to…
Descriptors: Visual Perception, Spatial Ability, Theories, Prediction
Kellman, Philip J.; Garrigan, Patrick; Shipley, Thomas F.; Yin, Carol; Machado, Liana – Journal of Experimental Psychology: Human Perception and Performance, 2005
Object perception requires interpolation processes that connect visible regions despite spatial gaps. Some research has suggested that interpolation may be a 3-D process, but objective performance data and evidence about the conditions leading to interpolation are needed. The authors developed an objective performance paradigm for testing 3-D…
Descriptors: Cognitive Processes, Visual Perception, Spatial Ability, Computation