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The roles of static depth information and object-image relative motion in perception of heading
Christopher J Best1, Boris Crassini, Ross H Day
1School of Psychology, Deakin University, Burwood, Victoria, Australia. cjbest@deakin.edu.au
Abstract:
In a series of 6 experiments, two hypotheses were tested: that nominal heading perception is determined by the relative motion of images of objects positioned at different depths (R. F. Wang & J. E. Cutting, 1999) and that static depth information contributes to this determination. By manipulating static depth information while holding retinal-image motion constant during simulated self-movement, the authors found that static depth information played a role in determining perceived heading. Some support was also found for the involvement of R. F. Wang and J. E. Cutting's (1999) categories of object-image relative motion in determining perceived heading. However, results suggested an unexpected functional dominance of information about heading relative to apparently near objects.