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Vision Research|January 20, 1999
When stereopsis does not improve with increasing contrastL M Wilcox, R F HessVision Research|July 6, 2000
What limits the contribution of second-order motion to the perception of surface shape?R F Hess, L R ZieglerVision Research|January 1, 1990
The contrast sensitivity gradient across the major oblique meridians of the human visual fieldJ S Pointer, R F HessVision Research|January 1, 1987
Evidence for spatially local computations underlying discrimination of periodic patterns in fovea and peripheryR F Hess, J S PointerVision Research|January 1, 1992
Temporal properties of human visual filters: number, shapes and spatial covariationR F Hess, R J SnowdenVision Research|January 1, 1992
Temporal frequency filters in the human peripheral visual fieldR J Snowden, R F HessOphthalmic & Physiological Optics : the Journal of the British College of Ophthalmic Opticians (Optometrists)|May 17, 2002
Temporal detection in human vision: dependence on eccentricityR F Hess, R E FredericksenVision Research|January 1, 1985
Temporal frequency discrimination in human vision: evidence for an additional mechanism in the low spatial and high temporal frequency regionR F Hess, G T PlantJournal of Neurology, Neurosurgery, and Psychiatry|April 1, 1983
The effect of temporal frequency variation on threshold contrast sensitivity deficits in optic neuritisR F Hess, G T PlantBrain : a Journal of Neurology|April 1, 1987
Regional threshold contrast sensitivity within the central visual field in optic neuritisG T Plant, R F HessPageof 15