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Vision Research|March 1, 1994
The coding of spatial position by the human visual system: effects of spatial scale and retinal eccentricityR F Hess, A HayesVision Research|August 1, 1993
Neural recruitment explains "Weber's law" of spatial positionR F Hess, A HayesThe Journal of Physiology|February 1, 1986
Spatial and temporal properties of human rod vision in the achromatR F Hess, K NordbyAmerican Journal of Optometry and Physiological Optics|September 1, 1977
Do optical aberrations contribute to visual loss in strabismic amblyopia?R F Hess, G SmithNature|October 2, 1980
Contrast perception above threshold is only minimally impaired in human amblyopiaR F Hess, A BradleyVision Research|September 1, 1996
Positional loss in strabismic amblyopia: inter-relationship of alignment threshold, bias, spatial scale and eccentricityR Demanins, R F HessVision Research|December 1, 1996
Primitives used in the spatial localization of nonabutting stimuli: peaks or centroidsR F Hess, I HollidayVision Research|December 1, 1993
Is the increased spatial uncertainty in the normal periphery due to spatial undersampling or uncalibrated disarray?R F Hess, D FieldVision Research|April 1, 1996
Effect of exposure duration on spatial uncertainty in normal and amblyopic eyesR Demanins, R F HessPageof 18