Effect of retinal image motion on critical flicker-fusion measurement.

[1]  T. Wiesel Receptive fields of ganglion cells in the cat's retina , 1960, The Journal of physiology.

[2]  H. B. Barlow,et al.  Slippage of Contact Lenses and other Artefacts in Relation to Fading and Regeneration of Supposedly Stable Retinal Images , 1963 .

[3]  R. W. Ditchburn,et al.  Vision with controlled movements of the retinal image , 1959, The Journal of physiology.

[4]  L A RIGGS,et al.  Visual effects of varying the extent of compensation for eye movements. , 1959, Journal of the Optical Society of America.

[5]  D. H. Kelly,et al.  Effects of sharp edges in a flickering field. , 1959, Journal of the Optical Society of America.

[6]  D. H. Kelly Visual Signal Generator , 1961 .

[7]  D. H. Kelly Visual response to time-dependent stimuli. I. Amplitude sensitivity measurements. , 1961, Journal of the Optical Society of America.

[8]  Elek Ludvigh,et al.  Extrafoveal Visual Acuity as Measured with Snellen Test-Letters , 1941 .

[9]  P. Boyce Monocular fixation in human eye movement , 1967, Proceedings of the Royal Society of London. Series B. Biological Sciences.

[10]  G. M. Byram The Physical and Photochemical Basis of Visual Resolving PowerPart I. The Distribution of Illumination in Retinal Images , 1944 .

[11]  D. H. Kelly,et al.  Visual responses to time-dependent stimuli. IV. Effects of chromatic adaptation. , 1962, Journal of the Optical Society of America.

[12]  R. W. Ditchburn,et al.  Involuntary eye movements during fixation , 1953, The Journal of physiology.

[13]  R. W. Ditchburn,et al.  A NEW APPARATUS FOR PRODUCING A STABILIZED RETINAL IMAGE. , 1963, Optica acta.

[14]  H. D. L. Dzn Research into the dynamic nature of the human fovea-cortex systems with intermittent and modulated light. I. Attenuation characteristics with white and colored light. , 1958 .