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Network (Bristol, England)|September 21, 2001
Characterizing the sparseness of neural codesB Willmore, D J TolhurstPerception|January 6, 2001
A comparison of natural-image-based models of simple-cell codingB Willmore, P A Watters, D J TolhurstVisual Neuroscience|January 1, 1989
The amount of information transmitted about contrast by neurones in the cat's visual cortexD J TolhurstThe Journal of Physiology|June 1, 1973
Separate channels for the analysis of the shape and the movement of moving visual stimulusD J TolhurstThe Journal of Physiology|October 1, 1972
Adaptation to square-wave gratings: inhibition between spatial frequency channels in the human visual systemD J TolhurstPerception|January 1, 1997
Discrimination of changes in the slopes of the amplitude spectra of natural images: band-limited contrast and psychometric functionsD J Tolhurst, Y TadmorVision Research|August 6, 2005
Accuracy of identification of grating contrast by human observers: Bayesian models of V1 contrast processing show correspondence between discrimination and identification performanceM Chirimuuta, D J TolhurstPerception|January 6, 2001
Discrimination of spectrally blended natural images: optimisation of the human visual system for encoding natural imagesD J Tolhurst, Y TadmorHuman Neurobiology|January 1, 1988
Magnification factors and the organization of the human striate cortexD J Tolhurst, L LingVision Research|August 6, 2005
Does a Bayesian model of V1 contrast coding offer a neurophysiological account of human contrast discrimination?M Chirimuuta, D J TolhurstPageof 9