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The Journal of Physiology|January 1, 1991
The influence of short-term adaptation of human rods and cones on cone-mediated grating visibilityF Naarendorp, T FrumkesVisual Neuroscience|February 18, 1999
The d-wave of the rod electroretinogram of rat originates in the cone pathwayF Naarendorp, G E WilliamsVision Research|January 1, 1991
The scotopic threshold response of the cat ERG is suppressed selectively by GABA and glycineF Naarendorp, P A SievingVisual Neuroscience|May 1, 1994
Push-pull model of the primate photopic electroretinogram: a role for hyperpolarizing neurons in shaping the b-waveP A Sieving, K Murayama, F NaarendorpVision Research|January 1, 1988
Rod light and dark adaptation influence cone-mediated spatial acuityF Naarendorp, N Denny, T E FrumkesJournal of Neurophysiology|October 1, 1993
Dopaminergic modulation of rod pathway signals does not affect the scotopic ERG of cat at dark-adapted thresholdF Naarendorp, P F Hitchock, P A SievingVision Research|January 1, 1986
The influence of cone adaptation upon rod mediated flickerT E Frumkes, F Naarendorp, S H GoldbergVision Research|September 1, 1996
Summation of rod and S cone signals at threshold in human observersF Naarendorp, K S Rice, P A SievingVisual Neuroscience|February 7, 2002
Absolute and relative sensitivity of the scotopic system of rat: electroretinography and behaviorF Naarendorp, Y Sato, A Cajdric, et al.Molecular Vision|March 23, 2001
RGS9-1 is required for normal inactivation of mouse cone phototransductionA L Lyubarsky, F Naarendorp, X Zhang, et al.Pageof 2