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P Witkovsky

Showing results (21-30 of 70) with videos related to

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Visual Neuroscience|March 1, 1992
Light-evoked contraction of red absorbing cones in the Xenopus retina is maximally sensitive to green lightJ C Besharse, P Witkovsky
Proceedings of the Royal Society of London. Series B, Biological Sciences|March 11, 1981
Synapse formation and modification between distal retinal neurons in larval and juvenile XenopusP Witkovsky, C C Powell
Experimental Eye Research|August 1, 1986
Glycogen metabolism in an amphibian retinaS S Goldman, P Witkovsky
Experimental Eye Research|January 1, 1987
Evidence for gluconeogenesis in the amphibian retinaS S Goldman, P Witkovsky
Journal of Neurocytology|December 1, 1976
Electron microscopic observations of the mesencephalic nucleus of the fifth nerve in the Selachian brainP Witkovsky, B L Roberts
The Journal of Physiology|June 1, 1972
Dogfish ganglion cell discharge resulting from extrinsic polarization of the horizontal cellsK I Naka, P Witkovsky
Visual Neuroscience|October 1, 1990
Slow light and dark adaptation of horizontal cells in the Xenopus retina: a role for endogenous dopamineP Witkovsky, X P Shi
The Journal of General Physiology|August 1, 1982
Transport and phosphorylation of 2-deoxy-D-glucose by amphibian retina. Effects of light and darknessP Witkovsky, C Y Yang
Journal of Comparative Physiology. A, Sensory, Neural, and Behavioral Physiology|May 1, 1990
Membrane currents of spiking cells isolated from turtle retinaE M Lasater, P Witkovsky
The Journal of Comparative Neurology|January 10, 1982
Uptake and localization of 3H-2 deoxy-D-glucose by retinal photoreceptorsP Witkovsky, C Y Yang
Pageof 7

Showing results (21-30 of 70) with videos related to

Sort By:
Pageof 7
Visual Neuroscience|March 1, 1992
Light-evoked contraction of red absorbing cones in the Xenopus retina is maximally sensitive to green lightJ C Besharse, P Witkovsky
Proceedings of the Royal Society of London. Series B, Biological Sciences|March 11, 1981
Synapse formation and modification between distal retinal neurons in larval and juvenile XenopusP Witkovsky, C C Powell
Experimental Eye Research|August 1, 1986
Glycogen metabolism in an amphibian retinaS S Goldman, P Witkovsky
Experimental Eye Research|January 1, 1987
Evidence for gluconeogenesis in the amphibian retinaS S Goldman, P Witkovsky
Journal of Neurocytology|December 1, 1976
Electron microscopic observations of the mesencephalic nucleus of the fifth nerve in the Selachian brainP Witkovsky, B L Roberts
The Journal of Physiology|June 1, 1972
Dogfish ganglion cell discharge resulting from extrinsic polarization of the horizontal cellsK I Naka, P Witkovsky
Visual Neuroscience|October 1, 1990
Slow light and dark adaptation of horizontal cells in the Xenopus retina: a role for endogenous dopamineP Witkovsky, X P Shi
The Journal of General Physiology|August 1, 1982
Transport and phosphorylation of 2-deoxy-D-glucose by amphibian retina. Effects of light and darknessP Witkovsky, C Y Yang
Journal of Comparative Physiology. A, Sensory, Neural, and Behavioral Physiology|May 1, 1990
Membrane currents of spiking cells isolated from turtle retinaE M Lasater, P Witkovsky
The Journal of Comparative Neurology|January 10, 1982
Uptake and localization of 3H-2 deoxy-D-glucose by retinal photoreceptorsP Witkovsky, C Y Yang
Pageof 7