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Visual neuroscience

Showing results (401-410 of 2,286) with videos related to

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Visual Neuroscience|August 28, 2010
A new interpretation of components in the ERG signals to sine wave luminance stimuli at different temporal frequencies and contrastsGobinda Pangeni, Folkert K Horn, Jan Kremers
Visual Neuroscience|February 1, 1991
Spatial vision of the cat: variation with eccentricityT Pasternak, K Horn
Visual Neuroscience|February 1, 1991
Anatomical correlations between soma size, axon diameter, and intraretinal length for the alpha ganglion cells of the cat retinaT Fitzgibbon, K Funke, U T Eysel
Visual Neuroscience|March 1, 1991
Nonlinearity of the inhibition underlying retinal directional selectivityF R Amthor, N M Grzywacz
Visual Neuroscience|March 1, 1991
Synaptic organization of two types of amacrine cells with CRF-like immunoreactivity in the turtle retinaD E Williamson, W D Eldred
Visual Neuroscience|September 29, 2007
Dendritic impulse collisions and shifting sites of action potential initiation contract and extend the receptive field of an amacrine cellAudrey S Royer, Robert F Miller
Visual Neuroscience|April 7, 2006
Photic history modifies susceptibility to retinal damage in albino troutW Ted Allison, Ted E Hallows, Trudi Johnson, et al.
Visual Neuroscience|April 7, 2006
Long-term ERG analysis in the partially light-damaged mouse retina reveals regressive and compensatory changesAdam Richards, Alfred A Emondi, Baerbel Rohrer
Visual Neuroscience|July 16, 2009
Functional localization of the nitric oxide/cGMP pathway in the salamander retinaJan J Blom, Todd A Blute, William D Eldred
Visual Neuroscience|April 17, 2010
V1 orientation plasticity is explained by broadly tuned feedforward inputs and intracortical sharpeningAndrew F Teich, Ning Qian
Pageof 229

Showing results (401-410 of 2,286) with videos related to

Sort By:
Pageof 229
Visual Neuroscience|August 28, 2010
A new interpretation of components in the ERG signals to sine wave luminance stimuli at different temporal frequencies and contrastsGobinda Pangeni, Folkert K Horn, Jan Kremers
Visual Neuroscience|February 1, 1991
Spatial vision of the cat: variation with eccentricityT Pasternak, K Horn
Visual Neuroscience|February 1, 1991
Anatomical correlations between soma size, axon diameter, and intraretinal length for the alpha ganglion cells of the cat retinaT Fitzgibbon, K Funke, U T Eysel
Visual Neuroscience|March 1, 1991
Nonlinearity of the inhibition underlying retinal directional selectivityF R Amthor, N M Grzywacz
Visual Neuroscience|March 1, 1991
Synaptic organization of two types of amacrine cells with CRF-like immunoreactivity in the turtle retinaD E Williamson, W D Eldred
Visual Neuroscience|September 29, 2007
Dendritic impulse collisions and shifting sites of action potential initiation contract and extend the receptive field of an amacrine cellAudrey S Royer, Robert F Miller
Visual Neuroscience|April 7, 2006
Photic history modifies susceptibility to retinal damage in albino troutW Ted Allison, Ted E Hallows, Trudi Johnson, et al.
Visual Neuroscience|April 7, 2006
Long-term ERG analysis in the partially light-damaged mouse retina reveals regressive and compensatory changesAdam Richards, Alfred A Emondi, Baerbel Rohrer
Visual Neuroscience|July 16, 2009
Functional localization of the nitric oxide/cGMP pathway in the salamander retinaJan J Blom, Todd A Blute, William D Eldred
Visual Neuroscience|April 17, 2010
V1 orientation plasticity is explained by broadly tuned feedforward inputs and intracortical sharpeningAndrew F Teich, Ning Qian
Pageof 229