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Experimental Brain Research
|
January 1, 1981
Rabbit retinal ganglion cells. Receptive field classification and axonal conduction properties
D I Vaney, W R Levick, L N Thibos
The Journal of Comparative Neurology
|
August 8, 1991
Rod-signal interneurons in the rabbit retina: 2. AII amacrine cells
D I Vaney, I C Gynther, H M Young
Visual Neuroscience
|
July 1, 1991
The rod circuit in the rabbit retina
D I Vaney, H M Young, I C Gynther
Proceedings of the Royal Society of London. Series B, Biological Sciences
|
September 22, 1989
The morphology and topographic distribution of substance-P-like immunoreactive amacrine cells in the cat retina
D I Vaney, G E Whitington, H M Young
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience
|
December 16, 1998
Neurotransmitter coupling through gap junctions in the retina
D I Vaney, J C Nelson, D V Pow
Vision Research
|
December 1, 1993
The spatial organization of tyrosine hydroxylase-immunoreactive amacrine cells in the chicken retina and the consequences of myopia
E M Teakle, C F Wildsoet, D I Vaney
Brain Research
|
May 18, 1981
Almost all ganglion cells in the rabbit retina project to the superior colliculus
D I Vaney, L Peichl, H Wässle, et al.
Science (New York, N.Y.)
|
September 29, 2000
Dendritic computation of direction selectivity by retinal ganglion cells
W R Taylor, S He, W R Levick, et al.
Science (New York, N.Y.)
|
November 12, 1993
Unidirectional coupling of gap junctions between neuroglia
S R Robinson, E C Hampson, M N Munro, et al.
Visual Neuroscience
|
May 15, 2009
Distribution and structure of efferent synapses in the chicken retina
S H Lindstrom, N Nacsa, T Blankenship, et al.
Page
of 5
Search research articles
Search
Showing results (31-40 of 41) with videos related to
Sort By:
Page
of 5
Experimental Brain Research
|
January 1, 1981
Rabbit retinal ganglion cells. Receptive field classification and axonal conduction properties
D I Vaney, W R Levick, L N Thibos
The Journal of Comparative Neurology
|
August 8, 1991
Rod-signal interneurons in the rabbit retina: 2. AII amacrine cells
D I Vaney, I C Gynther, H M Young
Visual Neuroscience
|
July 1, 1991
The rod circuit in the rabbit retina
D I Vaney, H M Young, I C Gynther
Proceedings of the Royal Society of London. Series B, Biological Sciences
|
September 22, 1989
The morphology and topographic distribution of substance-P-like immunoreactive amacrine cells in the cat retina
D I Vaney, G E Whitington, H M Young
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience
|
December 16, 1998
Neurotransmitter coupling through gap junctions in the retina
D I Vaney, J C Nelson, D V Pow
Vision Research
|
December 1, 1993
The spatial organization of tyrosine hydroxylase-immunoreactive amacrine cells in the chicken retina and the consequences of myopia
E M Teakle, C F Wildsoet, D I Vaney
Brain Research
|
May 18, 1981
Almost all ganglion cells in the rabbit retina project to the superior colliculus
D I Vaney, L Peichl, H Wässle, et al.
Science (New York, N.Y.)
|
September 29, 2000
Dendritic computation of direction selectivity by retinal ganglion cells
W R Taylor, S He, W R Levick, et al.
Science (New York, N.Y.)
|
November 12, 1993
Unidirectional coupling of gap junctions between neuroglia
S R Robinson, E C Hampson, M N Munro, et al.
Visual Neuroscience
|
May 15, 2009
Distribution and structure of efferent synapses in the chicken retina
S H Lindstrom, N Nacsa, T Blankenship, et al.
Page
of 5