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Stuart C. Mangel
Stuart C. Mangel
Professor of Neuroscience, Ohio State University
Verified email at osu.edu
Title
Cited by
Cited by
Year
Lateral interactions in the outer retina
WB Thoreson, SC Mangel
Progress in retinal and eye research 31 (5), 407-441, 2012
3132012
The circadian clock in the retina controls rod-cone coupling
C Ribelayga, Y Cao, SC Mangel
Neuron 59 (5), 790-801, 2008
2972008
Responsiveness and receptive field size of carp horizontal cells are reduced by prolonged darkness and dopamine
SC Mangel, JE Dowling
Science 229 (4718), 1107-1109, 1985
2441985
Analysis of the horizontal cell contribution to the receptive field surround of ganglion cells in the rabbit retina.
SC Mangel
The Journal of physiology 442 (1), 211-234, 1991
1811991
The interplexiform–horizontal cell system of the fish retina: effects of dopamine, light stimulation and time in the dark
SC Mangel, JE Dowling
Proceedings of the Royal society of London. Series B. Biological sciences …, 1987
1391987
A circadian clock in the fish retina regulates dopamine release via activation of melatonin receptors
C Ribelayga, Y Wang, SC Mangel
The Journal of physiology 554 (2), 467-482, 2004
1312004
Spatial and temporal sensitivity of X-and Y-cells in dorsal lateral geniculate nucleus of the cat
S Lehmkuhle, KE Kratz, SC Mangel, SM Sherman
Journal of neurophysiology 43 (2), 520-541, 1980
1231980
A circadian clock regulates rod and cone input to fish retinal cone horizontal cells.
Y Wang, SC Mangel
Proceedings of the National Academy of Sciences 93 (10), 4655-4660, 1996
1201996
Dopamine mediates circadian clock regulation of rod and cone input to fish retinal horizontal cells
C Ribelayga, Y Wang, SC Mangel
The Journal of physiology 544 (3), 801-816, 2002
1072002
Dendritic compartmentalization of chloride cotransporters underlies directional responses of starburst amacrine cells in retina
KE Gavrikov, JE Nilson, AV Dmitriev, CL Zucker, SC Mangel
Proceedings of the National Academy of Sciences 103 (49), 18793-18798, 2006
1022006
A circadian clock and light/dark adaptation differentially regulate adenosine in the mammalian retina
C Ribelayga, SC Mangel
Journal of Neuroscience 25 (1), 215-222, 2005
982005
Circadian clock regulation of pH in the rabbit retina
AV Dmitriev, SC Mangel
Journal of Neuroscience 21 (8), 2897-2902, 2001
982001
Cation–chloride cotransporters mediate neural computation in the retina
KE Gavrikov, AV Dmitriev, KT Keyser, SC Mangel
Proceedings of the National Academy of Sciences 100 (26), 16047-16052, 2003
872003
On the sensitivity of H1 horizontal cells of the carp retina to glutamate, aspartate and their agonists
M Ariel, EM Lasater, SC Mangel, JE Dowling
Brain Research 295 (1), 179-183, 1984
791984
Modulation of endogenous dopamine release in the fish retina by light and prolonged darkness
R Weiler, WH Baldridge, SC Mangel, JE Dowling
Visual neuroscience 14 (2), 351-356, 1997
641997
A circadian clock regulates the pH of the fish retina
AV Dmitriev, SC Mangel
The Journal of Physiology 522 (1), 77-82, 2000
622000
Effects of early monocular lid suture on spatial and temporal sensitivity of neurons in dorsal lateral geniculate nucleus of the cat
S Lehmkuhle, KE Kratz, SC Mangel, SM Sherman
Journal of neurophysiology 43 (2), 542-556, 1980
611980
Activation of a D2 receptor increases electrical coupling between retinal horizontal cells by inhibiting dopamine release.
K Harsanyi, SC Mangel
Proceedings of the National Academy of Sciences 89 (19), 9220-9224, 1992
601992
Horizontal cells contribute to the receptive field surround of ganglion cells in the rabbit retina
SC Mangel, RF Miller
Brain research 414 (1), 182-186, 1987
591987
Suppression by zinc of AMPA receptor-mediated synaptic transmission in the retina
DQ Zhang, C Ribelayga, SC Mangel, DG McMahon
Journal of neurophysiology 88 (3), 1245-1251, 2002
572002
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