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Abram Akopian
Abram Akopian
Research Professor SUNY College of Optometry
sunyopt.edu의 이메일 확인됨
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Somatostatin modulates voltage-gated K+ and Ca2+ currents in rod and cone photoreceptors of the salamander retina
A Akopian, J Johnson, R Gabriel, N Brecha, P Witkovsky
Journal of Neuroscience 20 (3), 929-936, 2000
1322000
CaV1.3 L-type Ca2+ channels modulate depression-like behaviour in mice independent of deaf phenotype
P Busquet, N Khoi Nguyen, E Schmid, N Tanimoto, MW Seeliger, ...
International Journal of Neuropsychopharmacology 13 (4), 499-513, 2010
1282010
Gain of rod to horizontal cell synaptic transfer: relation to glutamate release and a dihydropyridine-sensitive calcium current
P Witkovsky, Y Schmitz, A Akopian, D Krizaj, D Tranchina
Journal of Neuroscience 17 (19), 7297-7306, 1997
1081997
D2 dopamine receptor-mediated inhibition of a hyperpolarization-activated current in rod photoreceptors
A Akopian, P Witkovsky
Journal of Neurophysiology 76 (3), 1828-1835, 1996
891996
Gap junction-mediated death of retinal neurons is connexin and insult specific: a potential target for neuroprotection
A Akopian, T Atlasz, F Pan, S Wong, Y Zhang, B Völgyi, DL Paul, ...
Journal of Neuroscience 34 (32), 10582-10591, 2014
722014
Calcium Released From Intracellular Stores Inhibits GABAA-Mediated Currents in Ganglion Cells of the Turtle Retina
A Akopian, R Gabriel, P Witkovsky
Journal of Neurophysiology 80 (3), 1105-1115, 1998
651998
Activity-dependent phosphorylation of tyrosine hydroxylase in dopaminergic neurons of the rat retina
P Witkovsky, E Veisenberger, JW Haycock, A Akopian, A Garcia-Espana, ...
Journal of Neuroscience 24 (17), 4242-4249, 2004
582004
Amacrine cells coupled to ganglion cells via gap junctions are highly vulnerable in glaucomatous mouse retinas
A Akopian, S Kumar, H Ramakrishnan, S Viswanathan, SA Bloomfield
Journal of Comparative Neurology 527 (1), 159-173, 2019
552019
Calcium and retinal function
A Akopian, P Witkovsky
Molecular neurobiology 25, 113-132, 2002
532002
Actin filaments regulate voltage-gated ion channels in salamander retinal ganglion cells
T Schubert, A Akopian
Neuroscience 125 (3), 583-590, 2004
502004
Feedback from luminosity horizontal cells mediates depolarizing responses of chromaticity horizontal cells in the Xenopus retina.
P Witkovsky, R Gabriel, D Krizaj, A Akopian
Proceedings of the National Academy of Sciences 92 (8), 3556-3560, 1995
501995
The effects of L-glutamate, AMPA, quisqualate, and kainate on retinal horizontal cells depend on adaptational state: implications for rod-cone interactions
D Krizaj, A Akopian, P Witkovsky
Journal of Neuroscience 14 (9), 5661-5671, 1994
481994
Masked excitatory crosstalk between the ON and OFF visual pathways in the mammalian retina
R Farajian, F Pan, A Akopian, B Völgyi, SA Bloomfield
The Journal of physiology 589 (18), 4473-4489, 2011
452011
Calcium homeostasis and cone signaling are regulated by interactions between calcium stores and plasma membrane ion channels
T Szikra, P Barabas, TM Bartoletti, W Huang, A Akopian, WB Thoreson, ...
PloS one 4 (8), e6723, 2009
452009
Targeting neuronal gap junctions in mouse retina offers neuroprotection in glaucoma
A Akopian, S Kumar, H Ramakrishnan, K Roy, S Viswanathan, ...
The Journal of Clinical Investigation 127 (7), 2647-2661, 2017
422017
Calcium channel and glutamate receptor activities regulate actin organization in salamander retinal neurons
M Cristofanilli, A Akopian
The Journal of physiology 575 (2), 543-554, 2006
422006
Activation of metabotropic glutamate receptors decreases a high-threshold calcium current in spiking neurons of the Xenopus retina
A Akopian, P Witkovsky
Visual neuroscience 13 (3), 549-557, 1996
411996
Effects of background illuminations on the receptive field size of horizontal cells in the turtle retina are mediated by dopamine
R Weiler, A Akopian
Neuroscience letters 140 (1), 121-124, 1992
381992
Disruption of actin cytoskeleton causes internalization of Ca (v) 1.3 (alpha 1D) L-type calcium channels in salamander retinal neurons
M Cristofanilli, F Mizuno, A Akopian
Mol Vis 13, 1496-1507, 2007
332007
Both high-and low voltage-activated calcium currents contribute to the light-evoked responses of luminosity horizontal cells in the Xenopus retina
A Akopian, D Krizaj, P Witkovsky
Brain research 762 (1-2), 121-130, 1997
301997
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학술자료 1–20