N Menger, H Wässle. Vis Neurosci 2000
Times Cited: 54
Times Cited: 54
Times Cited
Times Co-cited
Similarity
A17: a broad-field amacrine cell in the rod system of the cat retina.
R Nelson, H Kolb. J Neurophysiol 1985
R Nelson, H Kolb. J Neurophysiol 1985
55
Reciprocal synaptic interactions between rod bipolar cells and amacrine cells in the rat retina.
E Hartveit. J Neurophysiol 1999
E Hartveit. J Neurophysiol 1999
48
Fast neurotransmitter release triggered by Ca influx through AMPA-type glutamate receptors.
Andrés E Chávez, Joshua H Singer, Jeffrey S Diamond. Nature 2006
Andrés E Chávez, Joshua H Singer, Jeffrey S Diamond. Nature 2006
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Sustained Ca2+ entry elicits transient postsynaptic currents at a retinal ribbon synapse.
Joshua H Singer, Jeffrey S Diamond. J Neurosci 2003
Joshua H Singer, Jeffrey S Diamond. J Neurosci 2003
35
Extreme diversity among amacrine cells: implications for function.
M A MacNeil, R H Masland. Neuron 1998
M A MacNeil, R H Masland. Neuron 1998
31
Light-evoked responses of bipolar cells in a mammalian retina.
T Euler, R H Masland. J Neurophysiol 2000
T Euler, R H Masland. J Neurophysiol 2000
29
Rod vision: pathways and processing in the mammalian retina.
S A Bloomfield, R F Dacheux. Prog Retin Eye Res 2001
S A Bloomfield, R F Dacheux. Prog Retin Eye Res 2001
29
Retinal parallel processors: more than 100 independent microcircuits operate within a single interneuron.
William N Grimes, Jun Zhang, Cole W Graydon, Bechara Kachar, Jeffrey S Diamond. Neuron 2010
William N Grimes, Jun Zhang, Cole W Graydon, Bechara Kachar, Jeffrey S Diamond. Neuron 2010
27
Morphological identification of serotonin-accumulating neurons in the living retina.
D I Vaney. Science 1986
D I Vaney. Science 1986
24
Feedback inhibition in the inner plexiform layer underlies the surround-mediated responses of AII amacrine cells in the mammalian retina.
Béla Völgyi, Daiyan Xin, Stewart A Bloomfield. J Physiol 2002
Béla Völgyi, Daiyan Xin, Stewart A Bloomfield. J Physiol 2002
28
Confocal analysis of reciprocal feedback at rod bipolar terminals in the rabbit retina.
Jian Zhang, Wei Li, E Brady Trexler, Stephen C Massey. J Neurosci 2002
Jian Zhang, Wei Li, E Brady Trexler, Stephen C Massey. J Neurosci 2002
32
GABA(A), GABA(C) and glycine receptor-mediated inhibition differentially affects light-evoked signalling from mouse retinal rod bipolar cells.
Erika D Eggers, Peter D Lukasiewicz. J Physiol 2006
Erika D Eggers, Peter D Lukasiewicz. J Physiol 2006
24
The shapes and numbers of amacrine cells: matching of photofilled with Golgi-stained cells in the rabbit retina and comparison with other mammalian species.
M A MacNeil, J K Heussy, R F Dacheux, E Raviola, R H Masland. J Comp Neurol 1999
M A MacNeil, J K Heussy, R F Dacheux, E Raviola, R H Masland. J Comp Neurol 1999
20
Synaptic localization of NMDA receptor subunits in the rat retina.
E L Fletcher, I Hack, J H Brandstätter, H Wässle. J Comp Neurol 2000
E L Fletcher, I Hack, J H Brandstätter, H Wässle. J Comp Neurol 2000
20
Voltage- and transmitter-gated currents of all-amacrine cells in a slice preparation of the rat retina.
R Boos, H Schneider, H Wässle. J Neurosci 1993
R Boos, H Schneider, H Wässle. J Neurosci 1993
20
Synaptic connections of the narrow-field, bistratified rod amacrine cell (AII) in the rabbit retina.
E Strettoi, E Raviola, R F Dacheux. J Comp Neurol 1992
E Strettoi, E Raviola, R F Dacheux. J Comp Neurol 1992
20
Temporal contrast enhancement via GABAC feedback at bipolar terminals in the tiger salamander retina.
C J Dong, F S Werblin. J Neurophysiol 1998
C J Dong, F S Werblin. J Neurophysiol 1998
20
Different contributions of GABAA and GABAC receptors to rod and cone bipolar cells in a rat retinal slice preparation.
T Euler, H Wässle. J Neurophysiol 1998
T Euler, H Wässle. J Neurophysiol 1998
20
Temporal modulation of scotopic visual signals by A17 amacrine cells in mammalian retina in vivo.
Cun-Jian Dong, William A Hare. J Neurophysiol 2003
Cun-Jian Dong, William A Hare. J Neurophysiol 2003
23
BK channels modulate pre- and postsynaptic signaling at reciprocal synapses in retina.
William N Grimes, Wei Li, Andrés E Chávez, Jeffrey S Diamond. Nat Neurosci 2009
William N Grimes, Wei Li, Andrés E Chávez, Jeffrey S Diamond. Nat Neurosci 2009
20
Mechanisms underlying lateral GABAergic feedback onto rod bipolar cells in rat retina.
Andrés E Chávez, William N Grimes, Jeffrey S Diamond. J Neurosci 2010
Andrés E Chávez, William N Grimes, Jeffrey S Diamond. J Neurosci 2010
20
Synaptic connections of rod bipolar cells in the inner plexiform layer of the rabbit retina.
E Strettoi, R F Dacheux, E Raviola. J Comp Neurol 1990
E Strettoi, R F Dacheux, E Raviola. J Comp Neurol 1990
18
Bipolar cells use kainate and AMPA receptors to filter visual information into separate channels.
S H DeVries. Neuron 2000
S H DeVries. Neuron 2000
16
Control of dopamine release in the retina: a transgenic approach to neural networks.
S Gustincich, A Feigenspan, D K Wu, L J Koopman, E Raviola. Neuron 1997
S Gustincich, A Feigenspan, D K Wu, L J Koopman, E Raviola. Neuron 1997
16
A system of indoleamine-accumulating neurons in the rabbit retina.
J H Sandell, R H Masland. J Neurosci 1986
J H Sandell, R H Masland. J Neurosci 1986
16
Rod and cone pathways in the inner plexiform layer of cat retina.
H Kolb, E V Famiglietti. Science 1974
H Kolb, E V Famiglietti. Science 1974
16
16
GABAA and GABAC receptors on mammalian rod bipolar cells.
E L Fletcher, P Koulen, H Wässle. J Comp Neurol 1998
E L Fletcher, P Koulen, H Wässle. J Comp Neurol 1998
16
Types of bipolar cells in the mouse retina.
Krishna K Ghosh, Sascha Bujan, Silke Haverkamp, Andreas Feigenspan, Heinz Wässle. J Comp Neurol 2004
Krishna K Ghosh, Sascha Bujan, Silke Haverkamp, Andreas Feigenspan, Heinz Wässle. J Comp Neurol 2004
16
Receptor and transmitter release properties set the time course of retinal inhibition.
Erika D Eggers, Peter D Lukasiewicz. J Neurosci 2006
Erika D Eggers, Peter D Lukasiewicz. J Neurosci 2006
16
Presynaptic inhibition differentially shapes transmission in distinct circuits in the mouse retina.
Erika D Eggers, Maureen A McCall, Peter D Lukasiewicz. J Physiol 2007
Erika D Eggers, Maureen A McCall, Peter D Lukasiewicz. J Physiol 2007
16
Interneuron circuits tune inhibition in retinal bipolar cells.
Erika D Eggers, Peter D Lukasiewicz. J Neurophysiol 2010
Erika D Eggers, Peter D Lukasiewicz. J Neurophysiol 2010
16
Relationship between receptive and dendritic field size of amacrine cells in the rabbit retina.
S A Bloomfield. J Neurophysiol 1992
S A Bloomfield. J Neurophysiol 1992
14
Glycine and GABA receptors in the mammalian retina.
H Wässle, P Koulen, J H Brandstätter, E L Fletcher, C M Becker. Vision Res 1998
H Wässle, P Koulen, J H Brandstätter, E L Fletcher, C M Becker. Vision Res 1998
14
A combined Golgi and autoradiographic study of (3H)glycine-accumulating amacrine cells in the cat retina.
R G Pourcho, D J Goebel. J Comp Neurol 1985
R G Pourcho, D J Goebel. J Comp Neurol 1985
14
Connections of indoleamine-accumulating cells in the rabbit retina.
J H Sandell, R H Masland, E Raviola, R F Dacheux. J Comp Neurol 1989
J H Sandell, R H Masland, E Raviola, R F Dacheux. J Comp Neurol 1989
14
Elimination of the rho1 subunit abolishes GABA(C) receptor expression and alters visual processing in the mouse retina.
Maureen A McCall, Peter D Lukasiewicz, Ronald G Gregg, Neal S Peachey. J Neurosci 2002
Maureen A McCall, Peter D Lukasiewicz, Ronald G Gregg, Neal S Peachey. J Neurosci 2002
14
14
Synaptic clustering of GABA(C) receptor rho-subunits in the rat retina.
P Koulen, J H Brandstätter, R Enz, J Bormann, H Wässle. Eur J Neurosci 1998
P Koulen, J H Brandstätter, R Enz, J Bormann, H Wässle. Eur J Neurosci 1998
14
The dendritic varicosity: a mechanism for electrically isolating the dendrites of cat retinal amacrine cells?
S A Ellias, J K Stevens. Brain Res 1980
S A Ellias, J K Stevens. Brain Res 1980
14
Amacrine cells, bipolar cells and ganglion cells of the cat retina: a Golgi study.
H Kolb, R Nelson, A Mariani. Vision Res 1981
H Kolb, R Nelson, A Mariani. Vision Res 1981
12
14
A bistratified amacrine cell and synaptic cirucitry in the inner plexiform layer of the retina.
E V Famiglietti, H Kolb. Brain Res 1975
E V Famiglietti, H Kolb. Brain Res 1975
12
Indoleamine-accumulating amacrine cells are presynaptic to rod bipolar cells through GABA(C) receptors.
E L Fletcher, H Wässle. J Comp Neurol 1999
E L Fletcher, H Wässle. J Comp Neurol 1999
19
Effect of spike blockade on the receptive-field size of amacrine and ganglion cells in the rabbit retina.
S A Bloomfield. J Neurophysiol 1996
S A Bloomfield. J Neurophysiol 1996
12
Surround inhibition of mammalian AII amacrine cells is generated in the proximal retina.
S A Bloomfield, D Xin. J Physiol 2000
S A Bloomfield, D Xin. J Physiol 2000
12
Distinct ionotropic GABA receptors mediate presynaptic and postsynaptic inhibition in retinal bipolar cells.
C R Shields, M N Tran, R O Wong, P D Lukasiewicz. J Neurosci 2000
C R Shields, M N Tran, R O Wong, P D Lukasiewicz. J Neurosci 2000
12
AII (Rod) amacrine cells form a network of electrically coupled interneurons in the mammalian retina.
Margaret Lin Veruki, Espen Hartveit. Neuron 2002
Margaret Lin Veruki, Espen Hartveit. Neuron 2002
12
Co-cited is the co-citation frequency, indicating how many articles cite the article together with the query article. Similarity is the co-citation as percentage of the times cited of the query article or the article in the search results, whichever is the lowest. These numbers are calculated for the last 100 citations when articles are cited more than 100 times.