C L Cox, S M Sherman. Neuron 2000
Times Cited: 79
Times Cited: 79
Times Cited
Times Co-cited
Similarity
Glutamate locally activates dendritic outputs of thalamic interneurons.
C L Cox, Q Zhou, S M Sherman. Nature 1998
C L Cox, Q Zhou, S M Sherman. Nature 1998
44
Synaptic connectivity of a local circuit neurone in lateral geniculate nucleus of the cat.
J E Hamos, S C Van Horn, D Raczkowski, D J Uhlrich, S M Sherman. Nature 1985
J E Hamos, S C Van Horn, D Raczkowski, D J Uhlrich, S M Sherman. Nature 1985
37
Synaptic activation of metabotropic glutamate receptors regulates dendritic outputs of thalamic interneurons.
Govindaiah, Charles L Cox. Neuron 2004
Govindaiah, Charles L Cox. Neuron 2004
57
Functional organization of thalamocortical relays.
S M Sherman, R W Guillery. J Neurophysiol 1996
S M Sherman, R W Guillery. J Neurophysiol 1996
30
Electrophysiological and pharmacological properties of interneurons in the cat dorsal lateral geniculate nucleus.
H C Pape, D A McCormick. Neuroscience 1995
H C Pape, D A McCormick. Neuroscience 1995
30
Ultrastructural localization suggests that retinal and cortical inputs access different metabotropic glutamate receptors in the lateral geniculate nucleus.
D W Godwin, S C Van Horn, A Eriir, M Sesma, C Romano, S M Sherman. J Neurosci 1996
D W Godwin, S C Van Horn, A Eriir, M Sesma, C Romano, S M Sherman. J Neurosci 1996
29
Electrophysiological and morphological properties of interneurones in the rat dorsal lateral geniculate nucleus in vitro.
S R Williams, J P Turner, C M Anderson, V Crunelli. J Physiol 1996
S R Williams, J P Turner, C M Anderson, V Crunelli. J Physiol 1996
27
Dendritic current flow in relay cells and interneurons of the cat's lateral geniculate nucleus.
S A Bloomfield, S M Sherman. Proc Natl Acad Sci U S A 1989
S A Bloomfield, S M Sherman. Proc Natl Acad Sci U S A 1989
28
24
Timing and specificity of feed-forward inhibition within the LGN.
Dawn M Blitz, Wade G Regehr. Neuron 2005
Dawn M Blitz, Wade G Regehr. Neuron 2005
24
Fine structural morphology of identified X- and Y-cells in the cat's lateral geniculate nucleus.
J R Wilson, M J Friedlander, S M Sherman. Proc R Soc Lond B Biol Sci 1984
J R Wilson, M J Friedlander, S M Sherman. Proc R Soc Lond B Biol Sci 1984
22
Evidence for presynaptic dendrites and a proposal for their mechanism of action.
H J Ralston. Nature 1971
H J Ralston. Nature 1971
21
Corticothalamic activation modulates thalamic firing through glutamate "metabotropic" receptors.
D A McCormick, M von Krosigk. Proc Natl Acad Sci U S A 1992
D A McCormick, M von Krosigk. Proc Natl Acad Sci U S A 1992
21
The synaptic glomerulus and the intrinsic neuron in the dorsal lateral geniculate nucleus of the cat.
E V Famiglietti, A Peters. J Comp Neurol 1972
E V Famiglietti, A Peters. J Comp Neurol 1972
21
Active dendritic conductances dynamically regulate GABA release from thalamic interneurons.
Claudio Acuna-Goycolea, Stephan D Brenowitz, Wade G Regehr. Neuron 2008
Claudio Acuna-Goycolea, Stephan D Brenowitz, Wade G Regehr. Neuron 2008
34
Thalamocortical oscillations in the sleeping and aroused brain.
M Steriade, D A McCormick, T J Sejnowski. Science 1993
M Steriade, D A McCormick, T J Sejnowski. Science 1993
20
The influence of GABAergic inhibitory processes on the receptive field structure of X and Y cells in cat dorsal lateral geniculate nucleus (dLGN).
A M Sillito, J A Kemp. Brain Res 1983
A M Sillito, J A Kemp. Brain Res 1983
20
Metabotropic glutamate receptors differentially regulate GABAergic inhibition in thalamus.
G Govindaiah, Charles L Cox. J Neurosci 2006
G Govindaiah, Charles L Cox. J Neurosci 2006
34
Relative distribution of synapses in the A-laminae of the lateral geniculate nucleus of the cat.
S C Van Horn, A Erişir, S M Sherman. J Comp Neurol 2000
S C Van Horn, A Erişir, S M Sherman. J Comp Neurol 2000
18
Immunocytochemistry and distribution of parabrachial terminals in the lateral geniculate nucleus of the cat: a comparison with corticogeniculate terminals.
A Erişir, S C Van Horn, M E Bickford, S M Sherman. J Comp Neurol 1997
A Erişir, S C Van Horn, M E Bickford, S M Sherman. J Comp Neurol 1997
17
The organization of synaptic interconnections in the laminae of the dorsal lateral geniculate nucleus of the cat.
R W Guillery. Z Zellforsch Mikrosk Anat 1969
R W Guillery. Z Zellforsch Mikrosk Anat 1969
17
GABAergic neurons in mammalian thalamus: a marker of thalamic complexity?
P Arcelli, C Frassoni, M C Regondi, S De Biasi, R Spreafico. Brain Res Bull 1997
P Arcelli, C Frassoni, M C Regondi, S De Biasi, R Spreafico. Brain Res Bull 1997
17
Burst firing in identified rat geniculate interneurons.
J J Zhu, D J Uhlrich, W W Lytton. Neuroscience 1999
J J Zhu, D J Uhlrich, W W Lytton. Neuroscience 1999
23
16
Localization of gamma-aminobutyric acid (GABA) in type 3 cells and demonstration of their source to F2 terminals in the cat lateral geniculate nucleus: a Golgi-electron-microscopic GABA-immunocytochemical study.
V M Montero. J Comp Neurol 1986
V M Montero. J Comp Neurol 1986
16
Characterization of sensory and corticothalamic excitatory inputs to rat thalamocortical neurones in vitro.
J P Turner, T E Salt. J Physiol 1998
J P Turner, T E Salt. J Physiol 1998
16
Thalamic relay functions and their role in corticocortical communication: generalizations from the visual system.
R W Guillery, S Murray Sherman. Neuron 2002
R W Guillery, S Murray Sherman. Neuron 2002
15
Inhibitory GABAergic control of visual signals at the lateral geniculate nucleus.
T T Norton, D W Godwin. Prog Brain Res 1992
T T Norton, D W Godwin. Prog Brain Res 1992
30
mGluR control of interneuron output regulates feedforward tonic GABAA inhibition in the visual thalamus.
Adam C Errington, Giuseppe Di Giovanni, Vincenzo Crunelli, David W Cope. J Neurosci 2011
Adam C Errington, Giuseppe Di Giovanni, Vincenzo Crunelli, David W Cope. J Neurosci 2011
42
An intrinsic oscillation in interneurons of the rat lateral geniculate nucleus.
J J Zhu, W W Lytton, J T Xue, D J Uhlrich. J Neurophysiol 1999
J J Zhu, W W Lytton, J T Xue, D J Uhlrich. J Neurophysiol 1999
25
Acetylcholine inhibits identified interneurons in the cat lateral geniculate nucleus.
D A McCormick, H C Pape. Nature 1988
D A McCormick, H C Pape. Nature 1988
13
Electrophysiological properties of guinea-pig thalamic neurones: an in vitro study.
H Jahnsen, R Llinás. J Physiol 1984
H Jahnsen, R Llinás. J Physiol 1984
13
13
The role of the thalamus in the flow of information to the cortex.
S Murray Sherman, R W Guillery. Philos Trans R Soc Lond B Biol Sci 2002
S Murray Sherman, R W Guillery. Philos Trans R Soc Lond B Biol Sci 2002
13
Somatosensory corticothalamic projections: distinguishing drivers from modulators.
Iva Reichova, S Murray Sherman. J Neurophysiol 2004
Iva Reichova, S Murray Sherman. J Neurophysiol 2004
13
Morphological correlates of triadic circuitry in the lateral geniculate nucleus of cats and rats.
Y-W Lam, C L Cox, C Varela, S Murray Sherman. J Neurophysiol 2005
Y-W Lam, C L Cox, C Varela, S Murray Sherman. J Neurophysiol 2005
64
Muscarinic regulation of dendritic and axonal outputs of rat thalamic interneurons: a new cellular mechanism for uncoupling distal dendrites.
J Zhu, P Heggelund. J Neurosci 2001
J Zhu, P Heggelund. J Neurosci 2001
35
Effects of bicuculline on signal detectability in lateral geniculate nucleus relay cells.
R N Holdefer, T T Norton, D W Godwin. Brain Res 1989
R N Holdefer, T T Norton, D W Godwin. Brain Res 1989
35
The role of gamma-aminobutyric acid mediated inhibition in the response properties of cat lateral geniculate nucleus neurones.
N Berardi, M C Morrone. J Physiol 1984
N Berardi, M C Morrone. J Physiol 1984
16
Mapping by laser photostimulation of connections between the thalamic reticular and ventral posterior lateral nuclei in the rat.
Ying-Wan Lam, S Murray Sherman. J Neurophysiol 2005
Ying-Wan Lam, S Murray Sherman. J Neurophysiol 2005
22
Cholinergic activation of M2 receptors leads to context-dependent modulation of feedforward inhibition in the visual thalamus.
Miklos Antal, Claudio Acuna-Goycolea, R Todd Pressler, Dawn M Blitz, Wade G Regehr. PLoS Biol 2010
Miklos Antal, Claudio Acuna-Goycolea, R Todd Pressler, Dawn M Blitz, Wade G Regehr. PLoS Biol 2010
45
Neurotransmitter actions in the thalamus and cerebral cortex and their role in neuromodulation of thalamocortical activity.
D A McCormick. Prog Neurobiol 1992
D A McCormick. Prog Neurobiol 1992
11
Synaptic circuits involving an individual retinogeniculate axon in the cat.
J E Hamos, S C Van Horn, D Raczkowski, S M Sherman. J Comp Neurol 1987
J E Hamos, S C Van Horn, D Raczkowski, S M Sherman. J Comp Neurol 1987
11
Metabotropic glutamate receptors switch visual response mode of lateral geniculate nucleus cells from burst to tonic.
D W Godwin, J W Vaughan, S M Sherman. J Neurophysiol 1996
D W Godwin, J W Vaughan, S M Sherman. J Neurophysiol 1996
11
Cellular mechanisms of a synchronized oscillation in the thalamus.
M von Krosigk, T Bal, D A McCormick. Science 1993
M von Krosigk, T Bal, D A McCormick. Science 1993
11
Effects of sleep and arousal on the processing of visual information in the cat.
M S Livingstone, D H Hubel. Nature 1981
M S Livingstone, D H Hubel. Nature 1981
11
Synaptic activation of the group I metabotropic glutamate receptor mGlu1 on the thalamocortical neurons of the rat dorsal lateral geniculate nucleus in vitro.
J P Turner, T E Salt. Neuroscience 2000
J P Turner, T E Salt. Neuroscience 2000
20
The structure of the dorsal lateral geniculate nucleus in the mouse. A Golgi and electron microscopic study.
J A Rafols, F Valverde. J Comp Neurol 1973
J A Rafols, F Valverde. J Comp Neurol 1973
11
Circuit analysis of experience-dependent plasticity in the developing rat barrel cortex.
Gordon M G Shepherd, Thomas A Pologruto, Karel Svoboda. Neuron 2003
Gordon M G Shepherd, Thomas A Pologruto, Karel Svoboda. Neuron 2003
11
Nicotinic receptor-mediated responses in relay cells and interneurons in the rat lateral geniculate nucleus.
J J Zhu, D J Uhlrich. Neuroscience 1997
J J Zhu, D J Uhlrich. Neuroscience 1997
19
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.