Eri Nishino, Rei Yamada, Hiroshi Kuba, Hiroyuki Hioki, Takahiro Furuta, Takeshi Kaneko, Harunori Ohmori. J Neurosci 2008
Times Cited: 59
Times Cited: 59
Times Cited
Times Co-cited
Similarity
Avian superior olivary nucleus provides divergent inhibitory input to parallel auditory pathways.
R Michael Burger, Karina S Cramer, Joshua D Pfeiffer, Edwin W Rubel. J Comp Neurol 2005
R Michael Burger, Karina S Cramer, Joshua D Pfeiffer, Edwin W Rubel. J Comp Neurol 2005
50
The superior olivary nucleus and its influence on nucleus laminaris: a source of inhibitory feedback for coincidence detection in the avian auditory brainstem.
L Yang, P Monsivais, E W Rubel. J Neurosci 1999
L Yang, P Monsivais, E W Rubel. J Neurosci 1999
44
The role of GABAergic inputs for coincidence detection in the neurones of nucleus laminaris of the chick.
K Funabiki, K Koyano, H Ohmori. J Physiol 1998
K Funabiki, K Koyano, H Ohmori. J Physiol 1998
37
A circuit for detection of interaural time differences in the brain stem of the barn owl.
C E Carr, M Konishi. J Neurosci 1990
C E Carr, M Konishi. J Neurosci 1990
37
Tonotopic specialization of auditory coincidence detection in nucleus laminaris of the chick.
Hiroshi Kuba, Rei Yamada, Iwao Fukui, Harunori Ohmori. J Neurosci 2005
Hiroshi Kuba, Rei Yamada, Iwao Fukui, Harunori Ohmori. J Neurosci 2005
37
Organization and development of brain stem auditory nuclei of the chicken: tonotopic organization of n. magnocellularis and n. laminaris.
E W Rubel, T N Parks. J Comp Neurol 1975
E W Rubel, T N Parks. J Comp Neurol 1975
35
Tolerance to sound intensity of binaural coincidence detection in the nucleus laminaris of the owl.
J L Peña, S Viete, Y Albeck, M Konishi. J Neurosci 1996
J L Peña, S Viete, Y Albeck, M Konishi. J Neurosci 1996
33
Precise inhibition is essential for microsecond interaural time difference coding.
Antje Brand, Oliver Behrend, Torsten Marquardt, David McAlpine, Benedikt Grothe. Nature 2002
Antje Brand, Oliver Behrend, Torsten Marquardt, David McAlpine, Benedikt Grothe. Nature 2002
32
GABAergic terminals in nucleus magnocellularis and laminaris originate from the superior olivary nucleus.
E A Lachica, R Rübsamen, E W Rubel. J Comp Neurol 1994
E A Lachica, R Rübsamen, E W Rubel. J Comp Neurol 1994
30
Maps of interaural time difference in the chicken's brainstem nucleus laminaris.
Christine Köppl, Catherine E Carr. Biol Cybern 2008
Christine Köppl, Catherine E Carr. Biol Cybern 2008
28
Improvement of phase information at low sound frequency in nucleus magnocellularis of the chicken.
Iwao Fukui, Tatsuo Sato, Harunori Ohmori. J Neurophysiol 2006
Iwao Fukui, Tatsuo Sato, Harunori Ohmori. J Neurophysiol 2006
36
28
GABAergic inhibition in nucleus magnocellularis: implications for phase locking in the avian auditory brainstem.
P Monsivais, L Yang, E W Rubel. J Neurosci 2000
P Monsivais, L Yang, E W Rubel. J Neurosci 2000
27
Response of binaural neurons of dog superior olivary complex to dichotic tonal stimuli: some physiological mechanisms of sound localization.
J M Goldberg, P B Brown. J Neurophysiol 1969
J M Goldberg, P B Brown. J Neurophysiol 1969
25
Accommodation enhances depolarizing inhibition in central neurons.
P Monsivais, E W Rubel. J Neurosci 2001
P Monsivais, E W Rubel. J Neurosci 2001
25
Heterogeneous kinetics and pharmacology of synaptic inhibition in the chick auditory brainstem.
Sidney P Kuo, Laura A Bradley, Laurence O Trussell. J Neurosci 2009
Sidney P Kuo, Laura A Bradley, Laurence O Trussell. J Neurosci 2009
34
Interaural time difference processing in the mammalian medial superior olive: the role of glycinergic inhibition.
Michael Pecka, Antje Brand, Oliver Behrend, Benedikt Grothe. J Neurosci 2008
Michael Pecka, Antje Brand, Oliver Behrend, Benedikt Grothe. J Neurosci 2008
23
A depolarizing inhibitory response to GABA in brainstem auditory neurons of the chick.
R L Hyson, A D Reyes, E W Rubel. Brain Res 1995
R L Hyson, A D Reyes, E W Rubel. Brain Res 1995
23
Segregation of stimulus phase and intensity coding in the cochlear nucleus of the barn owl.
W E Sullivan, M Konishi. J Neurosci 1984
W E Sullivan, M Konishi. J Neurosci 1984
22
Frequency-specific projections of individual neurons in chick brainstem auditory nuclei.
S R Young, E W Rubel. J Neurosci 1983
S R Young, E W Rubel. J Neurosci 1983
22
22
Interaural time sensitivity in medial superior olive of cat.
T C Yin, J C Chan. J Neurophysiol 1990
T C Yin, J C Chan. J Neurophysiol 1990
22
Effects of inhibitory feedback in a network model of avian brain stem.
Vasant K Dasika, John A White, Laurel H Carney, H Steven Colburn. J Neurophysiol 2005
Vasant K Dasika, John A White, Laurel H Carney, H Steven Colburn. J Neurophysiol 2005
48
Development of GABA immunoreactivity in brainstem auditory nuclei of the chick: ontogeny of gradients in terminal staining.
R A Code, G D Burd, E W Rubel. J Comp Neurol 1989
R A Code, G D Burd, E W Rubel. J Comp Neurol 1989
22
Axonal site of spike initiation enhances auditory coincidence detection.
Hiroshi Kuba, Takahiro M Ishii, Harunori Ohmori. Nature 2006
Hiroshi Kuba, Takahiro M Ishii, Harunori Ohmori. Nature 2006
22
Tonotopic gradients of membrane and synaptic properties for neurons of the chicken nucleus magnocellularis.
Iwao Fukui, Harunori Ohmori. J Neurosci 2004
Iwao Fukui, Harunori Ohmori. J Neurosci 2004
22
Distribution of GABAergic neurons and terminals in the auditory system of the barn owl.
C E Carr, I Fujita, M Konishi. J Comp Neurol 1989
C E Carr, I Fujita, M Konishi. J Comp Neurol 1989
22
In vivo transduction of central neurons using recombinant Sindbis virus: Golgi-like labeling of dendrites and axons with membrane-targeted fluorescent proteins.
T Furuta, R Tomioka, K Taki, K Nakamura, N Tamamaki, T Kaneko. J Histochem Cytochem 2001
T Furuta, R Tomioka, K Taki, K Nakamura, N Tamamaki, T Kaneko. J Histochem Cytochem 2001
22
Organization and development of brain stem auditory nuclei of the chicken: dendritic gradients in nucleus laminaris.
D J Smith, E W Rubel. J Comp Neurol 1979
D J Smith, E W Rubel. J Comp Neurol 1979
22
Characterization of outward currents in neurons of the avian nucleus magnocellularis.
M Rathouz, L Trussell. J Neurophysiol 1998
M Rathouz, L Trussell. J Neurophysiol 1998
20
A circuit for coding interaural time differences in the chick brainstem.
E M Overholt, E W Rubel, R L Hyson. J Neurosci 1992
E M Overholt, E W Rubel, R L Hyson. J Neurosci 1992
18
The role of dendrites in auditory coincidence detection.
H Agmon-Snir, C E Carr, J Rinzel. Nature 1998
H Agmon-Snir, C E Carr, J Rinzel. Nature 1998
18
18
Control of a depolarizing GABAergic input in an auditory coincidence detection circuit.
Zheng-Quan Tang, Hongxiang Gao, Yong Lu. J Neurophysiol 2009
Zheng-Quan Tang, Hongxiang Gao, Yong Lu. J Neurophysiol 2009
37
Mechanisms of sound localization in mammals.
Benedikt Grothe, Michael Pecka, David McAlpine. Physiol Rev 2010
Benedikt Grothe, Michael Pecka, David McAlpine. Physiol Rev 2010
18
Vesicular glutamate transporter 3-expressing nonserotonergic projection neurons constitute a subregion in the rat midbrain raphe nuclei.
Hiroyuki Hioki, Hisashi Nakamura, Yun-Fei Ma, Michiteru Konno, Takashi Hayakawa, Kouichi C Nakamura, Fumino Fujiyama, Takeshi Kaneko. J Comp Neurol 2010
Hiroyuki Hioki, Hisashi Nakamura, Yun-Fei Ma, Michiteru Konno, Takashi Hayakawa, Kouichi C Nakamura, Fumino Fujiyama, Takeshi Kaneko. J Comp Neurol 2010
18
A matter of time: internal delays in binaural processing.
Philip Joris, Tom C T Yin. Trends Neurosci 2007
Philip Joris, Tom C T Yin. Trends Neurosci 2007
16
Mixed excitatory and inhibitory GABA-mediated transmission in chick cochlear nucleus.
T Lu, L O Trussell. J Physiol 2001
T Lu, L O Trussell. J Physiol 2001
16
Hyperpolarization-activated cyclic nucleotide-gated cation channels regulate auditory coincidence detection in nucleus laminaris of the chick.
Rei Yamada, Hiroshi Kuba, Takahiro M Ishii, Harunori Ohmori. J Neurosci 2005
Rei Yamada, Hiroshi Kuba, Takahiro M Ishii, Harunori Ohmori. J Neurosci 2005
18
GABAergic neurons in brainstem auditory nuclei of the chick: distribution, morphology, and connectivity.
C S von Bartheld, R A Code, E W Rubel. J Comp Neurol 1989
C S von Bartheld, R A Code, E W Rubel. J Comp Neurol 1989
20
GABAergic inhibition sharpens the frequency tuning and enhances phase locking in chicken nucleus magnocellularis neurons.
Iwao Fukui, R Michael Burger, Harunori Ohmori, Edwin W Rubel. J Neurosci 2010
Iwao Fukui, R Michael Burger, Harunori Ohmori, Edwin W Rubel. J Neurosci 2010
32
GABAergic and glycinergic inhibition modulate monaural auditory response properties in the avian superior olivary nucleus.
W L Coleman, M J Fischl, S R Weimann, R M Burger. J Neurophysiol 2011
W L Coleman, M J Fischl, S R Weimann, R M Burger. J Neurophysiol 2011
38
Neurons in Golgi-stain-like images revealed by GFP-adenovirus infection in vivo.
N Tamamaki, K Nakamura, T Furuta, K Asamoto, T Kaneko. Neurosci Res 2000
N Tamamaki, K Nakamura, T Furuta, K Asamoto, T Kaneko. Neurosci Res 2000
16
Binaural characteristics of units in the owl's brainstem auditory pathway: precursors of restricted spatial receptive fields.
A Moiseff, M Konishi. J Neurosci 1983
A Moiseff, M Konishi. J Neurosci 1983
15
In vitro analysis of optimal stimuli for phase-locking and time-delayed modulation of firing in avian nucleus laminaris neurons.
A D Reyes, E W Rubel, W J Spain. J Neurosci 1996
A D Reyes, E W Rubel, W J Spain. J Neurosci 1996
15
The analysis of interaural time differences in the chick brain stem.
Richard L Hyson. Physiol Behav 2005
Richard L Hyson. Physiol Behav 2005
25
Synaptic depression improves coincidence detection in the nucleus laminaris in brainstem slices of the chick embryo.
Hiroshi Kuba, Konomi Koyano, Harunori Ohmori. Eur J Neurosci 2002
Hiroshi Kuba, Konomi Koyano, Harunori Ohmori. Eur J Neurosci 2002
15
Roles of axonal sodium channels in precise auditory time coding at nucleus magnocellularis of the chick.
Hiroshi Kuba, Harunori Ohmori. J Physiol 2009
Hiroshi Kuba, Harunori Ohmori. J Physiol 2009
15
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.