David K Ryugo, Thomas N Parks. Brain Res Bull 2003
Times Cited: 81
Times Cited: 81
Times Cited
Times Co-cited
Similarity
Auditory system development: primary auditory neurons and their targets.
Edwin W Rubel, Bernd Fritzsch. Annu Rev Neurosci 2002
Edwin W Rubel, Bernd Fritzsch. Annu Rev Neurosci 2002
29
Parallel auditory pathways: projection patterns of the different neuronal populations in the dorsal and ventral cochlear nuclei.
Nell B Cant, Christina G Benson. Brain Res Bull 2003
Nell B Cant, Christina G Benson. Brain Res Bull 2003
19
Morphology of primary axosomatic endings in the anteroventral cochlear nucleus of the cat: a study of the endbulbs of Held.
D K Ryugo, D M Fekete. J Comp Neurol 1982
D K Ryugo, D M Fekete. J Comp Neurol 1982
14
Auditory-nerve response from cats raised in a low-noise chamber.
M C Liberman. J Acoust Soc Am 1978
M C Liberman. J Acoust Soc Am 1978
14
Sequential alterations of neuronal architecture in nucleus magnocellularis of the developing chicken: a Golgi study.
S Jhaveri, D K Morest. Neuroscience 1982
S Jhaveri, D K Morest. Neuroscience 1982
14
Development of primary axosomatic endings in the anteroventral cochlear nucleus of mice.
C J Limb, D K Ryugo. J Assoc Res Otolaryngol 2000
C J Limb, D K Ryugo. J Assoc Res Otolaryngol 2000
15
The central projections of intracellularly labeled auditory nerve fibers in cats.
D M Fekete, E M Rouiller, M C Liberman, D K Ryugo. J Comp Neurol 1984
D M Fekete, E M Rouiller, M C Liberman, D K Ryugo. J Comp Neurol 1984
13
Math1 expression redefines the rhombic lip derivatives and reveals novel lineages within the brainstem and cerebellum.
Vincent Y Wang, Matthew F Rose, Huda Y Zoghbi. Neuron 2005
Vincent Y Wang, Matthew F Rose, Huda Y Zoghbi. Neuron 2005
12
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
12
Atoh1-lineal neurons are required for hearing and for the survival of neurons in the spiral ganglion and brainstem accessory auditory nuclei.
Stephen M Maricich, Anping Xia, Erin L Mathes, Vincent Y Wang, John S Oghalai, Bernd Fritzsch, Huda Y Zoghbi. J Neurosci 2009
Stephen M Maricich, Anping Xia, Erin L Mathes, Vincent Y Wang, John S Oghalai, Bernd Fritzsch, Huda Y Zoghbi. J Neurosci 2009
12
Synaptic responses and electrical properties of cells in brain slices of the mouse anteroventral cochlear nucleus.
D Oertel. J Neurosci 1983
D Oertel. J Neurosci 1983
11
Projections from the anteroventral cochlear nucleus to the lateral and medial superior olivary nuclei.
N B Cant, J H Casseday. J Comp Neurol 1986
N B Cant, J H Casseday. J Comp Neurol 1986
11
Embryonic origins of auditory brain-stem nuclei in the chick hindbrain.
K S Cramer, S E Fraser, E W Rubel. Dev Biol 2000
K S Cramer, S E Fraser, E W Rubel. Dev Biol 2000
15
What's a cerebellar circuit doing in the auditory system?
Donata Oertel, Eric D Young. Trends Neurosci 2004
Donata Oertel, Eric D Young. Trends Neurosci 2004
11
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
11
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
11
Assembly of the brainstem cochlear nuclear complex is revealed by intersectional and subtractive genetic fate maps.
Anna F Farago, Rajeshwar B Awatramani, Susan M Dymecki. Neuron 2006
Anna F Farago, Rajeshwar B Awatramani, Susan M Dymecki. Neuron 2006
11
The central projections of intracellularly labeled auditory nerve fibers in cats: an analysis of terminal morphology.
E M Rouiller, R Cronin-Schreiber, D M Fekete, D K Ryugo. J Comp Neurol 1986
E M Rouiller, R Cronin-Schreiber, D M Fekete, D K Ryugo. J Comp Neurol 1986
11
Mechanisms of sound localization in mammals.
Benedikt Grothe, Michael Pecka, David McAlpine. Physiol Rev 2010
Benedikt Grothe, Michael Pecka, David McAlpine. Physiol Rev 2010
11
A bushy cell network in the rat ventral cochlear nucleus.
Ricardo Gómez-Nieto, María E Rubio. J Comp Neurol 2009
Ricardo Gómez-Nieto, María E Rubio. J Comp Neurol 2009
18
Patterns of cell death in mouse anteroventral cochlear nucleus neurons after unilateral cochlea removal.
S P Mostafapour, S L Cochran, N M Del Puerto, E W Rubel. J Comp Neurol 2000
S P Mostafapour, S L Cochran, N M Del Puerto, E W Rubel. J Comp Neurol 2000
9
Development of vestibular afferent projections into the hindbrain and their central targets.
Adel Maklad, Bernd Fritzsch. Brain Res Bull 2003
Adel Maklad, Bernd Fritzsch. Brain Res Bull 2003
11
Short-term plasticity at the calyx of Held.
Henrique von Gersdorff, J Gerard G Borst. Nat Rev Neurosci 2002
Henrique von Gersdorff, J Gerard G Borst. Nat Rev Neurosci 2002
9
Evolutionary convergence and shared computational principles in the auditory system.
C E Carr, D Soares. Brain Behav Evol 2002
C E Carr, D Soares. Brain Behav Evol 2002
13
Morphological fate of rhombomeres in quail/chick chimeras: a segmental analysis of hindbrain nuclei.
F Marín, L Puelles. Eur J Neurosci 1995
F Marín, L Puelles. Eur J Neurosci 1995
9
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
9
9
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
9
The role of timing in the brain stem auditory nuclei of vertebrates.
D Oertel. Annu Rev Physiol 1999
D Oertel. Annu Rev Physiol 1999
9
Endbulbs of held and spherical bushy cells in cats: morphological correlates with physiological properties.
S Sento, D K Ryugo. J Comp Neurol 1989
S Sento, D K Ryugo. J Comp Neurol 1989
9
Projections of physiologically characterized spherical bushy cell axons from the cochlear nucleus of the cat: evidence for delay lines to the medial superior olive.
P H Smith, P X Joris, T C Yin. J Comp Neurol 1993
P H Smith, P X Joris, T C Yin. J Comp Neurol 1993
9
Restoration of auditory nerve synapses in cats by cochlear implants.
D K Ryugo, E A Kretzmer, J K Niparko. Science 2005
D K Ryugo, E A Kretzmer, J K Niparko. Science 2005
9
Inhibitory and excitatory subtypes of cochlear nucleus neurons are defined by distinct bHLH transcription factors, Ptf1a and Atoh1.
Tomoyuki Fujiyama, Mayumi Yamada, Mami Terao, Toshio Terashima, Hiroyuki Hioki, Yukiko U Inoue, Takayoshi Inoue, Norihisa Masuyama, Kunihiko Obata, Yuchio Yanagawa,[...]. Development 2009
Tomoyuki Fujiyama, Mayumi Yamada, Mami Terao, Toshio Terashima, Hiroyuki Hioki, Yukiko U Inoue, Takayoshi Inoue, Norihisa Masuyama, Kunihiko Obata, Yuchio Yanagawa,[...]. Development 2009
9
Classification of unit types in the anteroventral cochlear nucleus: PST histograms and regularity analysis.
C C Blackburn, M B Sachs. J Neurophysiol 1989
C C Blackburn, M B Sachs. J Neurophysiol 1989
8
Enhancement of neural synchronization in the anteroventral cochlear nucleus. I. Responses to tones at the characteristic frequency.
P X Joris, L H Carney, P H Smith, T C Yin. J Neurophysiol 1994
P X Joris, L H Carney, P H Smith, T C Yin. J Neurophysiol 1994
8
The bushy cells in the anteroventral cochlear nucleus of the cat. A study with the electron microscope.
N B Cant, D K Morest. Neuroscience 1979
N B Cant, D K Morest. Neuroscience 1979
8
Spatial shaping of cochlear innervation by temporally regulated neurotrophin expression.
I Fariñas, K R Jones, L Tessarollo, A J Vigers, E Huang, M Kirstein, D C de Caprona, V Coppola, C Backus, L F Reichardt,[...]. J Neurosci 2001
I Fariñas, K R Jones, L Tessarollo, A J Vigers, E Huang, M Kirstein, D C de Caprona, V Coppola, C Backus, L F Reichardt,[...]. J Neurosci 2001
8
Ultrastructural basis of synaptic transmission between endbulbs of Held and bushy cells in the rat cochlear nucleus.
Madeleine J Nicol, Bruce Walmsley. J Physiol 2002
Madeleine J Nicol, Bruce Walmsley. J Physiol 2002
9
Minimizing synaptic depression by control of release probability.
S Brenowitz, L O Trussell. J Neurosci 2001
S Brenowitz, L O Trussell. J Neurosci 2001
8
Tonotopic projection from the dorsal to the anteroventral cochlear nucleus of mice.
R E Wickesberg, D Oertel. J Comp Neurol 1988
R E Wickesberg, D Oertel. J Comp Neurol 1988
8
Relations between auditory nerve endings and cell types in the cat's anteroventral cochlear nucleus seen with the Golgi method and Nomarski optics.
J R Brawer, D K Morest. J Comp Neurol 1975
J R Brawer, D K Morest. J Comp Neurol 1975
8
Smaller inner ear sensory epithelia in Neurog 1 null mice are related to earlier hair cell cycle exit.
V Matei, S Pauley, S Kaing, D Rowitch, K W Beisel, K Morris, F Feng, K Jones, J Lee, B Fritzsch. Dev Dyn 2005
V Matei, S Pauley, S Kaing, D Rowitch, K W Beisel, K Morris, F Feng, K Jones, J Lee, B Fritzsch. Dev Dyn 2005
8
8
Central projections of auditory-nerve fibers of differing spontaneous rate. I. Anteroventral cochlear nucleus.
M C Liberman. J Comp Neurol 1991
M C Liberman. J Comp Neurol 1991
8
Response properties of single auditory nerve fibers in the mouse.
Annette M Taberner, M Charles Liberman. J Neurophysiol 2005
Annette M Taberner, M Charles Liberman. J Neurophysiol 2005
8
Auditory neurons make stereotyped wiring decisions before maturation of their targets.
Edmund J Koundakjian, Jessica L Appler, Lisa V Goodrich. J Neurosci 2007
Edmund J Koundakjian, Jessica L Appler, Lisa V Goodrich. J Neurosci 2007
8
Synaptic connections of the auditory nerve in cats: relationship between endbulbs of held and spherical bushy cells.
D K Ryugo, S Sento. J Comp Neurol 1991
D K Ryugo, S Sento. J Comp Neurol 1991
8
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.