Muhammad S A Zilany, Ian C Bruce, Laurel H Carney. J Acoust Soc Am 2014
Times Cited: 125
Times Cited: 125
Times Cited
Times Co-cited
Similarity
A phenomenological model of the synapse between the inner hair cell and auditory nerve: long-term adaptation with power-law dynamics.
Muhammad S A Zilany, Ian C Bruce, Paul C Nelson, Laurel H Carney. J Acoust Soc Am 2009
Muhammad S A Zilany, Ian C Bruce, Paul C Nelson, Laurel H Carney. J Acoust Soc Am 2009
58
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
30
Modeling auditory-nerve responses for high sound pressure levels in the normal and impaired auditory periphery.
Muhammad S A Zilany, Ian C Bruce. J Acoust Soc Am 2006
Muhammad S A Zilany, Ian C Bruce. J Acoust Soc Am 2006
28
Representation of the vowel /epsilon/ in normal and impaired auditory nerve fibers: model predictions of responses in cats.
Muhammad S A Zilany, Ian C Bruce. J Acoust Soc Am 2007
Muhammad S A Zilany, Ian C Bruce. J Acoust Soc Am 2007
34
A phenomenological model of peripheral and central neural responses to amplitude-modulated tones.
Paul C Nelson, Laurel H Carney. J Acoust Soc Am 2004
Paul C Nelson, Laurel H Carney. J Acoust Soc Am 2004
24
A phenomenological model for the responses of auditory-nerve fibers: I. Nonlinear tuning with compression and suppression.
X Zhang, M G Heinz, I C Bruce, L H Carney. J Acoust Soc Am 2001
X Zhang, M G Heinz, I C Bruce, L H Carney. J Acoust Soc Am 2001
20
Neural processing of amplitude-modulated sounds.
P X Joris, C E Schreiner, A Rees. Physiol Rev 2004
P X Joris, C E Schreiner, A Rees. Physiol Rev 2004
19
Derivation of auditory filter shapes from notched-noise data.
B R Glasberg, B C Moore. Hear Res 1990
B R Glasberg, B C Moore. Hear Res 1990
18
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
18
Speech Coding in the Brain: Representation of Vowel Formants by Midbrain Neurons Tuned to Sound Fluctuations
Laurel H Carney, Tianhao Li, Joyce M McDonough. eNeuro 2015
Laurel H Carney, Tianhao Li, Joyce M McDonough. eNeuro 2015
52
Responses to amplitude-modulated tones in the auditory nerve of the cat.
P X Joris, T C Yin. J Acoust Soc Am 1992
P X Joris, T C Yin. J Acoust Soc Am 1992
17
A model for the responses of low-frequency auditory-nerve fibers in cat.
L H Carney. J Acoust Soc Am 1993
L H Carney. J Acoust Soc Am 1993
15
Supra-Threshold Hearing and Fluctuation Profiles: Implications for Sensorineural and Hidden Hearing Loss.
Laurel H Carney. J Assoc Res Otolaryngol 2018
Laurel H Carney. J Assoc Res Otolaryngol 2018
26
A cochlear frequency-position function for several species--29 years later.
D D Greenwood. J Acoust Soc Am 1990
D D Greenwood. J Acoust Soc Am 1990
14
The roles potassium currents play in regulating the electrical activity of ventral cochlear nucleus neurons.
Jason S Rothman, Paul B Manis. J Neurophysiol 2003
Jason S Rothman, Paul B Manis. J Neurophysiol 2003
14
Noise-induced cochlear neuropathy is selective for fibers with low spontaneous rates.
Adam C Furman, Sharon G Kujawa, M Charles Liberman. J Neurophysiol 2013
Adam C Furman, Sharon G Kujawa, M Charles Liberman. J Neurophysiol 2013
14
Effects of acoustic trauma on the representation of the vowel "eh" in cat auditory nerve fibers.
R L Miller, J R Schilling, K R Franck, E D Young. J Acoust Soc Am 1997
R L Miller, J R Schilling, K R Franck, E D Young. J Acoust Soc Am 1997
14
Revised estimates of human cochlear tuning from otoacoustic and behavioral measurements.
Christopher A Shera, John J Guinan, Andrew J Oxenham. Proc Natl Acad Sci U S A 2002
Christopher A Shera, John J Guinan, Andrew J Oxenham. Proc Natl Acad Sci U S A 2002
14
Cochlear neuropathy and the coding of supra-threshold sound.
Hari M Bharadwaj, Sarah Verhulst, Luke Shaheen, M Charles Liberman, Barbara G Shinn-Cunningham. Front Syst Neurosci 2014
Hari M Bharadwaj, Sarah Verhulst, Luke Shaheen, M Charles Liberman, Barbara G Shinn-Cunningham. Front Syst Neurosci 2014
13
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
13
Adding insult to injury: cochlear nerve degeneration after "temporary" noise-induced hearing loss.
Sharon G Kujawa, M Charles Liberman. J Neurosci 2009
Sharon G Kujawa, M Charles Liberman. J Neurosci 2009
13
A phenomenological model of the synapse between the inner hair cell and auditory nerve: Implications of limited neurotransmitter release sites.
Ian C Bruce, Yousof Erfani, Muhammad S A Zilany. Hear Res 2018
Ian C Bruce, Yousof Erfani, Muhammad S A Zilany. Hear Res 2018
41
An auditory-periphery model of the effects of acoustic trauma on auditory nerve responses.
Ian C Bruce, Murray B Sachs, Eric D Young. J Acoust Soc Am 2003
Ian C Bruce, Murray B Sachs, Eric D Young. J Acoust Soc Am 2003
17
Mechanisms of sound localization in mammals.
Benedikt Grothe, Michael Pecka, David McAlpine. Physiol Rev 2010
Benedikt Grothe, Michael Pecka, David McAlpine. Physiol Rev 2010
12
Computational modeling of the human auditory periphery: Auditory-nerve responses, evoked potentials and hearing loss.
Sarah Verhulst, Alessandro Altoè, Viacheslav Vasilkov. Hear Res 2018
Sarah Verhulst, Alessandro Altoè, Viacheslav Vasilkov. Hear Res 2018
25
Encoding of amplitude modulation in the cochlear nucleus of the cat.
W S Rhode, S Greenberg. J Neurophysiol 1994
W S Rhode, S Greenberg. J Neurophysiol 1994
11
The relationship between spike rate and synchrony in responses of auditory-nerve fibers to single tones.
D H Johnson. J Acoust Soc Am 1980
D H Johnson. J Acoust Soc Am 1980
11
A revised model of the inner-hair cell and auditory-nerve complex.
Christian J Sumner, Enrique A Lopez-Poveda, Lowel P O'Mard, Ray Meddis. J Acoust Soc Am 2002
Christian J Sumner, Enrique A Lopez-Poveda, Lowel P O'Mard, Ray Meddis. J Acoust Soc Am 2002
12
Auditory temporal processing: responses to sinusoidally amplitude-modulated tones in the inferior colliculus.
B S Krishna, M N Semple. J Neurophysiol 2000
B S Krishna, M N Semple. J Neurophysiol 2000
10
Subthreshold resonance properties contribute to the efficient coding of auditory spatial cues.
Michiel W H Remme, Roberta Donato, Jason Mikiel-Hunter, Jimena A Ballestero, Simon Foster, John Rinzel, David McAlpine. Proc Natl Acad Sci U S A 2014
Michiel W H Remme, Roberta Donato, Jason Mikiel-Hunter, Jimena A Ballestero, Simon Foster, John Rinzel, David McAlpine. Proc Natl Acad Sci U S A 2014
21
Human interaural time difference thresholds for sine tones: the high-frequency limit.
Andrew Brughera, Larisa Dunai, William M Hartmann. J Acoust Soc Am 2013
Andrew Brughera, Larisa Dunai, William M Hartmann. J Acoust Soc Am 2013
10
Enhancing sensitivity to interaural delays at high frequencies by using "transposed stimuli".
Leslie R Bernstein, Constantine Trahiotis. J Acoust Soc Am 2002
Leslie R Bernstein, Constantine Trahiotis. J Acoust Soc Am 2002
10
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
Power-law dynamics in an auditory-nerve model can account for neural adaptation to sound-level statistics.
Muhammad S A Zilany, Laurel H Carney. J Neurosci 2010
Muhammad S A Zilany, Laurel H Carney. J Neurosci 2010
20
Tone-in-noise detection using envelope cues: comparison of signal-processing-based and physiological models.
Junwen Mao, Laurel H Carney. J Assoc Res Otolaryngol 2015
Junwen Mao, Laurel H Carney. J Assoc Res Otolaryngol 2015
52
Periodicity coding in the inferior colliculus of the cat. I. Neuronal mechanisms.
G Langner, C E Schreiner. J Neurophysiol 1988
G Langner, C E Schreiner. J Neurophysiol 1988
9
Neural rate and timing cues for detection and discrimination of amplitude-modulated tones in the awake rabbit inferior colliculus.
Paul C Nelson, Laurel H Carney. J Neurophysiol 2007
Paul C Nelson, Laurel H Carney. J Neurophysiol 2007
14
A comparative study of seven human cochlear filter models.
Amin Saremi, Rainer Beutelmann, Mathias Dietz, Go Ashida, Jutta Kretzberg, Sarah Verhulst. J Acoust Soc Am 2016
Amin Saremi, Rainer Beutelmann, Mathias Dietz, Go Ashida, Jutta Kretzberg, Sarah Verhulst. J Acoust Soc Am 2016
60
Phase-locking in the cochlear nerve of the guinea-pig and its relation to the receptor potential of inner hair-cells.
A R Palmer, I J Russell. Hear Res 1986
A R Palmer, I J Russell. Hear Res 1986
8
Towards a Diagnosis of Cochlear Neuropathy with Envelope Following Responses.
Luke A Shaheen, Michelle D Valero, M Charles Liberman. J Assoc Res Otolaryngol 2015
Luke A Shaheen, Michelle D Valero, M Charles Liberman. J Assoc Res Otolaryngol 2015
8
Synaptopathy in the noise-exposed and aging cochlea: Primary neural degeneration in acquired sensorineural hearing loss.
Sharon G Kujawa, M Charles Liberman. Hear Res 2015
Sharon G Kujawa, M Charles Liberman. Hear Res 2015
8
Age-related cochlear synaptopathy: an early-onset contributor to auditory functional decline.
Yevgeniya Sergeyenko, Kumud Lall, M Charles Liberman, Sharon G Kujawa. J Neurosci 2013
Yevgeniya Sergeyenko, Kumud Lall, M Charles Liberman, Sharon G Kujawa. J Neurosci 2013
8
A model for interaural time difference sensitivity in the medial superior olive: interaction of excitatory and inhibitory synaptic inputs, channel dynamics, and cellular morphology.
Yi Zhou, Laurel H Carney, H Steven Colburn. J Neurosci 2005
Yi Zhou, Laurel H Carney, H Steven Colburn. J Neurosci 2005
9
Medial superior olivary neurons receive surprisingly few excitatory and inhibitory inputs with balanced strength and short-term dynamics.
Kiri Couchman, Benedikt Grothe, Felix Felmy. J Neurosci 2010
Kiri Couchman, Benedikt Grothe, Felix Felmy. J Neurosci 2010
9
Contribution of auditory nerve fibers to compound action potential of the auditory nerve.
Jérôme Bourien, Yong Tang, Charlène Batrel, Antoine Huet, Marc Lenoir, Sabine Ladrech, Gilles Desmadryl, Régis Nouvian, Jean-Luc Puel, Jing Wang. J Neurophysiol 2014
Jérôme Bourien, Yong Tang, Charlène Batrel, Antoine Huet, Marc Lenoir, Sabine Ladrech, Gilles Desmadryl, Régis Nouvian, Jean-Luc Puel, Jing Wang. J Neurophysiol 2014
8
Tinnitus with a normal audiogram: physiological evidence for hidden hearing loss and computational model.
Roland Schaette, David McAlpine. J Neurosci 2011
Roland Schaette, David McAlpine. J Neurosci 2011
8
Toward a Differential Diagnosis of Hidden Hearing Loss in Humans.
M Charles Liberman, Michael J Epstein, Sandra S Cleveland, Haobing Wang, Stéphane F Maison. PLoS One 2016
M Charles Liberman, Michael J Epstein, Sandra S Cleveland, Haobing Wang, Stéphane F Maison. PLoS One 2016
8
Modeling auditory processing of amplitude modulation. I. Detection and masking with narrow-band carriers.
T Dau, B Kollmeier, A Kohlrausch. J Acoust Soc Am 1997
T Dau, B Kollmeier, A Kohlrausch. J Acoust Soc Am 1997
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.