J C Clarey, P Barone, T J Imig. J Neurophysiol 1994
Times Cited: 80
Times Cited: 80
Times Cited
Times Co-cited
Similarity
Single-unit selectivity to azimuthal direction and sound pressure level of noise bursts in cat high-frequency primary auditory cortex.
T J Imig, W A Irons, F R Samson. J Neurophysiol 1990
T J Imig, W A Irons, F R Samson. J Neurophysiol 1990
45
Binaural columns in the primary field (A1) of cat auditory cortex.
T J Imig, H O Adrián. Brain Res 1977
T J Imig, H O Adrián. Brain Res 1977
41
Functional topography of cat primary auditory cortex: representation of tone intensity.
C E Schreiner, J R Mendelson, M L Sutter. Exp Brain Res 1992
C E Schreiner, J R Mendelson, M L Sutter. Exp Brain Res 1992
37
Binaural response-specific bands in primary auditory cortex (AI) of the cat: topographical organization orthogonal to isofrequency contours.
J C Middlebrooks, R W Dykes, M M Merzenich. Brain Res 1980
J C Middlebrooks, R W Dykes, M M Merzenich. Brain Res 1980
36
Topographic representation of tone intensity along the isofrequency axis of cat primary auditory cortex.
P Heil, R Rajan, D R Irvine. Hear Res 1994
P Heil, R Rajan, D R Irvine. Hear Res 1994
33
Functional classes of neurons in primary auditory cortex of the cat distinguished by sensitivity to sound location.
J C Middlebrooks, J D Pettigrew. J Neurosci 1981
J C Middlebrooks, J D Pettigrew. J Neurosci 1981
32
Representation of cochlea within primary auditory cortex in the cat.
M M Merzenich, P L Knight, G L Roth. J Neurophysiol 1975
M M Merzenich, P L Knight, G L Roth. J Neurophysiol 1975
31
Binaural organization of primary auditory cortex in the ferret (Mustela putorius).
J B Kelly, P W Judge. J Neurophysiol 1994
J B Kelly, P W Judge. J Neurophysiol 1994
41
Topography of binaural organization in primary auditory cortex of the cat: effects of changing interaural intensity.
R A Reale, R E Kettner. J Neurophysiol 1986
R A Reale, R E Kettner. J Neurophysiol 1986
29
Functional topography of cat primary auditory cortex: distribution of integrated excitation.
C E Schreiner, J R Mendelson. J Neurophysiol 1990
C E Schreiner, J R Mendelson. J Neurophysiol 1990
28
Azimuthal sensitivity of neurons in primary auditory cortex of cats. II. Organization along frequency-band strips.
R Rajan, L M Aitkin, D R Irvine. J Neurophysiol 1990
R Rajan, L M Aitkin, D R Irvine. J Neurophysiol 1990
28
Responses of neurons in auditory cortex of the macaque monkey to monaural and binaural stimulation.
J F Brugge, M M Merzenich. J Neurophysiol 1973
J F Brugge, M M Merzenich. J Neurophysiol 1973
26
26
Level-dependent representation of stimulus frequency in cat primary auditory cortex.
D P Phillips, M N Semple, M B Calford, L M Kitzes. Exp Brain Res 1994
D P Phillips, M N Semple, M B Calford, L M Kitzes. Exp Brain Res 1994
26
Azimuthal sensitivity of neurons in primary auditory cortex of cats. I. Types of sensitivity and the effects of variations in stimulus parameters.
R Rajan, L M Aitkin, D R Irvine, J McKay. J Neurophysiol 1990
R Rajan, L M Aitkin, D R Irvine, J McKay. J Neurophysiol 1990
25
Topography of intensity tuning in cat primary auditory cortex: single-neuron versus multiple-neuron recordings.
M L Sutter, C E Schreiner. J Neurophysiol 1995
M L Sutter, C E Schreiner. J Neurophysiol 1995
25
Binaural processing of sound pressure level in cat primary auditory cortex: evidence for a representation based on absolute levels rather than interaural level differences.
M N Semple, L M Kitzes. J Neurophysiol 1993
M N Semple, L M Kitzes. J Neurophysiol 1993
25
Sensitivity to interaural intensity differences of neurons in primary auditory cortex of the cat. I. types of sensitivity and effects of variations in sound pressure level.
D R Irvine, R Rajan, L M Aitkin. J Neurophysiol 1996
D R Irvine, R Rajan, L M Aitkin. J Neurophysiol 1996
30
Functional topography of cat primary auditory cortex: response latencies.
J R Mendelson, C E Schreiner, M L Sutter. J Comp Physiol A 1997
J R Mendelson, C E Schreiner, M L Sutter. J Comp Physiol A 1997
24
Physiology and topography of neurons with multipeaked tuning curves in cat primary auditory cortex.
M L Sutter, C E Schreiner. J Neurophysiol 1991
M L Sutter, C E Schreiner. J Neurophysiol 1991
22
Topography of excitatory bandwidth in cat primary auditory cortex: single-neuron versus multiple-neuron recordings.
C E Schreiner, M L Sutter. J Neurophysiol 1992
C E Schreiner, M L Sutter. J Neurophysiol 1992
22
Responses of single neurons in physiologically defined primary auditory cortex (AI) of the cat: frequency tuning and responses to intensity.
D P Phillips, D R Irvine. J Neurophysiol 1981
D P Phillips, D R Irvine. J Neurophysiol 1981
22
Role of cat primary auditory cortex for sound-localization behavior.
W M Jenkins, M M Merzenich. J Neurophysiol 1984
W M Jenkins, M M Merzenich. J Neurophysiol 1984
21
Focal selectivity for binaural sound pressure level in cat primary auditory cortex: two-way intensity network tuning.
M N Semple, L M Kitzes. J Neurophysiol 1993
M N Semple, L M Kitzes. J Neurophysiol 1993
31
Functional topography of cat primary auditory cortex: responses to frequency-modulated sweeps.
J R Mendelson, C E Schreiner, M L Sutter, K L Grasse. Exp Brain Res 1993
J R Mendelson, C E Schreiner, M L Sutter, K L Grasse. Exp Brain Res 1993
21
Sensitivity of neurons in cat primary auditory cortex to tones and frequency-modulated stimuli. II: Organization of response properties along the 'isofrequency' dimension.
P Heil, R Rajan, D R Irvine. Hear Res 1992
P Heil, R Rajan, D R Irvine. Hear Res 1992
20
Organization of auditory cortex in the albino rat: binaural response properties.
J B Kelly, S L Sally. J Neurophysiol 1988
J B Kelly, S L Sally. J Neurophysiol 1988
18
Basic functional organization of second auditory cortical field (AII) of the cat.
C E Schreiner, M S Cynader. J Neurophysiol 1984
C E Schreiner, M S Cynader. J Neurophysiol 1984
18
A panoramic code for sound location by cortical neurons.
J C Middlebrooks, A E Clock, L Xu, D M Green. Science 1994
J C Middlebrooks, A E Clock, L Xu, D M Green. Science 1994
17
Neurons in the cat's primary auditory cortex distinguished by their responses to tones and wide-spectrum noise.
D P Phillips, S S Orman, A D Musicant, G F Wilson. Hear Res 1985
D P Phillips, S S Orman, A D Musicant, G F Wilson. Hear Res 1985
17
Functional organization of spectral receptive fields in the primary auditory cortex of the owl monkey.
G H Recanzone, C E Schreiner, M L Sutter, R E Beitel, M M Merzenich. J Comp Neurol 1999
G H Recanzone, C E Schreiner, M L Sutter, R E Beitel, M M Merzenich. J Comp Neurol 1999
17
Intracortical connections and their physiological correlates in the primary auditory cortex (AI) of the cat.
J A Matsubara, D P Phillips. J Comp Neurol 1988
J A Matsubara, D P Phillips. J Comp Neurol 1988
17
Organization of response areas in ferret primary auditory cortex.
S A Shamma, J W Fleshman, P R Wiser, H Versnel. J Neurophysiol 1993
S A Shamma, J W Fleshman, P R Wiser, H Versnel. J Neurophysiol 1993
17
Representation of the cochlear partition of the superior temporal plane of the macaque monkey.
M M Merzenich, J F Brugge. Brain Res 1973
M M Merzenich, J F Brugge. Brain Res 1973
16
Cortical synthesis of azimuth-sensitive single-unit responses with nonmonotonic level tuning: a thalamocortical comparison in the cat.
P Barone, J C Clarey, W A Irons, T J Imig. J Neurophysiol 1996
P Barone, J C Clarey, W A Irons, T J Imig. J Neurophysiol 1996
30
16
Response patterns along an isofrequency contour in cat primary auditory cortex (AI) to stimuli varying in average and interaural levels.
Kyle T Nakamoto, Jiping Zhang, Leonard M Kitzes. J Neurophysiol 2004
Kyle T Nakamoto, Jiping Zhang, Leonard M Kitzes. J Neurophysiol 2004
39
Effects of ear plugging on single-unit azimuth sensitivity in cat primary auditory cortex. II. Azimuth tuning dependent upon binaural stimulation.
F K Samson, P Barone, J C Clarey, T J Imig. J Neurophysiol 1994
F K Samson, P Barone, J C Clarey, T J Imig. J Neurophysiol 1994
42
Patterns of responses of cortical cells to binaural stimulation.
L M Kitzes, K S Wrege, J M Cassady. J Comp Neurol 1980
L M Kitzes, K S Wrege, J M Cassady. J Comp Neurol 1980
15
Some features of binaural input to single neurons in physiologically defined area AI of cat cerebral cortex.
D P Phillips, D R Irvine. J Neurophysiol 1983
D P Phillips, D R Irvine. J Neurophysiol 1983
16
Neural basis of amplitude-spectrum representation in auditory cortex of the mustached bat.
N Suga, T Manabe. J Neurophysiol 1982
N Suga, T Manabe. J Neurophysiol 1982
15
Intrinsic inter- and intralaminar connections and their relationship to the tonotopic map in cat primary auditory cortex.
M N Wallace, L M Kitzes, E G Jones. Exp Brain Res 1991
M N Wallace, L M Kitzes, E G Jones. Exp Brain Res 1991
15
Responses of single neurons in physiologically defined area AI of cat cerebral cortex: sensitivity to interaural intensity differences.
D P Phillips, D R Irvine. Hear Res 1981
D P Phillips, D R Irvine. Hear Res 1981
13
Effects of ear plugging on single-unit azimuth sensitivity in cat primary auditory cortex. I. Evidence for monaural directional cues.
F K Samson, J C Clarey, P Barone, T J Imig. J Neurophysiol 1993
F K Samson, J C Clarey, P Barone, T J Imig. J Neurophysiol 1993
30
Binaural interaction in high-frequency neurons in inferior colliculus of the cat: effects of variations in sound pressure level on sensitivity to interaural intensity differences.
D R Irvine, G Gago. J Neurophysiol 1990
D R Irvine, G Gago. J Neurophysiol 1990
13
Intrinsic organization of the cat's medial geniculate body identified by projections to binaural response-specific bands in the primary auditory cortex.
J C Middlebrooks, J M Zook. J Neurosci 1983
J C Middlebrooks, J M Zook. J Neurosci 1983
13
Functional architecture in cat primary auditory cortex: columnar organization and organization according to depth.
M Abeles, M H Goldstein. J Neurophysiol 1970
M Abeles, M H Goldstein. J Neurophysiol 1970
13
12
Modular organization of frequency integration in primary auditory cortex.
C E Schreiner, H L Read, M L Sutter. Annu Rev Neurosci 2000
C E Schreiner, H L Read, M L Sutter. Annu Rev Neurosci 2000
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.