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Original Article

Place and Time Coding of Frequency in the Peripheral Auditory System: Some Physiological Pros and Cons

Pages 369-420 | Published online: 07 Jul 2009

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Read on this site (15)

Walter Di Nardo, Italo Cantore, Francesca Cianfrone, Pietro Melillo, Anna Rita Fetoni & Gaetano Paludetti. (2007) Differences between electrode-assigned frequencies and cochlear implant recipient pitch perception. Acta Oto-Laryngologica 127:4, pages 370-377.
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James A. Kaltenbach. (2006) Summary of evidence pointing to a role of the dorsal cochlear nucleus in the etiology of tinnitus. Acta Oto-Laryngologica 126:sup556, pages 20-26.
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Martina Huss & Brian C.J. Moore. (2005) Dead regions and noisiness of pure tones. International Journal of Audiology 44:10, pages 599-611.
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Aage R. Moller. (1999) Review of the Roles of Temporal and Place Coding of Frequency in Speech Discrimination. Acta Oto-Laryngologica 119:4, pages 424-430.
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H. Schulze & G. Langner. (1997) Representation of Periodicity Pitch in the Primary Auditory Cortex of the Mongolian Gerbil. Acta Oto-Laryngologica 117:sup532, pages 89-95.
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Robert V. Harrison, Susan G. Stanton & Richard J. Mount. (1995) Effects of Chronic Cochlear Damage on Threshold and Frequency Tuning of Neurons in AI Auditory Cortex. Acta Oto-Laryngologica 115:sup519, pages 30-35.
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R. V. Harrison & J. M. Aran. (1982) Electrocochleographic Measures of Frequency Selectivity in Human Deafness. British Journal of Audiology 16:3, pages 179-188.
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A. Ginzel, C. Brahe Pedersen, P. E. Spliid & E. Andersen. (1982) The Effect of Age and Hearing Loss on the Identification of Synthetic /b, d, g/-Stimuli. Scandinavian Audiology 11:2, pages 103-112.
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I. C. Whitfield. (1981) Theory and Experiment in So-Called Pulse-Interval Pitch. Audiology 20:1, pages 86-88.
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Brian C.J. Moore. (1980) Neural Interspike Intervals and Pitch. Audiology 19:4, pages 363-365.
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I. C. Whitfield. (1979) Periodicity, Pulse Interval and Pitch. Audiology 18:6, pages 507-512.
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Robert P. Morse, Stephen D. Holmes, Richard Irving & David McAlpine. (2022) Noise helps cochlear implant listeners to categorize vowels. JASA Express Letters 2:4.
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Yi-Hsuan Li & Philip X. Joris. (2021) Temporal Correlates to Monaural Edge Pitch in the Distribution of Interspike Interval Statistics in the Auditory Nerve. eneuro 8:4, pages ENEURO.0292-21.2021.
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Brian C. J. Moore. (2019) The roles of temporal envelope and fine structure information in auditory perception. Acoustical Science and Technology 40:2, pages 61-83.
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Saradha Ananthakrishnan & Ananthanarayan Krishnan. (2018) Human frequency following responses to iterated rippled noise with positive and negative gain: Differential sensitivity to waveform envelope and temporal fine-structure. Hearing Research 367, pages 113-123.
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Natalia Stupak, Monica Padilla, Robert P. Morse & David M. Landsberger. (2018) Perceptual Differences Between Low-Frequency Analog and Pulsatile Stimulation as Shown by Single- and Multidimensional Scaling. Trends in Hearing 22, pages 233121651880753.
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Niko Moritz, Joern Anemueller & Birger Kollmeier. (2015) An Auditory Inspired Amplitude Modulation Filter Bank for Robust Feature Extraction in Automatic Speech Recognition. IEEE/ACM Transactions on Audio, Speech, and Language Processing, pages 1-1.
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Mark Sayles & Ian M. Winter. (2008) Reverberation Challenges the Temporal Representation of the Pitch of Complex Sounds. Neuron 58:5, pages 789-801.
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Brian C. J. Moore. 2008. Blackwell Handbook of Sensation and Perception. Blackwell Handbook of Sensation and Perception 408 436 .
Christian Stickel, Alexei Scerbakov, Thomas Kaufmann & Martin Ebner. 2008. HCI and Usability for Education and Work. HCI and Usability for Education and Work 173 184 .
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Martina Huss & Brian C. J. Moore. (2005) Dead regions and pitch perception. The Journal of the Acoustical Society of America 117:6, pages 3841-3852.
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Martina Huss & Brian C. J. Moore. (2003) Tone decay for hearing-impaired listeners with and without dead regions in the cochlea. The Journal of the Acoustical Society of America 114:6, pages 3283-3294.
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Brian C. J. Moore. (2003) Coding of Sounds in the Auditory System and Its Relevance to Signal Processing and Coding in Cochlear Implants. Otology & Neurotology 24:2, pages 243-254.
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Donal G Sinex, Dolores E López & W.Bruce Warr. (2001) Electrophysiological responses of cochlear root neurons. Hearing Research 158:1-2, pages 28-38.
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Brian C. J. Moore. (2016) Dead Regions in the Cochlea: Diagnosis, Perceptual Consequences, and Implications for the Fitting of Hearing Aids. Trends in Amplification 5:1, pages 1-34.
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William P Shofner. (2000) Comparison of frequency discrimination thresholds for complex and single tones in chinchillas. Hearing Research 149:1-2, pages 106-114.
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R.P. Morse & G.F. Meyer. (2000) The practical use of noise to improve speech coding by analogue cochlear implants. Chaos, Solitons & Fractals 11:12, pages 1885-1894.
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Shihab Shamma & David Klein. (2000) The case of the missing pitch templates: How harmonic templates emerge in the early auditory system. The Journal of the Acoustical Society of America 107:5, pages 2631-2644.
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Robert P. Morse & Peter Roper. (2000) Enhanced coding in a cochlear-implant model using additive noise: Aperiodic stochastic resonance with tuning. Physical Review E 61:5, pages 5683-5692.
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Maike Vollmer, Russell L. Snyder, Patricia A. Leake, Ralph E. Beitel, Charlotte M. Moore & Stephen J. Rebscher. (1999) Temporal Properties of Chronic Cochlear Electrical Stimulation Determine Temporal Resolution of Neurons in Cat Inferior Colliculus. Journal of Neurophysiology 82:6, pages 2883-2902.
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Robert P. Morse & Edward F. Evans. (1999) Additive noise can enhance temporal coding in a computational model of analogue cochlear implant stimulation. Hearing Research 133:1-2, pages 107-119.
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