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Temporal coding of the pitch of complex sounds by presumed multipolar cells in the ventral cochlear nucleus.

, , , and . Speech Commun., 41 (1): 135-149 (2003)

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Neuromagnetic correlates of voice pitch, vowel type, and speaker size in auditory cortex., , , , and . NeuroImage, (2017)Processing the acoustic effect of size in speech sounds., , , , and . NeuroImage, 32 (1): 368-375 (2006)Dynamic, Compressive Gammachirp Auditory Filterbank for Perceptual Signal Processing., and . ICASSP (5), page 133-136. IEEE, (2006)Auditory VOCODER: Speech resynthesis from an auditory Mellin representation., , and . ICASSP, page 1921-1924. IEEE, (2002)Locating the initial stages of speech-sound processing in human temporal cortex., , , , and . NeuroImage, 31 (3): 1284-1296 (2006)An Auditory Model of Speaker Size Perception for Voiced Speech Sounds., , , and . INTERSPEECH, page 1153-1157. ISCA, (2017)A comparison of preprocessors for the cambridge recurrent error propagation network speech recognition system., , , and . ICSLP, page 1033-1036. ISCA, (1990)A Dynamic Compressive Gammachirp Auditory Filterbank., and . IEEE Trans. Speech Audio Process., 14 (6): 2222-2232 (2006)Auditory speech processing for scale-shift covariance and its evaluation in automatic speech recognition., , , , and . ISCAS, page 3813-3816. IEEE, (2010)Temporal coding of the pitch of complex sounds by presumed multipolar cells in the ventral cochlear nucleus., , , and . Speech Commun., 41 (1): 135-149 (2003)