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Extra resources for Auditory signal processing : physiology, psychoacoustics, and models
Rosen, S. & Darling, A. M. (1998) An efficient characterisation of human auditory filtering across level and frequency that is also physiologically reasonable. In: Psychophysical and physiological advances in hearing: Proceedings of the 11th International Symposium on Hearing. A. Palmer, A. Rees, Q. Summerfield and R. Meddis (Eds). Whurr, London, 81-88. de Boer, E. and Nuttall, A. L. (2000). The mechanical waveform of the basilar membrane. III. Intensity effects. J. Acoust. Soc. , 107, 1497-1507.
A. (2003) An approximate transfer function for the dual-resonance nonlinear filter model of auditory frequency selectivity. J. Acoust. Soc. Am. 114, 21122117. Meddis, R. O'Mard, L. A. (2001) A computational algorithm for computing nonlinear auditory frequency selectivity. J. Acoust. Soc. Am. 109, 2852-2861. Recio, A. C. Narayan, and S. A. (1998) Basilar-membrane responses to clicks at the base of the chinchilla cochlea. J. Acoust. Soc. Am. 103, 1972-1989. S. and Recio, A. (2000) Study of mechanical motions in the basal region of the chinchilla cochlea.
Meeting of the Assoc. Res. Otolaryng. , Schatzer, R. D. (2002) Speech processors for auditory prostheses. Final Report. NIH project N01DC-8-2105. H. (2001) A phenomenological model for the responses of auditory nerve fibers. I. Non-linear tuning with compression and suppression. J. Acoust. Soc. Am. 109, 648-670. Auditory Signal Processing: Physiology, Psychoacoustics, and Models. ,and Collet, L. (Eds). Springer Verlag, 2004. Comparison of the compressive-gammachirp and double-roex auditory filters Roy D.