Smith E, Lewicki MS. (2005). Efficient coding of time-relative structure using spikes. Neural computation. 17 [PubMed]

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References and models cited by this paper

Baumgarte F. (2002). Improved audio coding using a psychoacoustic model based on a cochlear filter bank IEEE Transactions On Speech And Audio Processing. 10

Blauert J. (1997). Spatial Hearing.

Chen SS, Donoho DL, Saunders MA. (1996). A composite model of the auditory periphery for the processing of speech SIAM Rev. 43

Garofolo JS et al. (1990). TIMIT acoustic-phonetic continuous speech corpus Audio CD.

Gitza O. (1988). Temporal non-place information in the auditory-nerve firing patterns as a front-end for speech recognition in noisy environments J Phonetics. 16

Goodwin MM, Vetterli M. (1999). Matching pursuit and atomic signal models based on recursive filter banks IEEE Transactions On Signal Processing. 47

Gribonval R, Depalle P, Rodet X, Bacryf E, Mallatt S. (1994). Sound signals decomposition using a high resolution matching pursuit Proceedings of International Computer Music Conference.

Levinson SE, Rabiner LR. (1981). Isolated and connected word recognition: Theory and selected applications IEEE Trans. Communications. 25

Lewicki MS. (2002). Efficient coding of natural sounds. Nature neuroscience. 5 [PubMed]

Lewicki MS. (2002). Efficient coding of time-varying patterns using a spiking population code Probabilistic models of the brain: Perception and neural function.

Lewicki MS, Olshausen BA. (1999). A probabilistic framework for the adaptation and comparison of image codes J Opt Soc Am A: Optics, Image, Science And Vision. 16

Lewicki MS, Sejnowski TJ. (2000). Learning overcomplete representations. Neural computation. 12 [PubMed]

Liberman A, Delattre P, Cooper F. (1958). Some cues for the distinction between voiced and voiceless stops in initial position Language And Speech. 1

Lyon RF. (1982). A computational model of filtering, detection and compression in the cochlea IEEE Int Conf Acoust, Speech and Signal Processing.

Lyon RF, Slaney M. (1993). On the importance of a time-a temporal representation of sound. Visual Representations Of Speech Signals.

Olshausen BA. (2002). Sparse codes and spikes Probabilistic models of the brain: Perception and neural function.

Patterson RD, Nimmo-smith I, Holdsworth J, Rice P. (1988). Implementing a gammatone filter bank SVOS Final Report: The Auditory Filter Bank..

Sejnowski TJ, Lewicki MS. (1999). Coding time-varying signals using sparse, shift-invariant representations Advances in neural information processing systems. 11

Shamma S, Yang X, Wang K. (1992). Auditory representations of acoustic signals IEEE Trans Inf Theory. 38

Shannon CE. (1948). The mathematical theory of communication Bell Syst Tech J. 27

Slaney M. (1998). Auditory toolbox Tech. Rep. No. 1998-010.

Zhang Z, Mallat SG. (1993). Matching pursuits with time-frequency dictionaries IEEE Transactions On Signal Processing. 41

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