diff docs/aimBibliography @ 0:5242703e91d3 tip

Initial checkin for AIM92 aimR8.2 (last updated May 1997).
author tomwalters
date Fri, 20 May 2011 15:19:45 +0100
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+aimBibliography
+
+			AIM BIBLIOGRAPHY
+
+A listing of papers that have appeared in papers involving AIM and its
+antecedents. Where there are multiple papers for one author, the
+papers are ordered firstly by year of publication and secondly by the
+names of the second and succeeding authors, as this format seems to
+facilitate retrieval.
+
+
+Aertsen, A. M. J. H. and P. I. M. Johannesma (1980). "Spectro-
+   temporal receptive fields of auditory neurons in the
+   grassfrog," I. Characterisation of tonal and natural stimuli.
+   Biol. Cybern. 38, 223-234.
+
+Akeroyd, M.A. and Patterson, R.D. (1995). "Discrimination of wideband
+   noises modulated by a temporally asymmetric function,"
+   J. Acoust. Soc. Am. (revision submitted May 95).
+
+Allerhand, M., Butterfield, S., Cutler, R. and Patterson, R.D. (1992).
+   "Assessing syllable strength via an auditory model," In Proceedings
+   of the Institute of Acoustics, Vol. 14, Part 6 , 297-304.
+
+Allerhand, M. and Patterson, R. (1992).  "Correlograms and auditory
+   images," In Proceedings of the Institute of Acoustics, Vol. 14, Part
+   6, 281-288.
+
+Anderson, T.R. and Patterson, R.D. (1994). "Speaker recognition with
+   the auditory image model and self-organising feature maps: A
+   comparison with traditional techniques," In: Proc. ESCA meeting on
+   Speaker recognition, identification and verification. Martigny,
+   Switzerland.
+
+Assman, P.F. & Summerfield, A.Q. (1989) "Modeling the perception of
+   concurrent vowels: Vowels with the same fundamental frequency,"
+   J. Acoust. Soc. Am. 85, 327-338.
+ 
+Assman, P. F. and Q. Summerfield (1990). "Modelling the perception of
+   concurrent vowels: Vowels with different fundamental frequencies,"
+   J. Acoust. Soc. Am. 88, 680-697.
+
+Boer, E. de and de Jongh, H. R. (1978). "On cochlear encoding:
+   potentialities and limitations of the reverse-correlation
+   technique," J. Acoust. Soc. Am. 63, 115-135.
+
+Bregman, A.S. (1990). Auditory scene analysis. MIT Press, Cambridge
+   MA.
+
+Brown, G.J. and Cooke, M. (1994). "Computational auditory scene
+   analysis," Computer Speech and Language 8, 297-336.
+
+Carney, L.H. and Yin, C.T. (1988) "Temporal coding of resonances
+   by low-frequency auditory nerve fibers: Single fibre responses
+   and a population model," J. Neurophysiology, 60, 1653-1677.
+
+de Cheveigne, A. (1993). "Separation of concurrent harmonic sounds:
+   Fundamental frequency estimation and a time-domain cancellation
+   model of auditory processing," J. Acoust. Soc. Am. 93, 3271-3290.
+ 
+Cooke, M.P. (1993). Modelling Auditory Processing and Organisation,
+   Cambridge University Press.
+
+Duifhuis, H., Willems, L.F., and Sluyter, R.J. (1982) "Measurement of
+   pitch in speech: an implementation of Goldstein's theory of pitch
+   perception," J. Acoust. Soc. Am. 71, 1568-1580.
+
+Giguere, C., Woodland, P.C., and Robinson, A.J. (1993). "Application
+   of an auditory model to the computer simulation of hearing
+   impairment: Preliminary results," Can. Acoust.  21, 135-136.
+
+Giguere, C., and Woodland, P.C. (1994a). "A computational model of the
+   auditory periphery for speech and hearing research. I. Ascending
+   path," J. Acoust. Soc. Am. 95, 331-342.
+
+Giguere, C., and Woodland, P.C. (1994b). "A computational model of the
+   auditory periphery for speech and hearing research. II: Descending
+   paths,'' J. Acoust. Soc. Am.  95, 343-349.
+
+Giguere, C., Kunov, H., and Smoorenburg, G.F. (1995). "Computational
+   modelling of psycho-acoustic combination tones and
+   distortion-product otoacoustic emissions," 15th Int. Cong. on
+   Acoustics, Trondheim (Norway), 26-30 June.
+
+Glasberg, B. R. and B. C. J. Moore (1990). "Derivation of auditory
+   filter shapes from notched-noise data," Hearing Research, 47,
+   103-138.
+
+Goldstein, J.L. (1973) "An optimum processor theory for the central
+   formation of the pitch of complex tones," J. Acoust. Soc. Am. 54,
+   1496-1516.
+
+Green, D. M. (1988). Profile Analysis: auditory intensity
+   discrimination, Oxford University Press, New York.
+
+Greenwood, D.D. (1961) "Critical bandwidth and the frequency
+   coordinates of the basilar membrane," J. Acoust. Soc. Am. 33,
+   1344-1356.
+
+Greenwood, D. D. (1990). "A cochlear frequency-position function
+   for several species - 29 years later," J. Acoust. Soc. Am. 87,
+   2592-2605.
+
+Henning, G.B. (1967) "Frequency discrimination in noise," J. Acoust. 
+   Soc. Am. 41, 774-777.
+
+Holdsworth, J. (1990). "Two-Dimensional adaptive thresholding,"
+   Annex 4 of AAM-HAP Report 1 (APU Contract Report). (The basic paper
+   on 2D-AT that never managed to get published).
+
+Holdsworth, J.W., and Patterson, R.D. (1991).  "Analysis of
+   waveforms," UK Patent No. GB 2-234-078-A (23.1.91). London: UK
+   Patent Office.
+
+Holdsworth, J., Nimmo-Smith, I., Patterson, R.D. and Rice, P. (1988).
+   Annex C of "Spiral Vos Final Report, Part A: The Auditory
+   Filterbank," APU report 2341. (For historical interest.)
+
+Irino, T. and Patterson, R.D. (1995). "Temporal asymmetry in the
+   auditory system," J. Acoust. Soc. Am. (revised manuscript submitted
+   June 95).
+
+Licklider, J. C. R. (1951). "A duplex theory of pitch perception,"
+   Experientia, 7, 128-133. Reprinted in E. D. Schubert (ed.),
+   Psychological Acoustics. Stroudsburg, P. A., Dowden,
+   Hutchinson and Ross Inc. (1979).
+
+Lutman, M.E. and Martin, A.M. (1979). "Development of an
+   electroacoustic analogue model of the middle ear and acoustic
+   reflex," J. Sound. Vib. 64, 133-157.
+
+Lyon, R.F. (1982). "A computational model of filtering,
+   detection, and compression in the cochlea," In: Proc. IEEE Int.
+   Conf. Acoust., Speech Signal Processing. Paris, France.
+
+Lyon, R.F. (1984). "Computational models of neural auditory
+   processing," In: Proc. IEEE Int. Conf. Acoust. Speech Signal
+   Processing. San Diego, CA. March 1984.
+
+McKeown, D. and Patterson, R.D. (1995). "The time course of auditory
+   segregation: concurrant vowels that vary in duration,"
+   J. Acoust. Soc. Am. (in press).
+
+Meddis, R. (1986). "Simulation of mechanical to neural transduction in
+   the auditory receptor," J. Acoust. Soc. Am. 79, 702-711.
+
+Meddis, R. (1988). "Simulation of auditory-neural transduction:
+   Further studies," J. Acoust. Soc. Am. 83, 1056-1063.
+
+Meddis, R., Hewitt, M. and Shackleton, T. (1990). "Implementation
+   details of a computational model of the inner-haircell/
+   auditory-nerve synapse," J. Acoust. Soc. Am. 87, 1813-1816.
+
+Meddis, R. and M. J. Hewitt (1991a). "Virtual pitch and phase
+   sensitivity of a computer model of the auditory periphery: I
+   pitch identification," J. Acoust. Soc. Am.  89, 2866-82.
+
+Meddis, R. and M. J. Hewitt (1991b). "Virtual pitch and phase
+   sensitivity of a computer model of the auditory periphery: II
+   phase sensitivity," J. Acoust. Soc. Am. 89, 2883-94.
+
+Meddis, R. & Hewitt, M.J. (1992) "Modeling the identification of
+   concurrent vowels with different fundamental frequencies,"
+   J. Acoust. Soc. Am. 91, 233-245.
+
+Moore, B.C.J. (1989). An introduction to the psychology of
+   hearing. Academic Press, London.
+
+Moore, B.C.J and Glasberg, B.R. (1983), "Suggested formulae for
+   calculating auditory filter bandwidths and excitiation patterns,"
+   J. Acoust. Soc. Am. 74, 750-753.
+
+Patuzzi, R., and Robertson, D. (1988) "Tuning in the mammalian
+   cochlea," Physiological Reviews 68, 1009-1082.
+
+Patterson, R. D. (1974). "Auditory filter shape," J. Acoust. Soc. 
+   Am. 55, 802-809.
+
+Patterson, R. D. (1976). "Auditory filter shapes derived with
+   noise stimuli," J. Acoust. Soc. Am. 59, 640-654.
+
+Patterson, R.D., Nimmo-Smith, I., Weber, D.L., and Milroy, R. (1982).
+   "The deterioration of hearing with age: Frequency selectivity, the
+   critical ratio, the audiogram, and speech threshold," J. Acoust. 
+   Soc. Am. 72, 1788-1803.
+
+Patterson, R.D., Peters, R.W. & Milroy, R. (1983). "Threshold duration
+   for melodic pitch," In Hearing - Physiological bases and
+   psychophysics edited by R. Klinke & W. Hartmann (Springer:Berlin)
+   321-325.
+ 
+Patterson, R.D. (1986). "Spiral detection of periodicity and the
+   spiral form of musical scales,"  Psychology of Music 14, 44-61.
+
+Patterson, R. D. and B.C.J. Moore (1986). "Auditory filters and
+   excitation patterns as representations of frequency
+   resolution." In: Frequency Selectivity in Hearing. B.C.J.
+   Moore (Ed.), Academic Press, London. 123-177. 
+
+Patterson R.D. and Nimmo-Smith, I. (1986). "Thinning periodicity
+   detectors for modulated pulse streams,"  In B.C.J. Moore and
+   R.D. Patterson (Eds.)  Auditory Frequency Selectivity (NATO ASI
+   Series A: Life Sciences, Vol. 19), New York:Plenum, 299-307.
+
+Patterson, R.D. (1987a). "A pulse ribbon model of peripheral
+   auditory processing,"  In William A. Yost and Charles, S.
+   Watson, (Eds.) Auditory Processing of Complex Sounds.
+   Hillsdale, N.J., Erlbaum, 167-169.
+
+Patterson, R.D. (1987b). "A pulse ribbon model of monaural
+   phase perception,"  J. Acoust. Soc. Am. 82, 1560-1586.
+
+Patterson, R.D. (1988). "Timbre cues in monaural phase perception:
+   Distinguishing within-channel cues and between-channel cues,"  In
+   H. Duifhuis, J.W. Horst and H.P. (Eds.), Basic Issues in Hearing.
+   Proceedings of the 8th International Symposium on Hearing. London:
+   Academic Press, 351-358.
+
+Patterson, R.D., Nimmo-Smith, I., Holdsworth, J., and Rice, P. (1988).
+   "Spiral Vos Final Report, Part A: The Auditory Filterbank," APU
+   Contract Report (APU 2341). (Of historical interest for the
+   gammatone auditory filterbank.)
+
+Patterson R.D. and Cutler A. (1989). "Auditory preprocessing and
+   recognition of speech,"  In A.D. Baddeley and N.O. Bernsen (Ed.)
+   Research Directions in Cognitive Science 1, London:Erlbaum, 23-60.
+
+Patterson, R.D. & Hirahara, T. (1989). "HMM speech recognition using
+   DFT and auditory spectrograms," ATR HIP Technical Report 10.23.89.
+
+Patterson, R.D. (1990) "The tone height of multi-harmonic sounds," 
+  Music Perception 8, 203-214.  
+
+Patterson, R.D. and Holdsworth, J. (1993). "A functional model
+   of neural activity patterns and auditory images," In: Advances in
+   Speech, Hearing and Language Processing 3, W.A. Ainsworth (ed.),
+   JAI Press, London. (in press since 1991 but never seems to get to
+   the proof stage.)
+
+Patterson, R. D. and Holdsworth, J. (1990) "An introduction to
+   auditory sensation processing," Annex 1 of APU AAM-HAP Report 1.
+   (Of historical interest only. Now obsolete).
+
+Patterson, R.D., Robinson, K., Holdsworth, J., McKeown, D., Zhang,
+   C. and Allerhand M. (1992) "Complex sounds and auditory images,"
+   In: Auditory physiology and perception, Y Cazals, L. Demany,
+   K. Horner (eds), Pergamon, Oxford, 429-446.
+
+Patterson, R. D., Allerhand, M. H. and Holdsworth, J. (1992)
+   "Auditory representations of speech sounds," In Visual
+   representations of speech signals, Eds. Martin Cooke, Steve
+   Beet, and Malcolm Crawford, John Wiley & Sons, Chichester. 307-314.
+
+Patterson, R.D., Holdsworth, J. and Allerhand M. (1992). "Auditory
+   Models as preprocessors for speech recognition," In: The Auditory
+   Processing of Speech: From the auditory periphery to words,
+   M.E.H. Schouten (ed), Mouton de Gruyter, Berlin, 67-83.
+
+Patterson, R.D., Milroy, R. and Allerhand, M. (1993). "What is
+   the octave of a harmonically rich note?"  Contemporary Music Review
+   Vol. 9, Harwood, Switzerland, 69-81.
+
+Patterson, R.D. (1994a). "The sound of a sinusoid: Spectral models,"
+   J. Acoust. Soc. Am.  96, 1409-1418.
+
+Patterson, R.D. (1994b). "The sound of a sinusoid: Time-interval
+   models." J. Acoust. Soc. Am. 96, 1419-1428.
+
+Patterson, R.D., Anderson, T., and Allerhand, M. (1994). "The auditory
+   image model as a preprocessor for spoken language," in Proc. Third
+   ICSLP, Yokohama, Japan, 1395-1398.  
+
+Patterson, R.D. and Akeroyd, M. A. (1995). "Time-interval patterns and
+   sound quality," in: Advances in Hearing Research: Proceedings of
+   the 10th International Symposium on Hearing, G. Manley, G. Klump,
+   C. Koppl, H. Fastl, & H. Oeckinghaus, (Eds). World Scientific,
+   Singapore, (in press).
+
+Patterson, R.D., Allerhand, M., and Giguere, C., (1995). "Time-domain
+   modelling of peripheral auditory processing: A modular architecture
+   and a software platform," J. Acoust. Soc. Am. 98, (in press).
+
+Pickles, J. O. (1988) An introduction to the physiology of
+   hearing. Academic Press, London.
+
+Robinson, A., Holdsworth, J., Patterson, R.D., and Fallside, F (1990).
+   "A Comparison of Preprocessors for the Cambridge Recurrent Error
+   Propagation Network Speech Recognition System," ICSLP, Kobe, Japan,
+   1033-1036.
+
+Robinson, K.L. (1993). Studies in timbre and pitch. Doctoral
+   dissertation. Cambridge University.
+
+Robinson, K.L. & Patterson, R.D. (1995a) "The duration required to
+   identify the instrument, the octave, or the pitch-chroma of a
+   musical note," Music Perception (in press).
+
+Robinson, K.L. & Patterson, R.D. (1995b) "The stimulus duration required to
+   identify vowels, their octave, and their pitch-chroma,"  J. Acoust. Soc.
+   Am 98, (in press).
+
+Scheffers, M. T. M. (1983a). Sifting vowels: Auditory pitch analysis
+   and sound segregation. Doctoral dissertation. University of
+   Groningen, The Netherlands.
+
+Scheffers, M. T. M. (1983b). "Simulation of the auditory analysis of
+   pitch: An elaboration on the DWS meter," J. Acoust. Soc. Am. 74,
+   1716-1725.
+
+Schofield, D. (1985) "Visualisations of speech based on a model of the
+   peripheral auditory system," NPL Report DITC 62/85. (Of historical
+   interest for the gammatone auditory filterbank.)
+
+Slaney, M. and Lyon, R.F. (1990). "A perceptual pitch detector," in
+   Proc. IEEE Int. Conf. Acoust. Speech Signal Processing,
+   Albuquerque, New Mexico.
+
+Slaney, M. (1993). "An efficient implementation of the Patterson-
+   Holdsworth auditory filter bank," Apple Computer Technical Report
+   #35.
+
+Terhardt, E. (1987) "Psychophysics of audio signal processing and the
+   role of pitch in speech," In M.E.H. Schouten (Ed.) The
+   psychophysics of speech perception, Martinus Nijhoff:Leiden,
+   271-283.
+
+Zwicker, E. (1961). "Subdivision of the audible frequency range into
+   critical bands (frequenzgruppen),"  J. Acoust. Soc. Am. 33, 248.
+