Literature on Repetition Pitch and related stuff

Amagai, S., Dooling, R.J., Shamma, S., Kidd, T.L., and Lohr, B. (1999). "Detection of modulation in spectral envelopes and linear-rippled noises by budgerigars (Melopsittacus undulatus)," J. Acoust. Soc. Am. 105, 2029-2035.

Atal, B.S., Schroeder, M.R., and Kuttruff, K.H. (1962). “Perception of coloration in filtered gaussian noise; short-time spectral analysis by the ear”, Proc. 4th Int. Congr. Acoust., Copenhagen, H31, pp. 1-4.

Au, W.W.L. (1993). The Sonar of Dolphins (Springer, N.York), pp. 237.

Au, W.W.L., and Pawloski, J.L. (1989). “Detection of noise with rippled spectra by the atlantic bottlenose dolphin,” J. Acoust. Soc. Am. 86, 591-596.

Bassett, J.G., and Eastmond, E.J. (1964). “Echolocation: measurement of pitch versus distance for sounds reflected from a flat surface,” J. Acoust. Soc. Am. 36, 911-916.

Baumgarten, A. (1876). “Reflexionstöne,” Ber. der Naturw. Med. Vereins in Innsbruck 7, 116.

Bech, S. (1995). "Timbral aspects of reproduced sound in small rooms. I," J. Acoust. Soc. Am. 97, 1717-1726.

Bilsen, F. A. (1966). “Repetition pitch: monaural interaction of a sound with the reptition of the same, but phase shifted, sound,” Acustica 17, 295-300. PDF

Bilsen, F. A. (1967/68). “Thresholds of perception of repetition pitch. conclusions concerning coloration in room acoustics and correlation in the hearing organ,” Acustica 19, 27-32. PDF

Bilsen, F. A. (1968). On the interaction of a sound with its repetitions, Ph.D. thesis, Delft Univ. Technol., pp. 1-93.

Bilsen, F. A. (1970). “Repetition pitch; its implication for hearing theory and room acoustics,” in Frequency Analysis and Periodicity Detection in Hearing, ed. R. Plomp and G. F. Smoorenburg (A. W. Sijthoff, Leiden), pp. 291-299.

Bilsen, F. A. (1976 b). “Cosine (ripple) noise as a diagnostic tool to determine the quality of peripheral frequency analysis,” Proc. XIII Int. Congr. Audiol., Florence, pp. 70-71.

Bilsen, F. A. (1977). “Pitch of noise signals: evidence for a ‘central spectrum’,” J. Acoust. Soc. Am. 61, 150-161.

Bilsen, F.A. (1990). “Comments on “Broadband repetition pitch: Spectral dominance or pitch averaging?”[J.Acoust.Soc.Am.84,2058-2062(1988)],” J. Acoust. Soc. Am. 87, 2254-2255.

Bilsen, F.A. (2006). “Repetition Pitch glide from the step pyramid at Chichen Itza (L),” J. Acoust. Soc. Am. 120, 594-596.

Bilsen, F. A., and Kate, J. H. ten (1977). “Preservation of the internal spectrum of complex signals at high intensities,” in Psychophysics and Physiology of Hearing, ed. E. F. Evans and J. P. Wilson (Academic, London), pp. 193-195.

Bilsen, F. A., and Kievits, I. (1989). “The minimum integration time of the auditory system,” Prepr. 86th Conv. Audio Eng. Soc., Hamburg, 2746 (B-3), pp. 1-6.

Bilsen, F. A., and Ritsma, R. J. (1967/68). “Repetition pitch mediated by temporal fine structure at dominant spectral regions,” Acustica 19, 114-115. PDF

Bilsen, F. A., and Ritsma, R. J. (1969/70). “Repetition pitch and its implication for hearing theory,” Acustica 22, 63-73. PDF

Bilsen, F. A., and Ritsma, R. J. (1970). “Some parameters influencing the perceptibility of pitch,” J. Acoust. Soc. Am. 47, 469-475.

Bilsen, F. A., and Wieman, J. L. (1980). “Atonal periodicity sensation for comb filtered noise signals,” in Psychophysical, Physiological and Behavioural Studies in Hearing, ed. G. van den Brink and F. A. Bilsen (University Press, Delft), pp. 379-383.

Bilsen, F.A., and Wittkämper, F.W. (1982). “The JND in pitch of comb filtered noise,” Proc. 16th Int. Congr. Audiol., Helsinki, p. 54.

Bilsen, F. A., Frietman, E. E. E., and Willems, W. (1977). “Training in ‘hearing obstacles’ by the blind,” Proc. 9th Int. Congr. Acoust., Madrid, p. 335.

Bilsen, F. A., Kate, J. H. ten, Buunen, T. J. F., and Raatgever, J. (1975). “Responses of single units in the cochlear nucleus of the cat to cosine noise,” J. Acoust. Soc. Am. 58, 858-866.

Boer, E. de (1976). "On the 'Residue' and auditory pitch perception," in Handbook of Sensory Physiology, Vol. V-3, ed. W.D. Keidel and W.D. Neff (Springer Verlag, Berlin), pp. 479-583.

Boerger, G. (1974). “Coding of repetition noise in the cochlear nucleus in cat,” in Facts and Models in Hearing, ed. E. Zwicker and E. Terhardt (Springer, Berlin), pp. 206-215.

Boerger, G., and Gruber, J. (1971). “Codierung von Rauschsignalen durch das periphere Gehör der Katze,” Proc. 7th Int. Congr. Acoust., Budapest, 24 H 9, 497-500.

Buunen, T.J.F. (1980). “The effect of stimulus duration on the prominence of pitch,” in Psychophysical, Physiological and Behavioural Studies in Hearing, ed. G. van den Brink and F. A. Bilsen (University Press, Delft), pp. 374-378.

Cariani, P.A., and Delgutte, B. (1996). “Neural correlates of the pitch of complex tones. I. Pitch and pitch salience,” J. Neurophysiol. 76, 1698-1716.

Cheveigné, A. de (2005). "Pitch perception models," in Pitch. Neural Coding and Perception, ed. C.J. Plack, A.J. Oxenham, R.R. Fay, and A.N. Popper (Springer, Berlin), pp. 169-234.

Chistovich, L.A. (1959). “Discrimination of the time interval bewteen two short acoustic pulses,” Akust. Zhurn. 5, 480-484.

Cohen, M.A., Grossberg, S., and Wyse, L.L. (1995). "A spectral network model of pitch perception," J. Acoust. Soc. Am. 98, 862-879.

Cotzin, M., and Dallenbach, K.M. (1950). “Facial vision: the role of pitch and loudness in the perception of obstacles by the blind,” Am. J. Psychol. 63, 485-.

Davies, R.O., Greenhough, M., and Williams, R.P. (1973). “The pitch of pulse trains with random arrangements of two basic interpulse times,” Acustica 29, 93-100.

Declercq, N.F., Degrieck, J., Briers, R., and Leroy, O. (2004). “A theoretical study of special acoustic effects caused by the staircase of the EL Castillo pyramid at the Mayan ruins of Chichen Itza in Mexico,” J. Acoust. Soc. Am. 116, 3328-3335.

Denham, S. (2005). “Pitch detection of dynamic iterated rippled noise by humans and a modified auditory model,” Biosystems 79, 199-206.

Fastl, H. (1980). “Pitch strength and masking patterns of low-pass noise,” in Psychophysical Physiological and Behavioural Studies in Hearing, ed. G. van den Brink, and F. A. Bilsen (University Press, Delft), pp. 334-339.

Fastl, H. (1988). “Pitch and pitch strength of peaked ripple noise,” in Basic Issues in Hearing, ed. H. Duifhuis, J.W. Horst, and H.P. Wit (Academic Press, London), pp. 370-379.

Fastl, H. (1998). “Pitch strength and frequency discrimination for noise bands or complex tones,” in Psychophysical and Physiological Advances in Hearing, ed. A.R. Palmer, A. Rees, A.Q. Summerfield, and R. Meddis (Whurr Publishers, London), pp. 238-245.

Fastl, H., and Stoll, G. (1979). “Scaling of pitch strength,” Hear. Res. 1, 293-301.

Fay, R.R., Yost, W.A., and Coombs, S. (1983). “Psychophysics and neurophysiology of repetition noise processing in a vertebrate auditory system,” Hear. Res. 12, 31-55.

Flanagan, J.L., and Lummis, R.C. (1970). "Signal processing to reduce multipath distortion in small rooms," J. Acoust. Soc. Am. 47, 1475-1482.

Fourcin, A.J. (1965). "The pitch of noise with periodic spectral peaks," Proc. 5th Int. Congr. Acoust., Liege, B42.

Furduev, V.V. (1959). “Interference and coherence of acoustic signals,” Soviet Phys. Acoust. 5, 110.

Gruber, J., and Möllmann, W. (1971). “Die Tonhöhen-Unterschiedsschwelle von Wiederholungsrauschen”, In Proc. 7th Int. Congr. Acoust., Budapest, pp. 5.

Hartmann, W.M. (1975). “The electronic music synthesizer and the physics of music.” Am. J. Phys. 43, 755-763.

Hartmann, W.M. (1978). “Flanging and phasers,” J. Audio Eng. Soc. 26, 439-443.

Hartmann, W.M. (1997). Signals, Sound, and Sensation (AIP Press, Woodbury, NY), pp. 361-376.

Harvey, F.K., and Uecke, E.H. (1961). “Compatibility problems in two-channel stereophonic recording,” J. Audio Eng. Soc. 9, 8-12.

Henning, G.B., and Gaskell, H. (1981). “Monaural phase sensitivity with Ronken’s paradigm,” J. Acoust. Soc. Am. 70, 1669-1673.

Hermann, L. (1912). “Neue Versuche zur Frage der Unterbrechungstöne, mit einem Anhang über Reflexionstöne unsw.,” Arch. Ges. Physiol. 146, 249-294.

Houtgast, T. (1974). “Masking patterns and lateral inhibition,” in Facts and Models in Hearing, ed. E. Zwicker and E. Terhardt (Springer, Berlin), pp. 258-268.

Houtsma, A.J.M. (1984). “Pitch salience of various complex sounds,” Music. Perc. 1, 296-307.

Houtsma, A.J.M. (1995). "Pitch perception," in Hearing, ed. B.C.J. Moore (Academic, London), pp. 267-291.

Huygens, C. (1693). “En envoiant le problème d’Alhazen en France,” Correspondance No. 2840 printed in Oeuvres Complètes, Vol. 10, ed. Societé Hollandaise des Sciences (Nijhoff, Den Haag, 1950), pp. 570-571.

Jenkins, R.A. (1961). “Perception of pitch, timbre, and loudness,” J. Acoust. Soc. Am. 33, 1550-1557.

Kaernbach, C., and Demany, L. (1998)." Psychophysical evidence against the autocorrelation theory of auditory temporal processing," J. Acoust. Soc. Am. 104, 2298-2306.

Kate, J.H. ten, and Bekkum, M.F. (1988). “Synchrony-dependent autocorrelation in eight-nerve-fiber response to rippled noise,” J. Acoust. Soc. Am. 84, 2092-2102.

Kate, J. H. ten, Raatgever, J., and Bilsen, F. A. (1977). “Neural responses to cosine noise in a wide range of intensity levels,” Proc. 9th Int. Congr. Acoust., Madrid, p. 532.

Kate, J. H. ten, Bilsen, F. A., Raatgever, J., and Buunen, T. J. F. (1974). “Single unit responses in acoustic nuclei of a cat to noise and its attenuated repetition,” Proc. 8th Int. Congr. Acoust., London, p. 182.

Kates, J.M. (1984). "A perceptual criterion for loudspeaker evaluation," J. Audio Eng. Soc. 32, 938-945.

Kates, J.M. (1985). "A central spectrum model for the perception of coloration in filtered Gaussian noise," J. Acoust. Soc. Am. 77, 1529-1534.

Kay, Pye, J.D., and Nordmark, J. (1961). “Perception of distance in animal echo-location,” Nature 22, 361-364.

Klimenko, G.K. (1966). “Aural perception of timbre variation in the addition of a signal with its echo,” Soviet Phys. Acoust. 12, 98-100.

Krishnan, A., Swaminathan, J., and Gandour, J. (2006). “Pitch encoding of dynamic iterated rippled noise in the human brainstem is sensitive to language experience,” Assoc. Res. Otolaryngol. Abs. 37-38.

Krumbholz, K., Patterson, R.D., and Pressnitzer, D. (2000). “The lower limit of pitch as determined by rate discrimination,” J. Acoust. Soc. Am. 108, 1170-1180.

Krumbholz, K., Maresh, K., Tomlinson, J., Patterson, R.D., Seither-Preisler, A., and Lütkenhöner, B. (2004). "Mechanisms determining the salience of coloration in echoed sound: influence of interaural time and level differences," J. Acoust. Soc. Am. 115, 1696-1704.

Kuhl, W. (1965). “Das Zusammenwirken von direktem Schall, ersten Reflexionen und Nachhall bei der Hörsamkeit von Räumen und bei Schallaufnahmen,” Rundfunktechn. Mitt. 9, 170-183.

Kuhl, W. (1983). "Hörereignisorte und Wahrnehmungsschwellen  verzögerten Schalls bei einkanaliger Übertragung und zweiohrigem Hören," Acustica 54, 97-105.

Kuttruff, H. (1965/66). “Ueber Autokorrelationsmessungen in der Raumakustik,” Acustica 16, 166-174.

Kuttruff, H. (1968). Proc. 6th Int. Congr. Acoust., Tokyo, GP-4-1.

Kuttruff, H. (1979). Room Acoustics (Applied Science Publishers Ltd, London), 2nd ed., pp. 218-228.

Kylstra, P.H. (1964). “Can a melody be heard in monotonous sounds?,” Proc. Kon. Ned. Akad. Wetensch. 67, 351-359.

Leek, M.R., and Summers, V. (2001). "Pitch strength and pitch dominance of iterated rippled noises in hearing-impaired listeners," J. Acoust. Soc. Am. 109, 2944-2954.

Licklider, J.C.R. (1951). “A duplex theory of pitch perception,” Experientia 7, 128-134.

Licklider, J.C.R. (1956). “Auditory frequency analysis,” in Information Theory ed. C. Cherry (Butterworth, London), pp. 253-268.

LIcklider, J.C.R. (1959). “Three auditory theories,” in Psychology, A Study of a Science, ed. S. Koch (McGraw-Hill, New York), Vol. I, pp. 41-144.

Licklider, J.C.R. (1962). “Periodicity pitch and related auditory process models,” Int. Audiol. 1, 11-36.

Lubman, D. (1998). “Archaeological acoustic study of chirped echo from the Mayan pyramid at Chichen Itza,” J. Acoust. Soc. Am. 104, 1763.

McClellan, M.E., and Small Jr., A.M. (1963). “Pitch perception of randomly triggered pulse pairs,” J. Acoust. Soc. Am. 35, 1881-1882.

McClellan, M.E., and Small Jr., A.M. (1965a). “Time Separation Pitch associated with correlated noise bursts,” J. Acoust. Soc. Am. 38, 142-143.

McClellan, M.E., and Small Jr., A.M. (1965b). “Time Separation Pitch associated with correlated noise pulses,” J. Acoust. Soc. Am. 38, 939.

McClellan, M.E., and Small Jr., A.M. (1966). “Time Separation Pitch associated with noise pulses,” J. Acoust. Soc. Am. 40, 570.

McClellan, M.E., and Small Jr., A.M. (1967). “Pitch perception of pulse pairs with random repetition rate,” J. Acoust. Soc. Am. 41, 690-699.

Minnaert, M. (1970). De Natuurkunde van ’t Vrije Veld 2 (Thieme & Cie, Zutphen, Netherlands), 3rd ed., pp. 45-53.

Müller, L. (1968). “Zur Klangfärbung durch Kurzzeitreflexionen bei Rauschen, Sprache und Musik,” Proc. 6th Int. Congr. Acoust., Tokyo, E-2-6, pp. E61-64.

Neuert, V., Verhey, J.L., and Winter, I.M. (2005). “Temporal representation of the delay of iterated rippled noise in the dorsal cochlear nucleus,” J. Neurophysiol. 93, 2766-2776.

Nordmark, J. (1963). "Some analogies between pitch and lateralization phenomena," J. Acoust. Soc. Am. 35, 1544-1547.

Nösselt, V. (1971). "An den Verarbeitungsgrenzen des Audioperzeptionssystems bei stochastischen Akust. Schwingungsstrukturen," Commun. Cogn. 4, 87-114.

Patterson, R.D., Handel, S., Yost, W.A., and Datta, A.J. (1996). “The relative strength of the tone and noise components in iterated rippled noise,” J. Acoust. Soc. Am. 100, 3286-3294.

Patterson, R.D., Yost, W.A., Handel, S., and Dutta, A.J. (2000). "The perceptual tone/noise ratio of merged iterated rippled noises," J. Acoust. Soc. Am. 107, 1578-1588.

Plomp, R. (1876). Aspects of Tone Sensation (Academic, London), pp. 138-139.

Raatgever, J., and Bilsen, F. A. (1992). “The pitch of anharmonic comb filtered noise reconsidered,” in Auditory Physiology and Perception, ed. Y. Cazals, L. Demany, and K. Horner (Pergamon, Oxford), pp. 215-222.

Rakowski, A. (1996). “Pitch strength, pitch value, and pitch distance,” Acustica 82, S80.

Ramos, O.A., Arias, C., Ortiz Skarp, A.H., and Frassoni, C.A. (2001). "Echoes in the dark," Proc. 17th Int. Congr. Acoust., Rome, Vol.IV, 3C.15.02, pp.2.

Reinicke, W.C. (1972). “Wiederhohlungstonhöhe bei bewegter Geräuschquelle,” Proc. DAGA, 317-320.

Ritsma, R.J., and Bilsen, F.A. (1970). “Spectral regions dominant in the perception of reptition pitch,” Acustica 23, 334-339. PDF

Ronken, D.A. (1970). "Monaural detection of a phase difference between clicks," J. Acoust. Soc. Am. 47, 1091-1099.

Rossing, Th.D. (1990). The Science of Sound (Addison-Wesley, Reading, MA), 2nd ed., pp. 121-122.

Sayles, M., and Winter, I.M. (2007). “The temporal representation of the delay of dynamic iterated rippled noise with positive and negative gain by single units in the ventral cochlear nucleus,” Brain Res. 2007.06.098.

Sayles, M., and Winter, I.M. (2008). "Ambiguous pitch and the temporal representation of inharmonic iterated rippled noise in the ventral cochlear nucleus," J. Neurosci. 28(46), 11925-11938.

Sayles, M., and Winter, I.M. (2008). "Reverberation challenges the temporal representation of the pitch of complex sounds," Neuron 58, 789-801.

Schroeder, M.R. (1958). “An artificial stereophonic effect obtained from a single audio signal,” J. Audio Eng. Soc. 6, 74-79.

Schroeder, M.R. (1961). “Improved quasi-stereophony and ‘colorless’ artificial reverberation,” J. Acoust. Soc. Am. 33, 1061-1064.

Schubert, P. (1966). “Untersuchungen über die Wahrnehmbarkeit von Einzelrückwürfen bei Musik,” Techn. Mitt. der RFZ 10, 124-127.

Shofner, W.P. (1991). “Temporal representation of rippled noise in the anteroventral cochlear nucleus of the chinchilla,” J. Acoust. Soc. Am. 90, 2450-2466.

Shofner, W.P., and Yost, W.A. (1997). “Discrimination of rippled-spectrum noise from flat-spectrum noise by chinchillas: evidence for a spectral dominance region,” Hear. Res. 110, 15-24.

Shofner, W.P. (1999). “Responses of cochlear nucleus units in the chinchilla to iterated rippled noises: analysis of neural autocorrelograms,” J. Neurophysiol. 81, 2662-2674.

Small Jr., A.M., and McClellan, M.E. (1962). “Pitch of double pulse trains,” J. Acoust. Soc. Am. 34, 739.

Small Jr., A.M., and McClellan, M.E. (1963). “Pitch associated with time delay between two pulse trains,” J. Acoust. Soc. Am. 35, 1246-1255.

Somerville, T., Gilford, C.L.S., Spring, N.F., and Negus, R.D.M. (1966). “Recent work on the effects of reflectors in concert halls and music studios,” J. Sound. Vib. 3, 127-134.

Supa, M., Cotzin, M., and Dallenbach, K.M. (1944). “Facial vision: the perception of obstacles by the blind,” Am. J. Psychol. 57, 133-.

Supin, A.Y., Popov, V.V., and Milekhina, O.N. (1994). “Frequency resolving power of the human’s hearing,” Neuroscience Letters 165, 195-198.

Supin, A.Y., Popov, V.V., Milekhina, O.N., and Tarakanov, M.B. (1994). “Frequency resolving power measured with rippled noise,” Hear. Res. 78, 31-40.

Supin, A.Y., Popov, V.V., Milekhina, O.N., and Tarakanov, M.B. (1997). “Frequency-temporal resolution of hearing measured by rippled noise,” Hear. Res. 108, 17-27.

Supin, A.Y., Popov, V.V., Milekhina, O.N., and Tarakanov, M.B. (1998). “Ripple density resolution for various rippled-noise patterns,” J. Acoust. Soc. Am. 103, 2042-2050.

Swaminathan, j., Anathanarayan, K., Gandour, J.T., and Xu, Y. (2007). “Application of static and dynamic iterated rippled noise to evaluate  pitch encoding in the human auditory brainstem,” IEEE Trans. Biomed. Eng., to be published.

Thurlow, W.R. (1957). “Further observations on pitch associated with a time difference bewteen two pulse trains,” J. Acoust. Soc. Am. 29, 1310-1311.

Thurlow, W.R. (1958). “Some theoretical implications of the pitch of double-pulse trains,” Am. J. Psychol. 71, 448-450.

Thurlow, W.R., and Small Jr., A.M. (1955). “Pitch perception for certain periodic auditory stimuli,” J. Acoust. Soc. Am. 27, 132-137.

Twersky, V. (1951). “On the physical basis for the perception of obstacles by the blind,” Am. J. Psychol. 64, 404-.

Verhey, J.L., and Winter, I.M. (2006). “The temporal representation of the delay of iterated rippled noise with positive and negative gain by chopper units in the cochlear nucleus,” Hear.Res. 216-217, 43-51.

Warren, R.M. (1999). Auditory Perception. A new Analysis and Synthesis (Cambridge Univ. Press), 2nd ed., pp. 255.

Warren, R.M., and Bashford Jr., J.A. (1988). “Bradband repetition pitch: Spectral dominance or pitch averaging,” J. Acoust. Soc. Am. 84, 2058-2062.

Warren, R.M., and Wrightson, J.M. (1981). “Stimuli producing conflicting temporal and spectral cues to frequency,” J. Acoust. Soc. Am. 70, 1020-1024.

Warren, R.M., Bashford, J.A., and Wrightson, J.M. (1980). “Infrapitch echo,” J. Acoust. Soc. Am. 68, 1301-1305.

Wiegrebe, L., and Patterson, R.D. (1999). "The role of envelope modulation in spectrally unresolved iterated rippled noise," Hear. Res. 132, 94-108.

Wiegrebe, L., and Winter, I.M. (2001a). “Temporal representation of iterated rippled noise as a function of delay and sound level in the ventral cochlear nucleus,” J. Neurophysiol. 85, 1206-1219.

Wiegrebe, L., Patterson, RD., Demany, L., and Carlyon, R.P. (1998). "Temporal dynamics of pitch strength in regular interval noises," J. Acoust. Soc. Am. 104, 2307-2313.

Wilson, J.P. (1967). “Psychoacoustics of obstacle detection using ambient or self-generated noise,” in Animal Sonar Systems, ed. R. G. Busnel (Louis-Jean, France), pp. 89-114.

Wilson, J.P. (1970). “An auditory after-image,” in Frequency Analysis and Periodicity Detection in Hearing, ed. R. Plomp and G. F. Smoorenburg (A. W. Sijthoff, Leiden), pp. 303-318.

Wilson, J.P. (1974). “Psychoacoustical and neurophysiological aspects of auditory pattern recognition,” in The Neurosciences: Third Study Program (MIT Press, Cambridge), pp. 147-153.

Wilson, J.P., and Evans, E.F. (1971). “Grating acuity of the ear: psychophysical and neurophysiological measures of frequency resolving power,” Proc. 7th Int. Congr. Acoust., Budapest, 20H14, pp. 397-400.

Winter, I.M. (2005). "The neurophysiology of pitch," in Pitch. Neural Coding and Perception, ed. C.J. Plack, A.J. Oxenham, R.R. Fay, and A.N. Popper (Springer, Berlin), pp. 99-146.

Winter, I.M., Wiegrebe, L., and Patterson, R.D. (2001). “The temporal representation of the delay of iterated rippled noise in the ventral cochlear nucleus of the guinea-pig,” J.Physiol. 537, 533-566.

Yost, W.A. (1980). “Temporal properties of the pitch and pitch strength of ripple noise,” in Psychophysical, Physiological and Behavioural Studies in Hearing, ed. G. van den Brink and F. A. Bilsen (University Press, Delft), pp. 367-373.

Yost, W.A. (1996). “Pitch of iterated rippled noise,” J. Acoust. Soc. Am. 100, 511-518.

Yost, W.A. (1996). “Pitch strength of iterated rippled noise,” J. Acoust. Soc. Am. 100, 3329-3335.

Yost, W.A. (1997). “Pitch strength of iterated rippled noise when the pitch is ambiguous,” J. acoust. Soc. Am. 101, 1644-1648.

Yost, W.A. (1998). “Auditory processing of sounds with temporal regularity: Auditory processing of regular interval stimuli,” in Psychophysical and Physiological Advances in Hearing, ed. A.R. Palmer, A. Rees, A.Q. Summerfield, and R. Meddis (Whurr Publishers, London), pp. 578-586.

Yost, W.A. (2009). "Iterated rippled noise discrimination at long durations," J.Acoust.Soc.Am. 126, 1336-1341.

Yost, W.A., and Hill, R. (1978). “Strength of the pitches associated with ripple noise,” J. Acoust. Soc. Am. 64, 485-492.

Yost, W.A., and Hill, R. (1979). “Models of the pitch and pitch strength of ripple noise,” J. Acoust. Soc. Am. 66, 400-410.

Yost, W.A., and Moore, M.J. (1987). "Temporal changes in a complex spectral profile," J. Acoust. Soc. Am. 81, 1896-1905.

Yost, W.A., Hill, R., and Perez-Falcon, T. (1978). “Pitch and pitch discrimination of broadband signals with rippled power spectra,” J. Acoust. Soc. Am. 63, 1166-1173.

Yost, W.A., Patterson, R.D., and Sheft, S. (1996). “A time domain description for the pitch strength of iterated rippled noise,” J. Acoust. Soc. Am. 99, 1066-1078.

Yost, W.A., Patterson, R.D., and Sheft, S. (1998). “The role of envelope in processing iterated rippled noise,” J. Acoust. Soc. Am. 104, 2349-2361.

Zanten, G.A. van, and Senten, C.J.J. (1983). “Spectro-temporal modulation transfer function (STMF) for various types of temporal modulation and a peak distance of 200 Hz,” J. Acoust. Soc. Am. 74, 52-62.