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Original Article

Time-frequency Analysis of Transient Evoked Otoacoustic Emissions via Smoothed Pseudo Wigner Distribution

Pages 91-96 | Received 24 Feb 1994, Accepted 22 Jul 1994, Published online: 12 Oct 2009

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (7)

Vicky W. Zhang & Bradley McPherson. (2008) A review of otoacoustic emission hearing screening technology. Audiological Medicine 6:2, pages 100-114.
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S. Hatzopoulos, J. Petrucell, T. Morkt & A. Martini. (2003) TEOAE recording protocols revised: data from adult subjects: Revision de protocolos de registro de TEOAE: informacion de sujetos adultos. International Journal of Audiology 42:6, pages 339-347.
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Stavros Hatzopoulos, Jun Cheng, Antoni Grzanka & Alessandro Martini. (2000) Time-Frequency Analyses of TEOAE Recordings from Normals and SNHL Patients. Audiology 39:1, pages 1-12.
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S. Hatzopoulos, J. Cheng, A. Grzanka, T. Morlet & A. Martini. (2000) Optimization of TEOAE recording protocols: A linear protocol derived from parameters of a time-frequency analysis: a pilot study on neonatal subjects. Scandinavian Audiology 29:1, pages 21-27.
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S. Hatzopoulos, A. Martini & S. D. G. Stephens. (1999) TEOAE-Based Estimation of the Auditory Threshold in the Mid-Octave Frequencies. British Journal of Audiology 33:6, pages 415-422.
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S. Hatzopoulos, J. Petruccelli, G. Pelosi, A. Martini. (1999) A TEOAE Screening Protocol Based on Linear Click Stimuli: Performance and Scoring Criteria. Acta Oto-Laryngologica 119:2, pages 135-139.
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Arne N. Rasmussen, Poul AA Osterhammel, Peter T. Johannesen & Britt Borgkvist. (1998) Neonatal Hearing Screening Using Otoacoustic Emissions Elicited by Maximum Length Sequences. British Journal of Audiology 32:6, pages 355-366.
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Articles from other publishers (16)

Tomasz Spustek, Wiesław Wiktor Jedrzejczak & Katarzyna Joanna Blinowska. (2015) Matching Pursuit with Asymmetric Functions for Signal Decomposition and Parameterization. PLOS ONE 10:6, pages e0131007.
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V.W. Zhang, Z.G. Zhang, B. McPherson, Y. Hu & Y.S. Hung. (2011) Detection improvement for neonatal click evoked otoacoustic emissions by time–frequency filtering. Computers in Biology and Medicine 41:8, pages 675-686.
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W. Wiktor Jedrzejczak, Konrad Kwaskiewicz, Katarzyna J. Blinowska, Krzysztof Kochanek & Henryk Skarzynski. (2009) Use of the matching pursuit algorithm with a dictionary of asymmetric waveforms in the analysis of transient evoked otoacoustic emissions. The Journal of the Acoustical Society of America 126:6, pages 3137-3146.
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James M. Harte, Gilles Pigasse & Torsten Dau. (2009) Comparison of cochlear delay estimates using otoacoustic emissions and auditory brainstem responses. The Journal of the Acoustical Society of America 126:3, pages 1291-1301.
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Z.G. Zhang, V.W. Zhang, S.C. Chan, B. McPherson & Y. Hu. (2008) Time–frequency analysis of click-evoked otoacoustic emissions by means of a minimum variance spectral estimation-based method. Hearing Research 243:1-2, pages 18-27.
Crossref
D. M. McNamara, A. Goli & A. K. Ziarani. (2008) High-resolution analysis of transient evoked otoacoustic emissions. High-resolution analysis of transient evoked otoacoustic emissions.
Alessia Paglialonga, Gabriella Tognola, Marta Parazzini, Mark E. Lutman, Steven L. Bell, Gyorgy Thuroczy & Paolo Ravazzani. (2007) Effects of mobile phone exposure on time frequency fine structure of transiently evoked otoacoustic emissions. The Journal of the Acoustical Society of America 122:4, pages 2174-2182.
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W. Wiktor Jedrzejczak, Stavros Hatzopoulos, Alessandro Martini & Katarzyna J. Blinowska. (2007) Otoacoustic emissions latency difference between full-term and preterm neonates. Hearing Research 231:1-2, pages 54-62.
Crossref
V. Marozas, A. Janusauskas, A. Lukosevicius & L. Sornmo. (2006) Multiscale Detection of Transient Evoked Otoacoustic Emissions. IEEE Transactions on Biomedical Engineering 53:8, pages 1586-1593.
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M.D. Abolhasani & Y. Salimpour. (2004) Multirate signal processing of otoacoustic emission and its application on signal to noise ratio improvement. Multirate signal processing of otoacoustic emission and its application on signal to noise ratio improvement.
Dawn Konrad-Martin & Douglas H. Keefe. (2003) Time-frequency analyses of transient-evoked stimulus-frequency and distortion-product otoacoustic emissions: Testing cochlear model predictions. The Journal of the Acoustical Society of America 114:4, pages 2021-2043.
Crossref
A. Janusauskas, L. Sornmo, O. Svensson & B. Engdahl. (2002) Detection of transient-evoked otoacoustic emissions and the design of time windows. IEEE Transactions on Biomedical Engineering 49:2, pages 132-139.
Crossref
S. Weiss, U. Hoppe, M. Schabert & U. Eysholdt. (2001) Wavelet analysis of transient evoked otoacoustic emissions for differential diagnosis of cochlear hearing loss. Wavelet analysis of transient evoked otoacoustic emissions for differential diagnosis of cochlear hearing loss.
G. Tognola, F. Grandori & P. Ravazzani. (1998) Wavelet analysis of click-evoked otoacoustic emissions. IEEE Transactions on Biomedical Engineering 45:6, pages 686-697.
Crossref
Jun Cheng. (1998) Signal processing approaches on otoacoustic emissions. Signal processing approaches on otoacoustic emissions.
Gabriella Tognola, Ferdinando Grandori & Paolo Ravazzani. (1997) Time-frequency distributions of click-evoked otoacoustic emissions. Hearing Research 106:1-2, pages 112-122.
Crossref

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