Quantifying the cepstral peak prominence, a measure of dysphonia.
暂无分享,去创建一个
James Hillenbrand | Robert T. Sataloff | Robert Eller | Mona Abaza | Deborah Lurie | Yolanda D. Heman-Ackah | Adam Rubin | J. Hillenbrand | Swapna K. Chandran | Y. Heman-Ackah | A. Rubin | D. Michael | R. Heuer | R. Sataloff | M. Abaza | R. Eller | D. Lurie | K. Lyons | Griet Laureyns | Deirdre D. Michael | Reinhardt Heuer | Swapna Chandran | Karen Lyons | Venu Divi | Joanna Lott | Jennifer Johnson | V. Divi | G. Laureyns | Joanna Lott | Jennifer L. Johnson | Y. Heman‐Ackah | Venu Divi
[1] M. Kramer,et al. Clinical Epidemiology and Biostatistics , 1988, Springer Berlin Heidelberg.
[2] Christopher Dromey,et al. Estimating dysphonia severity in continuous speech: Application of a multi-parameter spectral/cepstral model , 2009, Clinical linguistics & phonetics.
[3] R. Balasubramanium,et al. Cepstral analysis of voice in unilateral adductor vocal fold palsy. , 2011, Journal of voice : official journal of the Voice Foundation.
[4] J. Fleiss,et al. Intraclass correlations: uses in assessing rater reliability. , 1979, Psychological bulletin.
[5] Yolanda D Heman-Ackah. Reliability of calculating the cepstral peak without linear regression analysis. , 2004, Journal of voice : official journal of the Voice Foundation.
[6] Jayashree S Bhat,et al. Cepstral analysis of voice in persons with vocal nodules. , 2010, Journal of voice : official journal of the Voice Foundation.
[7] A. Noll. Cepstrum pitch determination. , 1967, The Journal of the Acoustical Society of America.
[8] Rahul Shrivastav,et al. A computational model to predict changes in breathiness resulting from variations in aspiration noise level. , 2010, Journal of voice : official journal of the Voice Foundation.
[9] Y. Heman-Ackah,et al. The relationship between cepstral peak prominence and selected parameters of dysphonia. , 2002, Journal of voice : official journal of the Voice Foundation.
[10] C. Baylor,et al. The effect of perceptual training on inexperienced listeners' judgments of dysphonic voice. , 2006, Journal of voice : official journal of the Voice Foundation.
[11] J. Hillenbrand,et al. Acoustic correlates of breathy vocal quality. , 1994, Journal of speech and hearing research.
[12] H. Hoffman,et al. Reliability of clinician-based (GRBAS and CAPE-V) and patient-based (V-RQOL and IPVI) documentation of voice disorders. , 2007, Journal of voice : official journal of the Voice Foundation.
[13] J. Hillenbrand,et al. Acoustic correlates of breathy vocal quality: dysphonic voices and continuous speech. , 1996, Journal of speech and hearing research.
[14] Youri Maryn,et al. Spectral, cepstral, and multivariate exploration of tracheoesophageal voice quality in continuous speech and sustained vowels , 2009, The Laryngoscope.
[15] J. Hillenbrand,et al. Cepstral Peak Prominence: A More Reliable Measure of Dysphonia , 2003, The Annals of otology, rhinology, and laryngology.
[16] Benjamin Halberstam. Acoustic and Perceptual Parameters Relating to Connected Speech Are More Reliable Measures of Hoarseness than Parameters Relating to Sustained Vowels , 2004, ORL.
[17] A. Noll. Short‐Time Spectrum and “Cepstrum” Techniques for Vocal‐Pitch Detection , 1964 .