Mobile Communication Devices, Ambient Noise, and Acoustic Voice Measures.
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Youri Maryn | Andrzej Zarowski | Femke Ysenbaert | Robby Vanspauwen | A. Zarowski | Y. Maryn | R. Vanspauwen | Femke Ysenbaert
[1] Cecyle Perry Carson,et al. The effect of noise on computer-aided measures of voice: a comparison of CSpeechSP and the Multi-Dimensional Voice Program software using the CSL 4300B Module and Multi-Speech for Windows. , 2003, Journal of voice : official journal of the Voice Foundation.
[2] Michael Wolf,et al. A clinical comparison between two acoustic analysis softwares: MDVP and Praat , 2009, Biomed. Signal Process. Control..
[3] Peter B Shaw,et al. Evaluation of smartphone sound measurement applications. , 2014, The Journal of the Acoustical Society of America.
[4] D. Jamieson,et al. Acoustic discrimination of pathological voice: sustained vowels versus continuous speech. , 2001, Journal of speech, language, and hearing research : JSLHR.
[5] M. A. Palmer,et al. Effects of environmental noise on computer-derived voice estimates from female speakers. , 2000, Journal of voice : official journal of the Voice Foundation.
[6] Pedro Gómez-Vilda,et al. The effectiveness of the glottal to noise excitation ratio for the screening of voice disorders. , 2010, Journal of voice : official journal of the Voice Foundation.
[7] P. Van cauwenberge,et al. Acoustic measurement of overall voice quality: a meta-analysis. , 2009, The Journal of the Acoustical Society of America.
[8] Dirk Michaelis,et al. Acoustic "breathiness measures" in the description of pathologic voices , 1998, Proceedings of the 1998 IEEE International Conference on Acoustics, Speech and Signal Processing, ICASSP '98 (Cat. No.98CH36181).
[9] R H Colton. Vocal intensity in the modal and falsetto registers. , 1973, Folia phoniatrica.
[10] J. Hillenbrand,et al. Acoustic correlates of breathy vocal quality: dysphonic voices and continuous speech. , 1996, Journal of speech and hearing research.
[11] J. Hillenbrand,et al. Cepstral Peak Prominence: A More Reliable Measure of Dysphonia , 2003, The Annals of otology, rhinology, and laryngology.
[12] Svante Granqvist,et al. Guidelines for selecting microphones for human voice production research. , 2010, American journal of speech-language pathology.
[13] Antanas Verikas,et al. Exploring the feasibility of smart phone microphone for measurement of acoustic voice parameters and voice pathology screening , 2015, European Archives of Oto-Rhino-Laryngology.
[14] Dennis R. Ingrisano,et al. Environmental NoiseA Threat to Automatic Voice Analysis , 1998 .
[15] M A Birchall,et al. Reliability of OperaVOX against Multidimensional Voice Program (MDVP) , 2015, Clinical otolaryngology : official journal of ENT-UK ; official journal of Netherlands Society for Oto-Rhino-Laryngology & Cervico-Facial Surgery.
[16] Youri Maryn,et al. The Acoustic Voice Quality Index: toward improved treatment outcomes assessment in voice disorders. , 2010, Journal of communication disorders.
[17] Jack J. Jiang,et al. Nonlinear dynamic analysis of voices before and after surgical excision of vocal polyps. , 2004, The Journal of the Acoustical Society of America.
[18] Ilse Smits,et al. A comparative study of acoustic voice measurements by means of Dr. Speech and Computerized Speech Lab. , 2005, Journal of voice : official journal of the Voice Foundation.
[19] Holger Hanschmann,et al. Comparability of Computer-Supported Concurrent Voice Analysis , 2015, Folia Phoniatrica et Logopaedica.
[20] James Hillenbrand,et al. Quantifying the cepstral peak prominence, a measure of dysphonia. , 2014, Journal of voice : official journal of the Voice Foundation.
[21] Corina J van As-Brooks,et al. Acoustic signal typing for evaluation of voice quality in tracheoesophageal speech. , 2006, Journal of voice : official journal of the Voice Foundation.
[22] 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.
[23] D. Mehta,et al. Evidence-based clinical voice assessment: a systematic review. , 2013, American journal of speech-language pathology.
[24] Dimitar D Deliyski,et al. Adverse effects of environmental noise on acoustic voice quality measurements. , 2005, Journal of voice : official journal of the Voice Foundation.
[25] Alison Behrman,et al. Common practices of voice therapists in the evaluation of patients. , 2005, Journal of voice : official journal of the Voice Foundation.
[26] Youri Maryn,et al. Calibration of Clinical Audio Recording and Analysis Systems for Sound Intensity Measurement. , 2015, American journal of speech-language pathology.
[27] Xuefu Zhou,et al. An iOS-based Cepstral Peak Prominence Application: Feasibility for Patient Practice of Resonant Voice. , 2017, Journal of voice : official journal of the Voice Foundation.
[28] Sheena Reilly,et al. Comparability of Modern Recording Devices for Speech Analysis: Smartphone, Landline, Laptop, and Hard Disc Recorder , 2015, Folia Phoniatrica et Logopaedica.
[29] Y. Maryn,et al. Auditory-Perceptual and Acoustic Methods in Measuring Dysphonia Severity of Korean Speech. , 2016, Journal of voice : official journal of the Voice Foundation.
[30] Y. Maryn,et al. Objective assessment of pediatric voice disorders with the acoustic voice quality index. , 2012, Journal of voice : official journal of the Voice Foundation.
[31] Benjamin Halberstam. Acoustic and Perceptual Parameters Relating to Connected Speech Are More Reliable Measures of Hoarseness than Parameters Relating to Sustained Vowels , 2004, ORL.
[32] W S Winholtz,et al. Effect of microphone type and placement on voice perturbation measurements. , 1993, Journal of speech and hearing research.
[33] Hans Werner Strube,et al. Glottal-to-Noise Excitation Ratio - a New Measure for Describing Pathological Voices , 1997 .
[34] Jody Kreiman,et al. Comparison of Voice Analysis Systems for Perturbation Measurement , 1996 .
[35] C Manfredi,et al. Smartphones Offer New Opportunities in Clinical Voice Research. , 2017, Journal of voice : official journal of the Voice Foundation.
[36] D Michaelis,et al. Selection and combination of acoustic features for the description of pathologic voices. , 1998, The Journal of the Acoustical Society of America.
[37] Youri Maryn,et al. Perturbation Measures of Voice: A Comparative Study between Multi-Dimensional Voice Program and Praat , 2009, Folia Phoniatrica et Logopaedica.
[38] Haldun Oğuz,et al. Comparison of results in two acoustic analysis programs: Praat and MDVP , 2011, Turkish Journal of Medical Sciences.
[39] E. Lin,et al. Evaluating iPhone Recordings for Acoustic Voice Assessment , 2012, Folia Phoniatrica et Logopaedica.
[40] Jack J. Jiang,et al. Perturbation and nonlinear dynamic analyses of voices from patients with unilateral laryngeal paralysis. , 2005, Journal of voice : official journal of the Voice Foundation.
[41] B. Barsties,et al. [The Acoustic Voice Quality Index. Toward expanded measurement of dysphonia severity in German subjects]. , 2012, HNO.
[42] P. Van cauwenberge,et al. Toward improved ecological validity in the acoustic measurement of overall voice quality: combining continuous speech and sustained vowels. , 2010, Journal of voice : official journal of the Voice Foundation.
[43] R F Coleman,et al. Fundamental frequency-sound pressure level profiles of adult male and female voices. , 1977, Journal of speech and hearing research.
[44] B. Barsties,et al. Der Acoustic Voice Quality Index in Deutsch , 2012 .
[45] R. Hillman,et al. Consensus auditory-perceptual evaluation of voice: development of a standardized clinical protocol. , 2009, American journal of speech-language pathology.
[46] M. Bodt,et al. The value of the Acoustic Voice Quality Index as a measure of dysphonia severity in subjects speaking different languages , 2013, European Archives of Oto-Rhino-Laryngology.
[47] J. Hillenbrand,et al. Acoustic correlates of breathy vocal quality. , 1994, Journal of speech and hearing research.
[48] Youri Maryn,et al. Objective dysphonia measures in the program Praat: smoothed cepstral peak prominence and acoustic voice quality index. , 2015, Journal of voice : official journal of the Voice Foundation.
[49] M P Karnell,et al. Comparison of fundamental frequency and perturbation measurements among three analysis systems. , 1995, Journal of voice : official journal of the Voice Foundation.