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Automatic Estimation of Pathological Voice Quality Based on Recurrent Neural Network Using Amplitude and Phase Spectrogram.

, , , , and . INTERSPEECH, page 3880-3884. ISCA, (2020)

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Analysis of voice register transition focused on the relationship between pitch and formant frequency., and . ICPhS, University of Glasgow, (2015)Frequency-Domain Representation of Source-Filter Coupling and its Effect in the Production of Voice.. INTERSPEECH, page 2689-2692. ISCA, (2011)A model of glottal flow incorporating viscous-inviscid interaction., and . INTERSPEECH, page 1378-1381. ISCA, (2007)Voice production model employing an interactive boundary-layer analysis of glottal flow., , and . INTERSPEECH, page 764-767. ISCA, (2009)Morphological and acoustic analysis of the vocal tract using a multi-speaker volumetric MRI dataset.. INTERSPEECH, page 379-383. ISCA, (2015)Ultrasonic measurement of tongue motion., and . ICSLP, page 429-432. ISCA, (1990)A dynamical articulatory model using potential task representation., and . ICSLP, page 179-182. ISCA, (1994)Relations between utterance speed and articulatory movements., , and . EUROSPEECH, page 137-140. ISCA, (1999)Automatic Estimation of Pathological Voice Quality Based on Recurrent Neural Network Using Amplitude and Phase Spectrogram., , , , and . INTERSPEECH, page 3880-3884. ISCA, (2020)A Simulation Study on the Effect of Glottal Boundary Conditions on Vocal Tract Formants., and . INTERSPEECH, page 2292-2296. ISCA, (2017)