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The Prediction of Fatigue Using Speech as a Biosignal., , , , and . SLSP, volume 9449 of Lecture Notes in Computer Science, page 8-17. Springer, (2015)Using phonologically-constrained morphological analysis in continuous speech recognition., and . Comput. Speech Lang., 16 (2): 165-181 (2002)A phonetic alternative to cross-language voice conversion in a text-dependent context: evaluation of speaker identity., and . INTERSPEECH, page 2150-2153. ISCA, (2010)ELO-SPHERES intelligibility prediction model for the Clarity Prediction Challenge 2022., and . INTERSPEECH, page 3934-3938. ISCA, (2022)How Is Individuality Expressed in Voice? An Introduction to Speech Production and Description for Speaker Classification., , and . Speaker Classification (1), volume 4343 of Lecture Notes in Computer Science, page 1-20. Springer, (2007)Differences in Glottal Stop Perception between English and Japanese Listeners., , and . ICPhS, page 1830-1833. (2011)ProSynth: an integrated prosodic approach to device-independent, natural-sounding speech synthesis., , , , , , , and . Comput. Speech Lang., 14 (3): 177-210 (2000)Automated voice pathology discrimination from audio recordings benefits from phonetic analysis of continuous speech., , and . Biomed. Signal Process. Control., 86 (Part B): 105201 (September 2023)The benefits of tiered segmentation for the recognition of phonetic properties.. EUROSPEECH, page 1473-1476. ISCA, (1993)Neural Network Architecture That Combines Temporal and Summative Features for Infant Cry Classification in the Interspeech 2018 Computational Paralinguistics Challenge.. INTERSPEECH, page 137-141. ISCA, (2018)