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Variability in Production of Non-Sibilant Fricative ç in /hi/.

, , and . INTERSPEECH, page 620-624. ISCA, (2022)

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Design, Compilation, and Preliminary Analyses of Balanced Corpus of Contemporary Written Japanese., , , , , , , , and . LREC, European Language Resources Association, (2010)Coarticulatory reinterpretation of allophonic variation: Corpus-based analysis of /z/ in spontaneous Japanese.. J. Phonetics, 38 (3): 360-374 (2010)Motion detection of articulatory movement with paralinguistic information using real-time MRI movie., , and . O-COCOSDA, page 1-6. IEEE, (2019)Phonetic and phonological characteristics of paralinguistic information in spoken Japanese.. ICSLP, ISCA, (1998)Standardising annotation schemes for Japanese discourse., , , , , , , , , and 8 other author(s). LREC, page 731-738. European Language Resources Association, (1998)Toward the realization of spontaneous speech recognition - introduction of a Japanese priority program and preliminary results -., , , , and . INTERSPEECH, page 518-521. ISCA, (2000)Some articulatory and acoustic changes associated with emphasis in spoken English., , , and . INTERSPEECH, page 247-250. ISCA, (2000)Prediction of F0 height of filled pauses in spontaneous Japanese: a preliminary report.. DiSS, page 41-44. ISCA, (2013)A New Model of Final Lowering in Spontaneous Monologue.. INTERSPEECH, page 1233-1237. ISCA, (2017)Electromyographie studies on the production of pitch contour in accentless dialects in Japanese., , , and . ICSLP, page 783-786. ISCA, (1992)