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Laryngeal voice quality changes in expression of prominence in continuous speech., , and . MAVEBA, page 135-138. Firenze University Press / ISCA, (2007)Objective Quality Measures for Glottal Inverse Filtering of Speech Pressure Signals., , , and . ICASSP (1), page 897-900. IEEE, (2005)Laryngeal voice quality in the expression of focus., , , and . INTERSPEECH, page 921-924. ISCA, (2010)Emotions in Short Vowel Segments: Effects of the Glottal Flow as Reflected by the Normalized Amplitude Quotient., and . ADS, volume 3068 of Lecture Notes in Computer Science, page 13-24. Springer, (2004)Assessment of glottal inverse filtering by using aeroelastic modelling of phonation and FE modelling of vocal tract., , , and . MAVEBA, page 73-76. Firenze University Press / ISCA, (2005)Emotions in Vowel Segments of Continuous Speech: Analysis of the Glottal Flow Using the Normalised Amplitude Quotient., and . Phonetica, 63 (1): 26-46 (2006)Evaluation of an inverse filtering technique using physical modeling of voice production., , and . INTERSPEECH, page 497-500. ISCA, (2004)Group delay function as a means to assess quality of glottal inverse filtering., , , and . INTERSPEECH, page 1053-1056. ISCA, (2005)A toolkit for voice inverse filtering and parametrisation., , , and . INTERSPEECH, page 2145-2148. ISCA, (2005)Comparison of multiple voice source parameters in different phonation types., and . INTERSPEECH, page 1410-1413. ISCA, (2007)