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Mucosal waves on the vocal folds: conceptualization based on videokymography.

, , , and . MAVEBA, page 171-172. Firenze University Press / ISCA, (2007)

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Basic requirements on microphones for voice recordings., , and . MAVEBA, page 157-160. Firenze University Press / ISCA, (2009)Fitting synthetic to clinical kymographic images for deriving kinematic vocal fold parameters: Application to left-right vibratory phase differences., , , and . Biomed. Signal Process. Control., (2021)What can be seen in videokymographic images?, , , , and . MAVEBA, page 119. Firenze University Press / ISCA, (2005)Kymographic imaging of the vocal fold oscillations., and . INTERSPEECH, page 957-960. ISCA, (2002)Mucosal waves on the vocal folds: conceptualization based on videokymography., , , and . MAVEBA, page 171-172. Firenze University Press / ISCA, (2007)Measurement of the vocal-fold vibration behaviour in excised human larynges., , , , , and . MAVEBA, page 2-7. ISCA, (2001)Kinematic model for simulating mucosal wave phenomena on vocal folds., and . Biomed. Signal Process. Control., (2019)The effect of phonation into a straw on the vocal tract adjustments and formant frequencies. A preliminary MRI study on a single subject completed with acoustic results., , , and . Biomed. Signal Process. Control., 7 (1): 50-57 (2012)Analysis of voice production in breathy, normal and pressed phonation by comparing inverse filtering and videokymography., , , and . INTERSPEECH, page 885-888. ISCA, (2000)Image analysis of videokymographic data., , , , , , , and . ICIP, page 78-82. IEEE, (2015)