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Observational and Accelerometer Analysis of Head Movement Patterns in Psychotherapeutic Dialogue.

, , , and . Sensors, 21 (9): 3162 (2021)

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A Dynamic Compressive Gammachirp Auditory Filterbank., and . IEEE Trans. Speech Audio Process., 14 (6): 2222-2232 (2006)Auditory speech processing for scale-shift covariance and its evaluation in automatic speech recognition., , , , and . ISCAS, page 3813-3816. IEEE, (2010)Manual and Accelerometer Analysis of Head Nodding Patterns in Goal-oriented Dialogues., , , , , and . HCI (2), volume 6762 of Lecture Notes in Computer Science, page 259-267. Springer, (2011)Corrigendum to Modelling speaker-size discrimination with voiced and unvoiced speech sounds based on the effect of spectral lift, Speech Communication 136 (2022) 23-41., , , , , and . Speech Commun., (February 2023)Observational and Accelerometer Analysis of Head Movement Patterns in Psychotherapeutic Dialogue., , , and . Sensors, 21 (9): 3162 (2021)Vocal tract length estimation based on vowels using a database consisting of 385 speakers and a database with MRI-based vocal tract shape information., , , , and . INTERSPEECH, page 870-874. ISCA, (2014)Beyond bandlimited sampling of speech spectral envelope imposed by the harmonic structure of voiced sounds., , , , and . INTERSPEECH, page 34-38. ISCA, (2013)Comparison of Remote Experiments Using Crowdsourcing and Laboratory Experiments on Speech Intelligibility., , , , , , and . Interspeech, page 181-185. ISCA, (2021)Speech intelligibility derived from time-frequency and source smearing., , , , and . INTERSPEECH, page 1737-1740. ISCA, (2005)Excitation source design for high-quality speech manipulation systems based on a temporally static group delay representation of periodic signals., , , , , and . APSIPA, page 1-10. IEEE, (2014)