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Formant Frequencies under Cognitive Load: Effects and Classification.

, , , and . EURASIP J. Adv. Signal Process., (2011)

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Formant Frequencies under Cognitive Load: Effects and Classification., , , and . EURASIP J. Adv. Signal Process., (2011)Cognitive load classification using formant features., , , and . ISSPA, page 221-224. IEEE, (2010)Improvement of Vietnamese Tone Classification using FM and MFCC Features., , and . RIVF, page 1-4. IEEE, (2009)Voice source features for cognitive load classification., , , and . ICASSP, page 5700-5703. IEEE, (2011)A Gaussian selection method for multi-mixture HMM based continuous speech recognition., and . INTERSPEECH, page 381-384. ISCA, (2002)An energy search approach to variable frame rate front-end processing for robust ASR., and . INTERSPEECH, page 2613-2616. ISCA, (2005)Pupillary Response Based Cognitive Workload Measurement under Luminance Changes., , , and . INTERACT (2), volume 6947 of Lecture Notes in Computer Science, page 178-185. Springer, (2011)Glottal features for speech-based cognitive load classification., , , and . ICASSP, page 5234-5237. IEEE, (2010)Voice source under cognitive load: Effects and classification., , , and . Speech Commun., (2015)An intelligent classif ication algorithm for LifeLog multimedia applications., , , , and . MMSP, page 558-562. IEEE Signal Processing Society, (2008)