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Automated analysis of newborn cry: relationships between melodic shapes and native language.

, , , , , and . Biomed. Signal Process. Control., (2019)

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Detection of Atypical and Typical Infant Movements using Computer-based Video Analysis., , , , , , , and . EMBC, page 3598-3601. IEEE, (2018)Accuracy of a markerless acquisition technique for studying speech articulators., , , , and . INTERSPEECH, page 2162-2166. ISCA, (2015)Central blood oxygen saturation vs crying in preterm newborns., , , and . Biomed. Signal Process. Control., 7 (1): 88-92 (2012)Classifying infant cry patterns by the Genetic Selection of a Fuzzy Model., , , , , and . Biomed. Signal Process. Control., (2015)Testing software tools for newborn cry analysis using synthetic signals., , , and . Biomed. Signal Process. Control., (2017)Automatic identification of dysprosody in idiopathic Parkinson's disease., , , , , , , , , and . Biomed. Signal Process. Control., (2015)Stress Assessment by Combining Neurophysiological Signals and Radio Communications of Air Traffic Controllers., , , , , , , , , and 8 other author(s). EMBC, page 851-854. IEEE, (2020)Blood oxygenation vs. cry in preterm newborn infants., , , , , , , and . MAVEBA, page 215-218. Firenze University Press / ISCA, (2007)Study of cry patterns in infants at high risk for autism., , , , , , and . MAVEBA, page 7-10. Firenze University Press / ISCA, (2011)Testing software tools with synthesized deviant voices for medicolegal assessment of occupational dysphonia., , , , , , and . Biomed. Signal Process. Control., (2014)