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Pasquinelli, Rennie; Tessier, Anne Michelle; Karas, Zachary; Hu, Xiaosu; Kovelman, Ioulia – Journal of Speech, Language, and Hearing Research, 2023
Purpose: The fine-tuning of linguistic prosody in later childhood is poorly understood, and its neurological processing is even less well studied. In particular, it is unknown if grammatical processing of prosody is left- or rightlateralized in childhood versus adulthood and how phonological working memory might modulate such lateralization.…
Descriptors: Brain Hemisphere Functions, Lateral Dominance, Language Processing, Intonation
Lee, Aleuna; Perdomo, Michelle; Kaan, Edith – Second Language Research, 2020
Prosody signals important aspects of meaning, and hence, is crucial for language comprehension and learning, yet remains under-investigated in second-language (L2) processing. The present electrophysiology study investigates the use of prosody to cue information structure, in particular, the use of contrastive pitch accent (L+H*) to define the set…
Descriptors: Intonation, Suprasegmentals, Language Processing, Brain Hemisphere Functions
Pelzl, Eric; Lau, Ellen F.; Guo, Taomei; DeKeyser, Robert – Studies in Second Language Acquisition, 2019
It is commonly believed that second language (L2) acquisition of lexical tones presents a major challenge for learners from nontonal language backgrounds. This belief is somewhat at odds with research that consistently shows beginning learners making quick gains through focused tone training, as well as research showing advanced learners achieving…
Descriptors: Advanced Students, Second Language Learning, Second Language Instruction, Intonation
Guigelaar, Ellen R. – ProQuest LLC, 2017
Late second language (L2) learners often struggle with L2 prosody, both in perception and production. This may result from first language (L1) interference or some property of how a second language functions in a late learner independent of what their L1 might be. Here we investigate prosody's role in determining information structure through…
Descriptors: English, English (Second Language), Second Language Learning, Mandarin Chinese
Megnin-Viggars, Odette; Goswami, Usha – Brain and Language, 2013
Visual speech inputs can enhance auditory speech information, particularly in noisy or degraded conditions. The natural statistics of audiovisual speech highlight the temporal correspondence between visual and auditory prosody, with lip, jaw, cheek and head movements conveying information about the speech envelope. Low-frequency spatial and…
Descriptors: Phonology, Cues, Visual Perception, Speech
Troche, Joshua; Troche, Michelle S.; Berkowitz, Rebecca; Grossman, Murray; Reilly, Jamie – American Journal of Speech-Language Pathology, 2012
Purpose: Deficits in auditory perception compromise a range of linguistic processes in persons with Parkinson's disease (PD), including speech perception and sensitivity to affective and linguistic prosody. An unanswered question is whether this deficit exists not only at the level of speech perception, but also at a more pervasive level of…
Descriptors: Suprasegmentals, Acoustics, Diseases, Auditory Perception
Ziegler, Johannes C.; Pech-Georgel, Catherine; George, Florence; Foxton, Jessica M. – Brain and Language, 2012
This study investigated global versus local pitch pattern perception in children with dyslexia aged between 8 and 11 years. Children listened to two consecutive 4-tone pitch sequences while performing a same/different task. On the different trials, sequences either preserved the contour (local condition) or they violated the contour (global…
Descriptors: Phonology, Dyslexia, Short Term Memory, Brain Hemisphere Functions
Badcock, Nicholas A.; Bishop, Dorothy V. M.; Hardiman, Mervyn J.; Barry, Johanna G.; Watkins, Kate E. – Brain and Language, 2012
We assessed the relationship between brain structure and function in 10 individuals with specific language impairment (SLI), compared to six unaffected siblings, and 16 unrelated control participants with typical language. Voxel-based morphometry indicated that grey matter in the SLI group, relative to controls, was increased in the left inferior…
Descriptors: Siblings, Language Impairments, Expressive Language, Morphology (Languages)
Abla, Dilshat; Okanoya, Kazuo – Neuropsychologia, 2008
Word segmentation, that is, discovering the boundaries between words that are embedded in a continuous speech stream, is an important faculty for language learners; humans solve this task partly by calculating transitional probabilities between sounds. Behavioral and ERP studies suggest that detection of sequential probabilities (statistical…
Descriptors: Spectroscopy, Probability, Diagnostic Tests, Intonation
Plante, Elena; Holland, Scott K.; Schmithorst, Vince J. – Brain and Language, 2006
Prosodic information in the speech signal carries information about linguistic structure as well as emotional content. Although children are known to use prosodic information from infancy onward to assist linguistic decoding, the brain correlates of this skill in childhood have not yet been the subject of study. Brain activation associated with…
Descriptors: Intonation, Children, Correlation, Brain Hemisphere Functions
Warrier, Catherine M.; Zatorre, Robert J. – Brain, 2004
Pitch constancy, perceiving the same pitch from tones with differing spectral shapes, requires one to extract the fundamental frequency from two sets of harmonics and compare them. We previously showed this difficult task to be easier when tonal context is present, presumably because the context creates a tonal reference point from which to judge…
Descriptors: Brain, Brain Hemisphere Functions, Cues, Intonation