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Howell, Peter; Jiang, Jing; Peng, Danling; Lu, Chunming – Brain and Language, 2012
Neural control of rising and falling tones in Mandarin people who stutter (PWS) was examined by comparing with that which occurs in fluent speakers [Howell, Jiang, Peng, and Lu (2012). Neural control of fundamental frequency rise and fall in Mandarin tones. "Brain and Language, 121"(1), 35-46]. Nine PWS and nine controls were scanned. Functional…
Descriptors: Language Acquisition, Mandarin Chinese, Intonation, Control Groups
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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
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Rota, Giuseppina; Handjaras, Giacomo; Sitaram, Ranganatha; Birbaumer, Niels; Dogil, Grzegorz – Brain and Language, 2011
Mechanisms of cortical reorganization underlying the enhancement of speech processing have been poorly investigated. In the present study, we addressed changes in functional and effective connectivity induced in subjects who learned to deliberately increase activation in the right inferior frontal gyrus (rIFG), and improved their ability to…
Descriptors: Role, Computer Interfaces, Brain Hemisphere Functions, Language Processing
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D'Ausilio, Alessandro; Bufalari, Ilaria; Salmas, Paola; Busan, Pierpaolo; Fadiga, Luciano – Brain and Language, 2011
Speech production can be broadly separated into two distinct components: Phonation and Articulation. These two aspects require the efficient control of several phono-articulatory effectors. Speech is indeed generated by the vibration of the vocal-folds in the larynx (F0) followed by "filtering" by articulators, to select certain resonant…
Descriptors: Articulation (Speech), Singing, Intonation, Psychomotor Skills
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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
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Chen, Zhaocong; Liu, Peng; Wang, Emily Q.; Larson, Charles R.; Huang, Dongfeng; Liu, Hanjun – Brain and Language, 2012
The present study investigated whether the neural correlates for auditory feedback control of vocal pitch can be shaped by tone language experience. Event-related potentials (P2/N1) were recorded from adult native speakers of Mandarin and Cantonese who heard their voice auditory feedback shifted in pitch by -50, -100, -200, or -500 cents when they…
Descriptors: Diagnostic Tests, Tone Languages, Adults, Vowels
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Morgan, A. T.; Liegeois, F.; Liederkerke, C.; Vogel, A. P.; Hayward, R.; Harkness, W.; Chong, K.; Vargha-Khadem, F. – Brain and Language, 2011
Dysarthria following surgical resection of childhood posterior fossa tumour (PFT) is most commonly documented in a select group of participants with mutism in the acute recovery phase, thus limiting knowledge of post-operative prognosis for this population of children as a whole. Here we report on the speech characteristics of 13 cases seen…
Descriptors: Speech Impairments, Surgery, Children, Brain Hemisphere Functions
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Krishnan, Ananthanarayan; Gandour, Jackson T.; Ananthakrishnan, Saradha; Bidelman, Gavin M.; Smalt, Christopher J. – Brain and Language, 2011
Pitch processing is lateralized to the right hemisphere; linguistic pitch is further mediated by left cortical areas. This experiment investigates whether ear asymmetries vary in brainstem representation of pitch depending on linguistic status. Brainstem frequency-following responses (FFRs) were elicited by monaural stimulation of the left and…
Descriptors: Brain Hemisphere Functions, Stimulation, Auditory Perception, Mandarin Chinese
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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)
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Weber-Fox, Christine; Leonard, Laurence B.; Wray, Amanda Hampton; Tomblin, J. Bruce – Brain and Language, 2010
Brief tonal stimuli and spoken sentences were utilized to examine whether adolescents (aged 14;3-18;1) with specific language impairments (SLI) exhibit atypical neural activity for rapid auditory processing of non-linguistic stimuli and linguistic processing of verb-agreement and semantic constraints. Further, we examined whether the behavioral…
Descriptors: Sentences, Auditory Stimuli, Semantics, Verbs
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Krishnan, Ananthanarayan; Gandour, Jackson T. – Brain and Language, 2009
Historically, the brainstem has been neglected as a part of the brain involved in language processing. We review recent evidence of language-dependent effects in pitch processing based on comparisons of native vs. nonnative speakers of a tonal language from electrophysiological recordings in the auditory brainstem. We argue that there is enhancing…
Descriptors: Tone Languages, Brain, Language Processing, Native Speakers
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Mietz, Anja; Toepel, Ulrike; Ischebeck, Anja; Alter, Kai – Brain and Language, 2008
The current study on German investigates Event-Related brain Potentials (ERPs) for the perception of sentences with intonations which are infrequent (i.e. vocatives) or inadequate in daily conversation. These ERPs are compared to the processing correlates for sentences in which the syntax-to-prosody relations are congruent and used frequently…
Descriptors: Sentences, Brain Hemisphere Functions, Syntax, Brain
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Pihan, Hans; Tabert, Matthias; Assuras, Stephanie; Borod, Joan – Brain and Language, 2008
Prosody or speech melody subserves linguistic (e.g., question intonation) and emotional functions in speech communication. Findings from lesion studies and imaging experiments suggest that, depending on function or acoustic stimulus structure, prosodic speech components are differentially processed in the right and left hemispheres. This direct…
Descriptors: Sentences, Brain Hemisphere Functions, Stimuli, Speech Communication
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Ross, Elliott D.; Monnot, Marilee – Brain and Language, 2008
Unlike the aphasic syndromes, the organization of affective prosody in brain has remained controversial because affective-prosodic deficits may occur after left or right brain damage. However, different patterns of deficits are observed following left and right brain damage that suggest affective prosody is a dominant and lateralized function of…
Descriptors: Injuries, Brain Hemisphere Functions, Neurological Impairments, Brain
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Van Lancker Sidtis, Diana; Pachana, Nancy; Cummings, Jeffrey L.; Sidtis, John J. – Brain and Language, 2006
Progress in understanding brain/behavior relationships in adult-acquired dysprosody has led to models of cortical hemispheric representation of prosodic processing based on functional (linguistic vs affective) or physical (timing vs pitch) parameters. These explanatory perspectives have not been reconciled, and also a number of neurobehavior…
Descriptors: Brain, Language Processing, Adults, Patients
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