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Ananthakrishnan, Saradha; Luo, Xin – Journal of Speech, Language, and Hearing Research, 2022
Purpose: The objective of this study was to determine if and how the subcortical neural representation of pitch cues in listeners with normal hearing is affected by systematic manipulation of vocoder parameters. Method: This study assessed the effects of temporal envelope cutoff frequency (50 and 500 Hz), number of channels (1-32), and carrier…
Descriptors: Suprasegmentals, Cues, Listening, Brain Hemisphere Functions
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Weed, Ethan; Fusaroli, Riccardo – Journal of Speech, Language, and Hearing Research, 2020
Purpose: The aim of the study was to use systematic review and meta-analysis to quantitatively assess the currently available acoustic evidence for prosodic production impairments as a result of right-hemisphere damage (RHD), as well as to develop methodological recommendations for future studies. Method: We systematically reviewed papers…
Descriptors: Acoustics, Neurological Impairments, Brain Hemisphere Functions, Research Reports
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Rachida Ganga; Haoyan Ge; Marijn E. Struiksma; Virginia Yip; Aoju Chen – Studies in Second Language Acquisition, 2024
It has been proposed that second language (L2) learners differ from native speakers in processing due to either influence from their native language or an inability to integrate information from multiple linguistic domains in a second language. To shed new light on the underlying mechanism of L2 processing, we used an event-related potentials…
Descriptors: Language Processing, English (Second Language), Second Language Learning, Second Language Instruction
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Yu, Luodi; Zeng, Jiajing; Wang, Suiping; Zhang, Yang – Journal of Speech, Language, and Hearing Research, 2021
Purpose: This study aimed to examine whether abstract knowledge of word-level linguistic prosody is independent of or integrated with phonetic knowledge. Method: Event-related potential (ERP) responses were measured from 18 adult listeners while they listened to native and nonnative word-level prosody in speech and in nonspeech. The prosodic…
Descriptors: Brain Hemisphere Functions, Suprasegmentals, Phonetics, Intonation
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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
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Wu, Xianghua; Tu, Jung-Yueh; Wang, Yue – Applied Psycholinguistics, 2012
The theoretical framework of this study is based on the prevalent debate of whether prosodic processing is influenced by higher level linguistic-specific circuits or reflects lower level encoding of physical properties. Using the dichotic listening technique, the study investigates the hemispheric processing of Japanese pitch accent by native…
Descriptors: Cues, Tone Languages, Language Processing, Mandarin Chinese
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Walker, Judy P.; Joseph, Lydia; Goodman, Jeffrey – Clinical Linguistics & Phonetics, 2009
This study investigated the production of linguistic prosody in subjects with left hemisphere damage (LHD). Three experiments involving the production of lexical stress in nouns vs verbs, compound nouns vs tag constructions, and echo questions vs statements were conducted. Acoustic measurements (fundamental frequency (F[subscript 0]), duration and…
Descriptors: Nouns, Acoustics, Suprasegmentals, Verbs
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Walker, Judy Perkins; Pelletier, Rebecca; Reif, Lindsay – Clinical Linguistics and Phonetics, 2004
This study examined the right hemisphere contribution to the production of linguistic prosody where acoustic features of prosodic structures in different linguistic contexts were examined accompanied by perceptual judgements. When control and right hemisphere damaged (RHD) subjects were asked to produce lexical stress differences (Experiment 1),…
Descriptors: Cues, Suprasegmentals, Lateral Dominance, Brain Hemisphere Functions