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Prendergast, Garreth; Green, Gary G. R. – Brain and Language, 2012
Classical views of speech perception argue that the static and dynamic characteristics of spectral energy peaks (formants) are the acoustic features that underpin phoneme recognition. Here we use representations where the amplitude modulations of sub-band filtered speech are described, precisely, in terms of co-sinusoidal pulses. These pulses are…
Descriptors: Auditory Perception, Acoustics, Comprehension, Artificial Speech
Partanen, Marita; Fitzpatrick, Kevin; Madler, Burkhard; Edgell, Dorothy; Bjornson, Bruce; Giaschi, Deborah E. – Brain and Language, 2012
The current study examined auditory processing deficits in dyslexia using a dichotic pitch stimulus and functional MRI. Cortical activation by the dichotic pitch task occurred in bilateral Heschl's gyri, right planum temporale, and right superior temporal sulcus. Adolescents with dyslexia, relative to age-matched controls, illustrated greater…
Descriptors: Dyslexia, Auditory Perception, Acoustics, Adolescents
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
Scharinger, Mathias; Merickel, Jennifer; Riley, Joshua; Idsardi, William J. – Brain and Language, 2011
Speech sounds can be classified on the basis of their underlying articulators or on the basis of the acoustic characteristics resulting from particular articulatory positions. Research in speech perception suggests that distinctive features are based on both articulatory and acoustic information. In recent years, neuroelectric and neuromagnetic…
Descriptors: Investigations, Articulation (Speech), Auditory Perception, Acoustics
Wallez, Catherine; Schaeffer, Jennifer; Meguerditchian, Adrien; Vauclair, Jacques; Schapiro, Steven J.; Hopkins, William D. – Brain and Language, 2012
Studies involving oro-facial asymmetries in nonhuman primates have largely demonstrated a right hemispheric dominance for communicative signals and conveyance of emotional information. A recent study on chimpanzee reported the first evidence of significant left-hemispheric dominance when using attention-getting sounds and rightward bias for…
Descriptors: Evidence, Brain Hemisphere Functions, Specialization, Lateral Dominance
Osnes, Berge; Hugdahl, Kenneth; Hjelmervik, Helene; Specht, Karsten – Brain and Language, 2011
A common assumption is that phonetic sounds initiate unique processing in the superior temporal gyri and sulci (STG/STS). The anatomical areas subserving these processes are also implicated in the processing of non-phonetic stimuli such as music instrument sounds. The differential processing of phonetic and non-phonetic sounds was investigated in…
Descriptors: Stimuli, Phonetics, Brain Hemisphere Functions, Cognitive Processes
Kiefer, Markus; Trumpp, Natalie; Herrnberger, Barbel; Sim, Eun-Jin; Hoenig, Klaus; Pulvermuller, Friedemann – Brain and Language, 2012
Modality-specific models of conceptual memory propose close links between concepts and the sensory-motor systems. Neuroimaging studies found, in different subject groups, that action-related and sound-related concepts activated different parts of posterior middle temporal gyrus (pMTG), suggesting a modality-specific representation of conceptual…
Descriptors: Neurology, Brain Hemisphere Functions, Acoustics, Correlation
Seyfarth, Robert M.; Cheney, Dorothy L. – Brain and Language, 2010
In this review, we place equal emphasis on production, usage, and comprehension because these components of communication may exhibit different developmental trajectories and be affected by different neural mechanisms. In the animal kingdom generally, learned, flexible vocal production is rare, appearing in only a few orders of birds and few…
Descriptors: Nonverbal Communication, Acoustics, Comprehension, Responses
Vukovic, Mile; Sujic, Radmila; Petrovic-Lazic, Mirjana; Miller, Nick; Milutinovic, Dejan; Babac, Snezana; Vukovic, Irena – Brain and Language, 2012
Phonation is a fundamental feature of human communication. Control of phonation in the context of speech-language disturbances has traditionally been considered a characteristic of lesions to subcortical structures and pathways. Evidence suggests however, that cortical lesions may also implicate phonation. We carried out acoustic and perceptual…
Descriptors: Evidence, Articulation (Speech), Aphasia, Neurological Impairments
Sjerps, Matthias J.; Mitterer, Holger; McQueen, James M. – Brain and Language, 2012
Listeners perceive speech sounds relative to context. Contextual influences might differ over hemispheres if different types of auditory processing are lateralized. Hemispheric differences in contextual influences on vowel perception were investigated by presenting speech targets and both speech and non-speech contexts to listeners' right or left…
Descriptors: Vowels, Brain Hemisphere Functions, Auditory Discrimination, Lateral Dominance
Macizo, Pedro; Van Petten, Cyma; O'Rourke, Polly L. – Brain and Language, 2012
Many multisyllabic words contain shorter words that are not semantic units, like the CAP in HANDICAP and the DURA ("hard") in VERDURA ("vegetable"). The spaces between printed words identify word boundaries, but spurious identification of these embedded words is a potentially greater challenge for spoken language comprehension, a challenge that is…
Descriptors: Semantics, Oral Language, Speech, Comprehension
Konishi, Masakazu – Brain and Language, 2010
Central nervous networks, be they a part of the human brain or a group of neurons in a snail, may be designed to produce distinct patterns of movement. Central pattern generators can account for the development and production of normal vocal signals without auditory feedback in non-songbirds. Songbirds need auditory feedback to develop and…
Descriptors: Animals, Auditory Perception, Feedback (Response), Acoustics
Riede, Tobias; Goller, Franz – Brain and Language, 2010
Song production in songbirds is a model system for studying learned vocal behavior. As in humans, bird phonation involves three main motor systems (respiration, vocal organ and vocal tract). The avian respiratory mechanism uses pressure regulation in air sacs to ventilate a rigid lung. In songbirds sound is generated with two independently…
Descriptors: Singing, Vowels, Anatomy, Acoustics
Yoo, Sejin; Chung, Jun-Young; Jeon, Hyeon-Ae; Lee, Kyoung-Min; Kim, Young-Bo; Cho, Zang-Hee – Brain and Language, 2012
Speech production is inextricably linked to speech perception, yet they are usually investigated in isolation. In this study, we employed a verbal-repetition task to identify the neural substrates of speech processing with two ends active simultaneously using functional MRI. Subjects verbally repeated auditory stimuli containing an ambiguous vowel…
Descriptors: Auditory Stimuli, Articulation (Speech), Phonetics, Vowels
Strait, Dana L.; Parbery-Clark, Alexandra; Hittner, Emily; Kraus, Nina – Brain and Language, 2012
For children, learning often occurs in the presence of background noise. As such, there is growing desire to improve a child's access to a target signal in noise. Given adult musicians' perceptual and neural speech-in-noise enhancements, we asked whether similar effects are present in musically-trained children. We assessed the perception and…
Descriptors: Cognitive Ability, Auditory Perception, Musicians, Short Term Memory