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de Guibert, Clement; Maumet, Camille; Jannin, Pierre; Ferre, Jean-Christophe; Treguier, Catherine; Barillot, Christian; Le Rumeur, Elisabeth; Allaire, Catherine; Biraben, Arnaud – Brain, 2011
Atypical functional lateralization and specialization for language have been proposed to account for developmental language disorders, yet results from functional neuroimaging studies are sparse and inconsistent. This functional magnetic resonance imaging study compared children with a specific subtype of specific language impairment affecting…
Descriptors: Brain, Language Impairments, Children, Brain Hemisphere Functions
Watkins, Kate E.; Cowey, Alan; Alexander, Iona; Filippini, Nicola; Kennedy, James M.; Smith, Stephen M.; Ragge, Nicola; Bridge, Holly – Brain, 2012
Imaging studies in blind subjects have consistently shown that sensory and cognitive tasks evoke activity in the occipital cortex, which is normally visual. The precise areas involved and degree of activation are dependent upon the cause and age of onset of blindness. Here, we investigated the cortical language network at rest and during an…
Descriptors: Blindness, Disabilities, Task Analysis, Neurological Organization
Dick, Anthony Steven; Tremblay, Pascale – Brain, 2012
The growing consensus that language is distributed into large-scale cortical and subcortical networks has brought with it an increasing focus on the connectional anatomy of language, or how particular fibre pathways connect regions within the language network. Understanding connectivity of the language network could provide critical insights into…
Descriptors: Anatomy, Primatology, Brain Hemisphere Functions, Language Processing
Mbwana, J.; Berl, M. M.; Ritzl, E. K.; Rosenberger, L.; Mayo, J.; Weinstein, S.; Conry, J. A.; Pearl, P. L.; Shamim, S.; Moore, E. N.; Sato, S.; Vezina, L. G.; Theodore, W. H.; Gaillard, W. D. – Brain, 2009
Neural networks for processing language often are reorganized in patients with epilepsy. However, the extent and location of within and between hemisphere re-organization are not established. We studied 45 patients, all with a left hemisphere seizure focus (mean age 22.8, seizure onset 13.3), and 19 normal controls (mean age 24.8) with an fMRI…
Descriptors: Brain Hemisphere Functions, Epilepsy, Patients, Language Processing
Blau, Vera; Reithler, Joel; van Atteveldt, Nienke; Seitz, Jochen; Gerretsen, Patty; Goebel, Rainer; Blomert, Leo – Brain, 2010
Learning to associate auditory information of speech sounds with visual information of letters is a first and critical step for becoming a skilled reader in alphabetic languages. Nevertheless, it remains largely unknown which brain areas subserve the learning and automation of such associations. Here, we employ functional magnetic resonance…
Descriptors: Dyslexia, Children, Language Processing, Reading Failure
Mizuno, Akiko; Liu, Yanni; Williams, Diane L.; Keller, Timothy A.; Minshew, Nancy J.; Just, Marcel Adam – Brain, 2011
Personal pronouns, such as "I" and "you", require a speaker/listener to continuously re-map their reciprocal relation to their referent, depending on who is saying the pronoun. This process, called "deictic shifting", may underlie the incorrect production of these pronouns, or "pronoun reversals", such as referring to oneself with the pronoun…
Descriptors: Form Classes (Languages), Autism, Linguistics, Brain Hemisphere Functions
MacSweeney, Mairead; Brammer, Michael J.; Waters, Dafydd; Goswami, Usha – Brain, 2009
Hearing developmental dyslexics and profoundly deaf individuals both have difficulties processing the internal structure of words (phonological processing) and learning to read. In hearing non-impaired readers, the development of phonological representations depends on audition. In hearing dyslexics, many argue, auditory processes may be impaired.…
Descriptors: Reading Difficulties, Deafness, Rhyme, Brain
Richter, Maria; Miltner, Wolfgang H. R.; Straube, Thomas – Brain, 2008
The role of the right hemisphere for language processing and successful therapeutic interventions in aphasic patients is a matter of debate. This study explored brain activation in right-hemispheric areas and left-hemispheric perilesional areas in response to language tasks in chronic non-fluent aphasic patients before and after constraint-induced…
Descriptors: Brain Hemisphere Functions, Aphasia, Patients, Brain
Tyler, Lorraine K.; Marslen-Wilson, William D.; Randall, Billi; Wright, Paul; Devereux, Barry J.; Zhuang, Jie; Papoutsi, Marina; Stamatakis, Emmanuel A. – Brain, 2011
For the past 150 years, neurobiological models of language have debated the role of key brain regions in language function. One consistently debated set of issues concern the role of the left inferior frontal gyrus in syntactic processing. Here we combine measures of functional activity, grey matter integrity and performance in patients with left…
Descriptors: Sentences, Brain Hemisphere Functions, Syntax, Integrity
Tesink, C. M. J. Y.; Buitelaar, J. K.; Petersson, K. M.; van der Gaag, R. J.; Kan, C. C.; Tendolkar, I.; Hagoort, P. – Brain, 2009
Difficulties with pragmatic aspects of communication are universal across individuals with autism spectrum disorders (ASDs). Here we focused on an aspect of pragmatic language comprehension that is relevant to social interaction in daily life: the integration of speaker characteristics inferred from the voice with the content of a message. Using…
Descriptors: Comprehension, Sentences, Speech, Autism
Beharelle, Anjali Raja; Dick, Anthony Steven; Josse, Goulven; Solodkin, Ana; Huttenlocher, Peter R.; Levine, Susan C.; Small, Steven L. – Brain, 2010
A predominant theory regarding early stroke and its effect on language development, is that early left hemisphere lesions trigger compensatory processes that allow the right hemisphere to assume dominant language functions, and this is thought to underlie the near normal language development observed after early stroke. To test this theory, we…
Descriptors: Brain Hemisphere Functions, Neurological Impairments, Language Acquisition, Children
Sammler, Daniela; Kotz, Sonja A.; Eckstein, Korinna; Ott, Derek V. M.; Friederici, Angela D. – Brain, 2010
Contemporary neural models of auditory language comprehension proposed that the two hemispheres are differently specialized in the processing of segmental and suprasegmental features of language. While segmental processing of syntactic and lexical semantic information is predominantly assigned to the left hemisphere, the right hemisphere is…
Descriptors: Listening Comprehension, Brain Hemisphere Functions, Suprasegmentals, Semantics
Teichmann, Marc; Gaura, Veronique; Demonet, Jean-Francois; Supiot, Frederic; Delliaux, Marie; Verny, Christophe; Renou, Pierre; Remy, Philippe; Bachoud-Levi, Anne-Catherine – Brain, 2008
The role of sub-cortical structures in language processing, and more specifically of the striatum, remains controversial. In line with psycholinguistic models stating that language processing implies both the recovery of lexical information and the application of combinatorial rules, the striatum has been claimed to be involved either in the…
Descriptors: Language Processing, Neurological Organization, Brain, Genetic Disorders
Warren, Jane E.; Crinion, Jennifer T.; Ralph, Matthew A. Lambon; Wise, Richard J. S. – Brain, 2009
Focal brain lesions are assumed to produce language deficits by two basic mechanisms: local cortical dysfunction at the lesion site, and remote cortical dysfunction due to disruption of the transfer and integration of information between connected brain regions. However, functional imaging studies investigating language outcome after aphasic…
Descriptors: Comprehension, Sentences, Aphasia, Patients
Bernal, Byron; Ardila, Alfredo – Brain, 2009
In aphasia literature, it has been considered that a speech repetition defect represents the main constituent of conduction aphasia. Conduction aphasia has frequently been interpreted as a language impairment due to lesions of the arcuate fasciculus (AF) that disconnect receptive language areas from expressive ones. Modern neuroradiological…
Descriptors: Brain Hemisphere Functions, Aphasia, Receptive Language, Neurological Impairments
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