Literature DB >> 7766852

A positron emission tomography [18F]deoxyglucose study of developmental stuttering.

J C Wu1, G Maguire, G Riley, J Fallon, L LaCasse, S Chin, E Klein, C Tang, S Cadwell, S Lottenberg.   

Abstract

Positron emission tomography using [18F]deoxyglucose (FDG) as a marker of regional brain metabolism was used to investigate the neural substrate of stuttering. Four patients with severe developmental stuttering were studied while reading aloud to another person (stuttering condition) and while reading aloud in unison with someone else (non-stuttering condition). The patients were also compared with four normal controls reading aloud by themselves. In the stuttering condition, significant decreases in regional glucose metabolism in Broca's area, Wernicke's area and frontal pole were seen compared with themselves while not stuttering. These differences were also seen in stuttering condition compared with normal controls. Significantly lower left caudate metabolism was seen in patients during both stuttering and non-stuttering conditions compared with normal controls. A circuit for stuttering is proposed based on these findings.

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Year:  1995        PMID: 7766852     DOI: 10.1097/00001756-199502000-00024

Source DB:  PubMed          Journal:  Neuroreport        ISSN: 0959-4965            Impact factor:   1.837


  28 in total

1.  Neurogenic stuttering: its reticular modulation.

Authors:  Subhash Bhatnagar; Hugh Buckingham
Journal:  Curr Neurol Neurosci Rep       Date:  2010-11       Impact factor: 5.081

2.  Stuttered and fluent speech production: an ALE meta-analysis of functional neuroimaging studies.

Authors:  Steven Brown; Roger J Ingham; Janis C Ingham; Angela R Laird; Peter T Fox
Journal:  Hum Brain Mapp       Date:  2005-05       Impact factor: 5.038

3.  Neural network connectivity differences in children who stutter.

Authors:  Soo-Eun Chang; David C Zhu
Journal:  Brain       Date:  2013-10-16       Impact factor: 13.501

4.  A study of the reproducibility and etiology of diffusion anisotropy differences in developmental stuttering: a potential role for impaired myelination.

Authors:  M D Cykowski; P T Fox; R J Ingham; J C Ingham; D A Robin
Journal:  Neuroimage       Date:  2010-05-13       Impact factor: 6.556

5.  Neurophysiologic markers of primary motor cortex for laryngeal muscles and premotor cortex in caudal opercular part of inferior frontal gyrus investigated in motor speech disorder: a navigated transcranial magnetic stimulation (TMS) study.

Authors:  Maja Rogić Vidaković; Ana Jerković; Tomislav Jurić; Igor Vujović; Joško Šoda; Nikola Erceg; Andreja Bubić; Marina Zmajević Schönwald; Pantelis Lioumis; Dragan Gabelica; Zoran Đogaš
Journal:  Cogn Process       Date:  2016-04-29

6.  Brain activation abnormalities during speech and non-speech in stuttering speakers.

Authors:  Soo-Eun Chang; Mary Kay Kenney; Torrey M J Loucks; Christy L Ludlow
Journal:  Neuroimage       Date:  2009-02-11       Impact factor: 6.556

7.  Computational modeling of stuttering caused by impairments in a basal ganglia thalamo-cortical circuit involved in syllable selection and initiation.

Authors:  Oren Civier; Daniel Bullock; Ludo Max; Frank H Guenther
Journal:  Brain Lang       Date:  2013-07-19       Impact factor: 2.381

8.  Neurofilament-lysosomal genetic intersections in the cortical network of stuttering.

Authors:  Claudia Benito-Aragón; Ricardo Gonzalez-Sarmiento; Thomas Liddell; Ibai Diez; Federico d'Oleire Uquillas; Laura Ortiz-Terán; Elisenda Bueichekú; Ho Ming Chow; Soo-Eun Chang; Jorge Sepulcre
Journal:  Prog Neurobiol       Date:  2019-10-24       Impact factor: 11.685

9.  Reduced perfusion in Broca's area in developmental stuttering.

Authors:  Jay Desai; Yuankai Huo; Zhishun Wang; Ravi Bansal; Steven C R Williams; David Lythgoe; Fernando O Zelaya; Bradley S Peterson
Journal:  Hum Brain Mapp       Date:  2016-12-30       Impact factor: 5.038

10.  Structural and functional abnormalities of the motor system in developmental stuttering.

Authors:  Kate E Watkins; Stephen M Smith; Steve Davis; Peter Howell
Journal:  Brain       Date:  2007-10-10       Impact factor: 13.501

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