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Online control of articulation based on auditory feedback in normal Speech and stuttering : behavioral and modeling studies
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An investigation of the relation between sibilant production and somatosensory and auditory acuity.
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In: http://phonetique.uqam.ca/upload/files/Ghosh_JASA_2010.pdf (2010)
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The role of linguistic contrasts in the auditory feedback control of Speech
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Simulating neural impairments to syllable-level command generation in stuttering
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In: http://speechlab.bu.edu/publications/Civier_Bullock_Max_Guenther_2009_Poster.pdf (2009)
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Neural mechanisms underlying auditory feedback control of speech
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In: http://web.mit.edu/hst.722/www/Topics/Speech/Tourville_in press_NeuroImage_PrePrint.pdf (2008)
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A system for online dynamic perturbation of formant trajectories & results from perturbations of the Mandarin triphthong /iau
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In: http://issp2008.loria.fr/Proceedings/PDF/issp2008-10.pdf (2008)
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FMRI studies of effects of hearing status on audio-visual speech perception ; Functional magnetic resonance imaging studies of effects of hearing status on audio-visual speech perception
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Yoo, Julie J. - : Massachusetts Institute of Technology, 2007
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Neural modeling and imaging of the cortical interactions underlying syllable production
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In: http://www.cns.bu.edu/~guenther/Guenther_et_al_Brain-Lang_2005.pdf (2006)
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Abstract:
Keywords: speech production; model; fMRI; Broca’s area; premotor cortex; motor cortex; speech acquisition; sensorimotor learning; neural transmission delays This paper describes a neural model of speech acquisition and production that accounts for a wide range of acoustic, kinematic, and neuroimaging data concerning the control of speech movements. The model is a neural network whose components correspond to regions of the cerebral cortex and cerebellum, including premotor, motor, auditory, and somatosensory cortical areas. Computer simulations of the model verify its ability to account for compensation to lip and jaw perturbations during speech. Specific anatomical locations of the model’s components are estimated, and these estimates are used to simulate fMRI experiments of simple syllable production. 1 1
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URL: http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.62.1666 http://www.cns.bu.edu/~guenther/Guenther_et_al_Brain-Lang_2005.pdf
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An fMRI investigation of syllable sequence production
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In: http://www.ekn.mwn.de/pdf/zs2_bohl.pdf (2006)
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Cortical interactions underlying the production of speech sounds
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In: http://cogsci.msu.edu/DSS/2009-2010/guenther/Guenther_2006 Cortical interactions underlying the production of speech sounds.pdf (2006)
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A neural model of speech production and its application to studies of the role of auditory feedback in speech
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In: http://cns.bu.edu/~guenther/SMC_2001_Book_Chapter.pdf (2004)
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Changes in the McGurk Effect Across Phonetic Contexts
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In: http://www.cns.bu.edu/~guenther/Hampson_et_al_2003.pdf (2003)
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Neural control of speech movements
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In: http://speechlab.bu.edu/publications/Schiller_Book_Chapter.pdf (2003)
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Neural Modeling of Speech Production
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In: http://www.cns.bu.edu/~guenther/Nijmegen_Motor_Paper.pdf (2003)
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Articulatory Tradeoffs Reduce Acoustic Variability during American English /r/ Production
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In: http://www.cns.bu.edu/~guenther/jasa_99_r.ps (1999)
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A theoretical investigation of reference frames for the planning of speech movements
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In: http://cns.bu.edu/~guenther/psychrev98.pdf (1998)
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A theoretical investigation of reference frames for the planning of speech movements
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In: http://cns.bu.edu/~guenther/psychrev98.ps (1998)
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The perceptual magnet effect as an emergent property of neural map formation
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In: http://www.cns.bu.edu/~guenther/jasa96.pdf (1996)
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The perceptual magnet effect as an emergent property of neural map formation
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In: http://cns.bu.edu/~guenther/jasa96.ps (1996)
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Speech sound acquisition, coarticulation, and rate effects in a neural network model of speech production
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In: http://www.cns.bu.edu/~guenther/psychrev95.ps (1995)
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