Literature DB >> 28453613

Functional Characterization of the Human Speech Articulation Network.

Alexandra Basilakos1, Kimberly G Smith1,2, Paul Fillmore3, Julius Fridriksson1, Evelina Fedorenko4,5,6.   

Abstract

A number of brain regions have been implicated in articulation, but their precise computations remain debated. Using functional magnetic resonance imaging, we examine the degree of functional specificity of articulation-responsive brain regions to constrain hypotheses about their contributions to speech production. We find that articulation-responsive regions (1) are sensitive to articulatory complexity, but (2) are largely nonoverlapping with nearby domain-general regions that support diverse goal-directed behaviors. Furthermore, premotor articulation regions show selectivity for speech production over some related tasks (respiration control), but not others (nonspeech oral-motor [NSO] movements). This overlap between speech and nonspeech movements concords with electrocorticographic evidence that these regions encode articulators and their states, and with patient evidence whereby articulatory deficits are often accompanied by oral-motor deficits. In contrast, the superior temporal regions show strong selectivity for articulation relative to nonspeech movements, suggesting that these regions play a specific role in speech planning/production. Finally, articulation-responsive portions of posterior inferior frontal gyrus show some selectivity for articulation, in line with the hypothesis that this region prepares an articulatory code that is passed to the premotor cortex. Taken together, these results inform the architecture of the human articulation system.

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Year:  2018        PMID: 28453613      PMCID: PMC5907347          DOI: 10.1093/cercor/bhx100

Source DB:  PubMed          Journal:  Cereb Cortex        ISSN: 1047-3211            Impact factor:   5.357


  91 in total

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  24 in total

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8.  Noninvasive neurostimulation of left ventral motor cortex enhances sensorimotor adaptation in speech production.

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9.  Precise Topology of Adjacent Domain-General and Sensory-Biased Regions in the Human Brain.

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