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1.
Brain Lang ; 132: 7-13, 2014 May.
Artigo em Inglês | MEDLINE | ID: mdl-24681401

RESUMO

Voice control is critical to communication. To date, studies have used behavioral, electrophysiological and functional data to investigate the neural correlates of voice control using perturbation tasks, but have yet to examine the interactions of these neural regions. The goal of this study was to use structural equation modeling of functional neuroimaging data to examine network properties of voice with and without perturbation. Results showed that the presence of a pitch shift, which was processed as an error in vocalization, altered connections between right STG and left STG. Other regions that revealed differences in connectivity during error detection and correction included bilateral inferior frontal gyrus, and the primary and pre motor cortices. Results indicated that STG plays a critical role in voice control, specifically, during error detection and correction. Additionally, pitch perturbation elicits changes in the voice network that suggest the right hemisphere is critical to pitch modulation.


Assuntos
Córtex Cerebral/fisiologia , Retroalimentação Fisiológica/fisiologia , Modelos Neurológicos , Discriminação da Altura Tonal/fisiologia , Voz/fisiologia , Adulto , Mapeamento Encefálico/métodos , Neuroimagem Funcional/métodos , Humanos , Imageamento por Ressonância Magnética/métodos , Masculino , Córtex Motor/fisiologia , Rede Nervosa/fisiologia , Percepção da Altura Sonora/fisiologia , Córtex Pré-Frontal/fisiologia , Lobo Temporal/fisiologia
2.
Neuroimage ; 61(1): 314-22, 2012 May 15.
Artigo em Inglês | MEDLINE | ID: mdl-22406500

RESUMO

Auditory feedback is important for the control of voice fundamental frequency (F0). In the present study we used neuroimaging to identify regions of the brain responsible for sensory control of the voice. We used a pitch-shift paradigm where subjects respond to an alteration, or shift, of voice pitch auditory feedback with a reflexive change in F0. To determine the neural substrates involved in these audio-vocal responses, subjects underwent fMRI scanning while vocalizing with or without pitch-shifted feedback. The comparison of shifted and unshifted vocalization revealed activation bilaterally in the superior temporal gyrus (STG) in response to the pitch shifted feedback. We hypothesize that the STG activity is related to error detection by auditory error cells located in the superior temporal cortex and efference copy mechanisms whereby this region is responsible for the coding of a mismatch between actual and predicted voice F0.


Assuntos
Sensação/fisiologia , Voz/fisiologia , Estimulação Acústica , Adulto , Algoritmos , Córtex Auditivo/fisiologia , Mapeamento Encefálico , Córtex Cerebral/fisiologia , Interpretação Estatística de Dados , Retroalimentação Sensorial , Feminino , Humanos , Processamento de Imagem Assistida por Computador , Músculos Laríngeos/inervação , Músculos Laríngeos/fisiologia , Imageamento por Ressonância Magnética , Masculino , Vias Neurais/fisiologia , Oxigênio/sangue , Percepção da Altura Sonora/fisiologia , Lobo Temporal/fisiologia , Adulto Jovem
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