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Encoding of natural timbre dimensions in human auditory cortex.
Allen, Emily J; Moerel, Michelle; Lage-Castellanos, Agustín; De Martino, Federico; Formisano, Elia; Oxenham, Andrew J.
Afiliação
  • Allen EJ; Department of Psychology, University of Minnesota, Minneapolis, MN 55455, United States. Electronic address: prac0010@umn.edu.
  • Moerel M; Department of Cognitive Neuroscience, Faculty of Psychology and Neuroscience, Maastricht University, 6200 MD, Maastricht, The Netherlands; Maastricht Centre for Systems Biology (MaCSBio), Maastricht University, 6200 MD, Maastricht, The Netherlands.
  • Lage-Castellanos A; Department of Cognitive Neuroscience, Faculty of Psychology and Neuroscience, Maastricht University, 6200 MD, Maastricht, The Netherlands; Department of NeuroInformatics, Cuban Center for Neuroscience, Street 190 e/25 and 27 Cubanacán Playa Havana, CP 11600, Cuba.
  • De Martino F; Department of Cognitive Neuroscience, Faculty of Psychology and Neuroscience, Maastricht University, 6200 MD, Maastricht, The Netherlands; Center for Magnetic Resonance Research, Department of Radiology, University of Minnesota, Minneapolis, MN 55455, United States.
  • Formisano E; Department of Cognitive Neuroscience, Faculty of Psychology and Neuroscience, Maastricht University, 6200 MD, Maastricht, The Netherlands; Maastricht Centre for Systems Biology (MaCSBio), Maastricht University, 6200 MD, Maastricht, The Netherlands.
  • Oxenham AJ; Department of Psychology, University of Minnesota, Minneapolis, MN 55455, United States.
Neuroimage ; 166: 60-70, 2018 02 01.
Article em En | MEDLINE | ID: mdl-29080711
ABSTRACT
Timbre, or sound quality, is a crucial but poorly understood dimension of auditory perception that is important in describing speech, music, and environmental sounds. The present study investigates the cortical representation of different timbral dimensions. Encoding models have typically incorporated the physical characteristics of sounds as features when attempting to understand their neural representation with functional MRI. Here we test an encoding model that is based on five subjectively derived dimensions of timbre to predict cortical responses to natural orchestral sounds. Results show that this timbre model can outperform other models based on spectral characteristics, and can perform as well as a complex joint spectrotemporal modulation model. In cortical regions at the medial border of Heschl's gyrus, bilaterally, and regions at its posterior adjacency in the right hemisphere, the timbre model outperforms even the complex joint spectrotemporal modulation model. These findings suggest that the responses of cortical neuronal populations in auditory cortex may reflect the encoding of perceptual timbre dimensions.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Córtex Auditivo / Percepção Auditiva / Neuroimagem Funcional / Música Tipo de estudo: Prognostic_studies Limite: Adult / Female / Humans / Male Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Córtex Auditivo / Percepção Auditiva / Neuroimagem Funcional / Música Tipo de estudo: Prognostic_studies Limite: Adult / Female / Humans / Male Idioma: En Ano de publicação: 2018 Tipo de documento: Article