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Sensorimotor Maps of Vowel Perception and Production

Completed
Conditions
Vowel Perception and Production
Interventions
Device: fmri (functional magnetic resonance imaging)
Registration Number
NCT00889317
Lead Sponsor
University Hospital, Grenoble
Brief Summary

Speech develops through a co-structuring of auditory and motor representations, especially in the first years of life during language acquisition. In the present study, we will test by means of functional magnetic resonance imaging whether vowel perception and production might depend on a coordination of auditory and motor, articulatory, cortical maps. The outcome of this study will lead to a better understanding of whether both vowel perception and production are processed in the human brain and will provide important insight into brain-language relationships. Besides new theoretical perspectives on speech perception and production, this project might raise important questions concerning patients with speech disorders by identifying which aspects of speech perception and production are functionally linked.

Detailed Description

The goal of this study is to explore the functional neuroanatomy of vowel processing. To this aim, we will investigate the neural basis of both attentive auditory perception and production of natural French vowels using functional magnetic resonance imaging. More specifically, we will compare vowels that varied along a given phonetic feature dimension while keeping other feature characteristics constant. The phonetic features to be tested are roundedness (rounded/unrounded vowels), place of articulation (front/back vowels) and height (close, close-mid, open-mid vowels). Our study posed three specific questions. First, where exactly in the human brain is the perceptual and motor segregation of different vowel categories accomplished? Second, are these stimulus dimensions implemented topographically in an orthogonal manner, as they vary orthogonally in natural speech? Most specifically, one would expect a topographic segregation between two vowel categories (e.g., front vs back vowels) in both auditory and motor cortices that are characterized by widely distinct acoustic and articulatory values. Third, does these possible sound-related topographic activations in auditory and motor cortices overlap during vowel perception and production? This latter result would support a functional coupling between speech perception and production systems.

Recruitment & Eligibility

Status
COMPLETED
Sex
All
Target Recruitment
54
Inclusion Criteria
  • Age between 18 and 60 year-olds
  • Personal health insurance
Exclusion Criteria
  • Contraindications to IRM (Pacemaker, Aneurysm Clip, Heart/Vascular Clip, Prosthetic Valve, Metal Prosthesis, Claustrophobia, Metal fragments in body).
  • Pregnancy / nursing mother
  • Participation to another fMRI study in the last month
  • Speaking or hearing disorders (past/present)
  • Neurological and/or psychiatric disorders (pats/present)
  • Left-handed
  • Non-native French speaker

Study & Design

Study Type
OBSERVATIONAL
Study Design
Not specified
Arm && Interventions
GroupInterventionDescription
healthy adultsfmri (functional magnetic resonance imaging)-
Primary Outcome Measures
NameTimeMethod
Secondary Outcome Measures
NameTimeMethod

Trial Locations

Locations (1)

IRM 3T - CHU de Grenoble

🇫🇷

Grenoble, France

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