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Functional Magnetic Resonance Imaging Study of the Central Auditory System After Single Sided Deafness (SSD)

T

Toulouse University Hospital

Status

Completed

Conditions

Unilateral Hearing Loss

Treatments

Other: functional magnetic resonance imaging

Study type

Interventional

Funder types

Other

Identifiers

NCT02534298
13 204 02 (Other Identifier)
RC31/13/0204

Details and patient eligibility

About

The objective is to study the relation between the reorganization of the central auditory system, and the psychophysical deficits in binaural hearing in subjects with single sided deafness.

Full description

Background Single sided deafness (SSD) and asymmetrical hearing loss are common hearing impairments, and their social consequences are well established. At the central auditory system level, the single sided deafness is associated with a reorganization of auditory temporal cortices that leads to a reduction of inter hemispheric asymmetry.

Purpose : Our main objective is to study the relation between the reorganization of the central auditory system, namely the inter hemispheric asymmetry, and the psychophysical deficits in binaural hearing in subjects with SSD.

Abstract : Binaural hearing enables spatial localization of the sound source and improves speech recognition in a competing noise. SSD and asymmetrical hearing loss are common hearing impairments, which affect 0.3 to 1/1000 children. In the adult population, this prevalence increases with age. The impact of SSD and asymmetrical hearing loss on quality of life indices is well established and some reports underline its consequences in children scholarship. Previous neuro-imaging and electro physiological studies highlighted the reduction of normal inter hemispheric asymmetry in subjects with SSD. To the best of our knowledge, there is no report about the relation between the central auditory system reorganization and its behavioural deficits.

The investigators propose to conduct a study which analyzes the relationship between the reduction of inter hemispheric asymmetry and performance in binaural hearing tests. Thus, the auditory plasticity will be studied using functional magnetic resonance imaging and more specifically BOLD variations in auditory temporal cortices. A set of binaural hearing assessments will be performed, including speech recognition in noise and localization abilities. The correlation between the lateralization ratio and binaural measurements (speech reception threshold (SRT) in dichotic hearing, diotic hearing, reverse dichotic hearing) will be estimated. Likewise, the impact of SSD duration on cortical reorganization and binaural tests will be studied.

Enrollment

30 patients

Sex

All

Ages

18+ years old

Volunteers

Accepts Healthy Volunteers

Inclusion criteria

  • Right-handed subjects
  • SSD confirmed using evoked auditory potentials

Exclusion criteria

  • Associated neurological disorder

Trial design

Primary purpose

Basic Science

Allocation

Non-Randomized

Interventional model

Single Group Assignment

Masking

None (Open label)

30 participants in 2 patient groups

single sided deafness
Experimental group
Description:
single sided deafness and asymmetrical hearing loss patients functional magnetic resonance imaging
Treatment:
Other: functional magnetic resonance imaging
control group
Other group
Description:
Normal hearing subject functional magnetic resonance imaging
Treatment:
Other: functional magnetic resonance imaging

Trial contacts and locations

1

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Data sourced from clinicaltrials.gov

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