Binaural model-based dynamic-range compression.
Int J Audiol
; 57(sup3): S31-S42, 2018 06.
Article
in En
| MEDLINE
| ID: mdl-29373937
OBJECTIVE: Binaural cues such as interaural level differences (ILDs) are used to organise auditory perception and to segregate sound sources in complex acoustical environments. In bilaterally fitted hearing aids, dynamic-range compression operating independently at each ear potentially alters these ILDs, thus distorting binaural perception and sound source segregation. DESIGN: A binaurally-linked model-based fast-acting dynamic compression algorithm designed to approximate the normal-hearing basilar membrane (BM) input-output function in hearing-impaired listeners is suggested. A multi-center evaluation in comparison with an alternative binaural and two bilateral fittings was performed to assess the effect of binaural synchronisation on (a) speech intelligibility and (b) perceived quality in realistic conditions. STUDY SAMPLE: 30 and 12 hearing impaired (HI) listeners were aided individually with the algorithms for both experimental parts, respectively. RESULTS: A small preference towards the proposed model-based algorithm in the direct quality comparison was found. However, no benefit of binaural-synchronisation regarding speech intelligibility was found, suggesting a dominant role of the better ear in all experimental conditions. CONCLUSION: The suggested binaural synchronisation of compression algorithms showed a limited effect on the tested outcome measures, however, linking could be situationally beneficial to preserve a natural binaural perception of the acoustical environment.
Key words
Full text:
1
Database:
MEDLINE
Main subject:
Correction of Hearing Impairment
/
Speech Perception
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Signal Processing, Computer-Assisted
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Persons With Hearing Impairments
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Hearing
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Hearing Aids
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Hearing Loss, Sensorineural
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Models, Theoretical
Type of study:
Clinical_trials
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Diagnostic_studies
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Observational_studies
/
Prognostic_studies
Country/Region as subject:
Europa
Language:
En
Journal:
Int J Audiol
Year:
2018
Type:
Article