ORCID
Fabien Bonnet : 0000-0002-4892-1787
Alexis Pinsonnault-Skvarenina : 0000-0003-4303-7172
Christian Giguère : 0000-0002-2822-1433
Jérémie Voix : 0000-0002-0097-4054
Hugues Nélisse : 0000-0002-8703-9586
Type de document
Études primaires
Année de publication
2026
Langue
Anglais
Titre de la revue
Trends in Hearing
Résumé
Hearing protection devices (HPDs) are widely used to mitigate the risks of noise-induced hearing loss in industrial environments. However, conventional HPDs can often hinder communication for workers with hearing loss. While those workers may rely on hearing aids in their daily lives, the potential benefits and associated risks of using such devices in noisy workplaces remain unexplored. This study evaluated the effects of different hearing aid signal processing algorithms on speech intelligibility and estimated noise exposure under industrial noise conditions to characterize the balance between communication and protection needed to develop solutions for workers with hearing loss. A digital hearing protection research platform integrating in-ear receivers and external microphones was configured as a real-time soundcard. Typical hearing aid algorithms, including linear amplification, Wide Dynamic Range Compression (WDRC), digital noise reduction (DNR), and compression limiting, were implemented in different configurations. Two groups, one with normal hearing and one with hearing loss, completed the Hearing in Noise Test (HINT) with a wood-working factory noise at two presentation levels, along with subjective ratings of listening effort and voice clarity and naturalness. Noise exposure for each configuration was also estimated. Results showed significant effects of signal processing strategies and noise presentation levels on both intelligibility and noise exposure. Combining DNR, WDRC and compression limiting showed promising results to balance intelligibility and noise exposure, particularly for participants with hearing loss. The findings emphasize the trade-off between auditory benefit and exposure risk, and call for greater awareness regarding the use of hearing devices in industrial noise. ©Sage
Mots-clés
Prothèse auditive, Hearing aid, Protection de l'ouïe, Hearing protection, Bruit, Noise, Intelligibilité de la parole, Speech intelligibility, Conditions d'exposition, Conditions of exposure, Déficit auditif, Hearing loss, Industrie manufacturière, Manufacturing industry
Numéro de projet IRSST
2017-0011
Citation recommandée
Ollivier, S., Bonnet, F., Pinsonnault-Skvarenina, A., Giguère, C., Voix, J. et Nélisse, H. (2026). On the use of hearing aid algorithms in industrial noise: Balancing speech intelligibility and hearing protection. Trends in Hearing, 30. https://doi.org/10.1177/23312165261478230
