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Titre : | A clinical comparison of DPOAE fine structure reduction methods (2021) |
Auteurs : | Steven C. Marcrum ; Eva Höfle ; Erin M. Picou ; Thomas Steffens ; Peter Kummer ; Pingling Kwok |
Type de document : | Article |
Dans : | International Journal of Audiology IJA (Vol. 60, n°3, Mars 2021) |
Article en page(s) : | p. 191-201 |
Langues: | Anglais |
Descripteurs : |
HE Vinci Audiologie pédiatrique ; Emissions otoacoustiques spontanées (OAEs) ; Perte d'auditionAutres descripteurs Modulation de frequence |
Résumé : |
Objective
To evaluate two real-time methods for reducing distortion product otoacoustic emission (DPOAE) fine structure in terms of DPOAE amplitude and fine structure depth. Design A prospective, repeated-measures design was used to assess DPOAE characteristics in response to a conventional stimulation method (Conv.), as well as for methods implementing either a generic suppressor tone (Supp.) or frequency modulation of the f2 primary tone (FM). Study sample Eighty-three young adults (58 females) between the ages of 20 and 34 years with normal hearing completed testing for this study. Results Use of the Conv. and FM methods resulted in consistently higher DPOAE levels relative to the Supp. method, with average advantages of 6 and 5 dB, respectively. For all methods, increased fine structure depth was observed for stimulation with lower level (25−45 dB SPL) and lower frequency (1000−3000 Hz) primary tones. Finally, use of the Supp. and FM methods resulted in significantly decreased fine structure depth relative to the Conv. method. Conclusion Through frequency modulation of the f2 primary tone, it was possible to reduce the depth of fine structure across a clinically meaningful range of stimulation levels and frequencies without concomitant reduction in DPOAE amplitude. |
Accès : | Contactez la bibliothèque d'Ixelles si le lien vers la ressource électronique ne fonctionne plus |
Disponible en ligne : | Oui |
En ligne : | https://login.ezproxy.vinci.be/login?url=https://www.tandfonline.com/doi/full/10.1080/14992027.2020.1822552 |