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Sound Localization in Real-Time Vocoded Cochlear-Implant Simulations With Normal-Hearing Listeners

Authors :
Sebastian A. Ausili
Bradford Backus
Martijn J. H. Agterberg
A. John van Opstal
Marc M. van Wanrooij
Source :
Trends in Hearing, Vol 23 (2019)
Publication Year :
2019
Publisher :
SAGE Publishing, 2019.

Abstract

Bilateral cochlear-implant (CI) users and single-sided deaf listeners with a CI are less effective at localizing sounds than normal-hearing (NH) listeners. This performance gap is due to the degradation of binaural and monaural sound localization cues, caused by a combination of device-related and patient-related issues. In this study, we targeted the device-related issues by measuring sound localization performance of 11 NH listeners, listening to free-field stimuli processed by a real-time CI vocoder. The use of a real-time vocoder is a new approach, which enables testing in a free-field environment. For the NH listening condition, all listeners accurately and precisely localized sounds according to a linear stimulus–response relationship with an optimal gain and a minimal bias both in the azimuth and in the elevation directions. In contrast, when listening with bilateral real-time vocoders, listeners tended to orient either to the left or to the right in azimuth and were unable to determine sound source elevation. When listening with an NH ear and a unilateral vocoder, localization was impoverished on the vocoder side but improved toward the NH side. Localization performance was also reflected by systematic variations in reaction times across listening conditions. We conclude that perturbation of interaural temporal cues, reduction of interaural level cues, and removal of spectral pinna cues by the vocoder impairs sound localization. Listeners seem to ignore cues that were made unreliable by the vocoder, leading to acute reweighting of available localization cues. We discuss how current CI processors prevent CI users from localizing sounds in everyday environments.

Subjects

Subjects :
Otorhinolaryngology
RF1-547

Details

Language :
English
ISSN :
23312165
Volume :
23
Database :
Directory of Open Access Journals
Journal :
Trends in Hearing
Publication Type :
Academic Journal
Accession number :
edsdoj.8661d67ac1f940aca1e13f6d1e517e6c
Document Type :
article
Full Text :
https://doi.org/10.1177/2331216519847332