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  3. Benefit of a Contralateral Routing of Signal Device for Unilateral Cochlear Implant Users.

Benefit of a Contralateral Routing of Signal Device for Unilateral Cochlear Implant Users.

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DOI
10.7892/boris.65180
Publisher DOI
10.1159/000363212
PubMed ID
25501444
Abstract
Objective: To investigate objective and subjective effects of an adjunctive contralateral routing of signal (CROS) device at the untreated ear in patients with a unilateral cochlear implant (CI). Design: Prospective study of 10 adult experienced unilateral CI users with bilateral severe-to-profound hearing loss. Speech in noise reception (SNR) and sound localization were measured with and without the additional CROS device. SNR was measured by applying speech signals at the untreated/CROS side while noise signals came from the front (S90N0). For S0N90, signal sources were switched. Sound localization was measured in a 12-loudspeaker full circle setup. To evaluate the subjective benefit, patients tried the device for 2 weeks at home, then filled out the abbreviated Speech, Spatial and Qualities of Hearing Scale as well as the Bern benefit in single-sided deafness questionnaires. Results: In the setting S90N0, all patients showed a highly significant SNR improvement when wearing the additional CROS device (mean 6.4 dB, p < 0.001). In the unfavorable setting S0N90, only a minor deterioration of speech understanding was noted (mean -0.66 dB, p = 0.54). Sound localization did not improve substantially with CROS. In the two questionnaires, 12 of 14 items showed an improvement in mean values, but none of them was statistically significant. Conclusion: Patients with unilateral CI benefit from a contralateral CROS device, particularly in a noisy environment, when speech comes from the CROS ear side. © 2014 S. Karger AG, Basel.
Date Issued
2014-12-09
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Language(s)
en
Author(s)
Weder, Stefan Andreas  orcid-logo
Universitätsklinik für Hals-, Nasen- und Ohrenkrankheiten, Kopf- und Halschirurgie (HNOK)  
Kompis, Martin  
Universitätsklinik für Hals-, Nasen- und Ohrenkrankheiten, Kopf- und Halschirurgie (HNOK)  
Caversaccio, Marco  
Universitätsklinik für Hals-, Nasen- und Ohrenkrankheiten, Kopf- und Halschirurgie (HNOK)  
ARTORG Center - Artificial Hearing Research  
Stieger, Christof  
ARTORG Center - Artificial Hearing Research  
Additional Credits
Universitätsklinik für Hals-, Nasen- und Ohrenkrankheiten, Kopf- und Halschirurgie (HNOK)  
ARTORG Center - Artificial Hearing Research  
Journal
Audiology & neuro-otology
Publisher
Karger
ISSN
1420-3030
Access(Rights)
open.access
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