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Speech Intelligibility in Various Noise Conditions with the Nucleus® 5 CP810 Sound Processor
The Nucleus(®) 5 System Sound Processor (CP810, Cochlear™, Macquarie University, NSW, Australia) contains two omnidirectional microphones. They can be configured as a fixed directional microphone combination (called Zoom) or as an adaptive beamformer (called Beam), which adjusts the directivity cont...
Autores principales: | , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
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PAGEPress Publications, Pavia, Italy
2015
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4698600/ https://www.ncbi.nlm.nih.gov/pubmed/26779327 http://dx.doi.org/10.4081/audiores.2015.132 |
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author | Dillier, Norbert Lai, Wai Kong |
author_facet | Dillier, Norbert Lai, Wai Kong |
author_sort | Dillier, Norbert |
collection | PubMed |
description | The Nucleus(®) 5 System Sound Processor (CP810, Cochlear™, Macquarie University, NSW, Australia) contains two omnidirectional microphones. They can be configured as a fixed directional microphone combination (called Zoom) or as an adaptive beamformer (called Beam), which adjusts the directivity continuously to maximally reduce the interfering noise. Initial evaluation studies with the CP810 had compared performance and usability of the new processor in comparison with the Freedom™ Sound Processor (Cochlear™) for speech in quiet and noise for a subset of the processing options. This study compares the two processing options suggested to be used in noisy environments, Zoom and Beam, for various sound field conditions using a standardized speech in noise matrix test (Oldenburg sentences test). Nine German-speaking subjects who previously had been using the Freedom speech processor and subsequently were upgraded to the CP810 device participated in this series of additional evaluation tests. The speech reception threshold (SRT for 50% speech intelligibility in noise) was determined using sentences presented via loudspeaker at 65 dB SPL in front of the listener and noise presented either via the same loudspeaker (S(0)N(0)) or at 90 degrees at either the ear with the sound processor (S(0)N(CI+)) or the opposite unaided ear (S(0)N(CI-)). The fourth noise condition consisted of three uncorrelated noise sources placed at 90, 180 and 270 degrees. The noise level was adjusted through an adaptive procedure to yield a signal to noise ratio where 50% of the words in the sentences were correctly understood. In spatially separated speech and noise conditions both Zoom and Beam could improve the SRT significantly. For single noise sources, either ipsilateral or contralateral to the cochlear implant sound processor, average improvements with Beam of 12.9 and 7.9 dB in SRT were found. The average SRT of –8 dB for Beam in the diffuse noise condition (uncorrelated noise from both sides and back) is truly remarkable and comparable to the performance of normal hearing listeners in the same test environment. The static directivity (Zoom) option in the diffuse noise condition still provides a significant benefit of 5.9 dB in comparison with the standard omnidirectional microphone setting. These results indicate that CI recipients may improve their speech recognition in noisy environments significantly using these directional microphone-processing options. |
format | Online Article Text |
id | pubmed-4698600 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | PAGEPress Publications, Pavia, Italy |
record_format | MEDLINE/PubMed |
spelling | pubmed-46986002016-01-15 Speech Intelligibility in Various Noise Conditions with the Nucleus® 5 CP810 Sound Processor Dillier, Norbert Lai, Wai Kong Audiol Res Article The Nucleus(®) 5 System Sound Processor (CP810, Cochlear™, Macquarie University, NSW, Australia) contains two omnidirectional microphones. They can be configured as a fixed directional microphone combination (called Zoom) or as an adaptive beamformer (called Beam), which adjusts the directivity continuously to maximally reduce the interfering noise. Initial evaluation studies with the CP810 had compared performance and usability of the new processor in comparison with the Freedom™ Sound Processor (Cochlear™) for speech in quiet and noise for a subset of the processing options. This study compares the two processing options suggested to be used in noisy environments, Zoom and Beam, for various sound field conditions using a standardized speech in noise matrix test (Oldenburg sentences test). Nine German-speaking subjects who previously had been using the Freedom speech processor and subsequently were upgraded to the CP810 device participated in this series of additional evaluation tests. The speech reception threshold (SRT for 50% speech intelligibility in noise) was determined using sentences presented via loudspeaker at 65 dB SPL in front of the listener and noise presented either via the same loudspeaker (S(0)N(0)) or at 90 degrees at either the ear with the sound processor (S(0)N(CI+)) or the opposite unaided ear (S(0)N(CI-)). The fourth noise condition consisted of three uncorrelated noise sources placed at 90, 180 and 270 degrees. The noise level was adjusted through an adaptive procedure to yield a signal to noise ratio where 50% of the words in the sentences were correctly understood. In spatially separated speech and noise conditions both Zoom and Beam could improve the SRT significantly. For single noise sources, either ipsilateral or contralateral to the cochlear implant sound processor, average improvements with Beam of 12.9 and 7.9 dB in SRT were found. The average SRT of –8 dB for Beam in the diffuse noise condition (uncorrelated noise from both sides and back) is truly remarkable and comparable to the performance of normal hearing listeners in the same test environment. The static directivity (Zoom) option in the diffuse noise condition still provides a significant benefit of 5.9 dB in comparison with the standard omnidirectional microphone setting. These results indicate that CI recipients may improve their speech recognition in noisy environments significantly using these directional microphone-processing options. PAGEPress Publications, Pavia, Italy 2015-10-07 /pmc/articles/PMC4698600/ /pubmed/26779327 http://dx.doi.org/10.4081/audiores.2015.132 Text en ©Copyright N. Dillier and W.K. Lai http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Article Dillier, Norbert Lai, Wai Kong Speech Intelligibility in Various Noise Conditions with the Nucleus® 5 CP810 Sound Processor |
title | Speech Intelligibility in Various Noise Conditions with the Nucleus® 5 CP810 Sound Processor |
title_full | Speech Intelligibility in Various Noise Conditions with the Nucleus® 5 CP810 Sound Processor |
title_fullStr | Speech Intelligibility in Various Noise Conditions with the Nucleus® 5 CP810 Sound Processor |
title_full_unstemmed | Speech Intelligibility in Various Noise Conditions with the Nucleus® 5 CP810 Sound Processor |
title_short | Speech Intelligibility in Various Noise Conditions with the Nucleus® 5 CP810 Sound Processor |
title_sort | speech intelligibility in various noise conditions with the nucleus® 5 cp810 sound processor |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4698600/ https://www.ncbi.nlm.nih.gov/pubmed/26779327 http://dx.doi.org/10.4081/audiores.2015.132 |
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