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1
Cochlear Implant Research and Development in the Twenty-first Century: A Critical Update ...
Carlyon, Robert P.; Goehring, Tobias. - : Apollo - University of Cambridge Repository, 2021
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2
The Panoramic ECAP Method: Estimating Patient-Specific Patterns of Current Spread and Neural Health in Cochlear Implant Users ...
Garcia, Charlotte; Goehring, Tobias; Cosentino, Stefano. - : Apollo - University of Cambridge Repository, 2021
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3
The effect of increased channel interaction on speech perception with cochlear implants ...
Goehring, Tobias; Archer-Boyd, Alan W.; Arenberg, Julie G.. - : Apollo - University of Cambridge Repository, 2021
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4
The Panoramic ECAP Method: Estimating Patient-Specific Patterns of Current Spread and Neural Health in Cochlear Implant Users
Garcia, Charlotte; Goehring, Tobias; Cosentino, Stefano. - : Springer US, 2021. : Journal of the Association for Research in Otolaryngology, 2021
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5
Interpreting the Effect of Stimulus Parameters on the Electrically Evoked Compound Action Potential and on Neural Health Estimates
Brochier, Tim; McKay, Colette M.; Carlyon, Robert P.. - : Springer US, 2021. : Journal of the Association for Research in Otolaryngology, 2021
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6
The effect of increased channel interaction on speech perception with cochlear implants
Goehring, Tobias; Archer-Boyd, Alan W.; Arenberg, Julie G.. - : Nature Publishing Group UK, 2021. : Scientific Reports, 2021
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7
Cochlear Implant Research and Development in the Twenty-first Century: A Critical Update
Carlyon, Robert P.; Goehring, Tobias. - : Springer US, 2021. : Journal of the Association for Research in Otolaryngology, 2021
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8
Using Spectral Blurring to Assess Effects of Channel Interaction on Speech-in-Noise Perception with Cochlear Implants
Goehring, Tobias; Arenberg, Julie G.; Carlyon, Robert P.. - : Springer US, 2021. : Journal of the Association for Research in Otolaryngology, 2021
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9
The effect of increased channel interaction on speech perception with cochlear implants
In: Sci Rep (2021)
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10
Using Spectral Blurring to Assess Effects of Channel Interaction on Speech-in-Noise Perception with Cochlear Implants ...
Goehring, Tobias; Arenberg, Julie G.; Carlyon, Robert P.. - : Apollo - University of Cambridge Repository, 2020
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11
Interpreting the Effect of Stimulus Parameters on the Electrically Evoked Compound Action Potential and on Neural Health Estimates ...
Brochier, Tim; McKay, Colette M.; Carlyon, Robert P.. - : Apollo - University of Cambridge Repository, 2020
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12
Using Spectral Blurring to Assess Effects of Channel Interaction on Speech-in-Noise Perception with Cochlear Implants ...
Goehring, Tobias; Arenberg, Julie G.; Carlyon, Robert P.. - : Apollo - University of Cambridge Repository, 2020
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13
Using Spectral Blurring to Assess Effects of Channel Interaction on Speech-in-Noise Perception with Cochlear Implants
Goehring, Tobias; Arenberg, Julie G.; Carlyon, Robert P.. - : Springer US, 2020. : Journal of the Association for Research in Otolaryngology, 2020
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14
A Site-Selection Strategy Based on Polarity Sensitivity for Cochlear Implants: Effects on Spectro-Temporal Resolution and Speech Perception
Goehring, Tobias; Archer-Boyd, Alan; Deeks, John M.. - : Springer US, 2020. : Journal of the Association for Research in Otolaryngology, 2020
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15
The effect of a coding strategy that removes temporally masked pulses on speech perception by cochlear implant users
In: Hear Res (2020)
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16
Using Spectral Blurring to Assess Effects of Channel Interaction on Speech-in-Noise Perception with Cochlear Implants
In: J Assoc Res Otolaryngol (2020)
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17
A Site-Selection Strategy Based on Polarity Sensitivity for Cochlear Implants: Effects on Spectro-Temporal Resolution and Speech Perception ...
Goehring, Tobias; Archer-Boyd, Alan; Deeks, John M.. - : Apollo - University of Cambridge Repository, 2019
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18
A Site-Selection Strategy Based on Polarity Sensitivity for Cochlear Implants: Effects on Spectro-Temporal Resolution and Speech Perception
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19
Using recurrent neural networks to improve the perception of speech in non-stationary noise by people with cochlear implants
Abstract: Speech-in-noise perception is a major problem for users of cochlear implants (CIs), especially with non-stationary background noise. Noise-reduction algorithms have produced benefits but relied on a priori information about the target speaker and/or background noise. We developed a recurrent neural network (RNN) algorithm for enhancing speech in non-stationary noise and evaluated its benefits for speech perception, using both objective measures and experiments with CI simulations and CI users. The RNN was trained using speech from many talkers mixed with multi-talker or traffic noise recordings. Its performance was evaluated using speech from a novel talker mixed with novel noise recordings of the same class, either babble or traffic noise. Objective measures indicated benefits of using a recurrent over a feed-forward architecture and predicted better speech intelligibility with than without the processing. The experimental results showed significantly improved intelligibility of speech in babble noise but not in traffic noise. CI subjects rated the processed stimuli as significantly better in terms of speech distortions, noise intrusiveness and overall quality than unprocessed stimuli for both babble and traffic noise. These results extend previous findings for CI users to mostly unseen acoustic conditions with non-stationary noise.
Keyword: Article
URL: http://www.ncbi.nlm.nih.gov/pubmed/31370586
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6773603/
https://doi.org/10.1121/1.5119226
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20
A cross-sectional questionnaire study of tinnitus awareness and impact in a population of adult cochlear implant users
Gomersall, Philip A.; Baguley, David; Carlyon, Robert P.. - : Lippincott, Williams & Wilkins, 2018
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