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Original Article

A method for determining precise electrical hearing thresholds in cochlear implant users

ORCID Icon, , ORCID Icon, , ORCID Icon & ORCID Icon
Pages 502-509 | Received 27 Feb 2017, Accepted 27 Nov 2017, Published online: 01 Feb 2018

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Joachim Müller-Deile, Nicole Neben, Norbert Dillier, Andreas Büchner, Alexander Mewes, Friederike Junge, Waikong Lai, Mark Schuessler & Matthias Hey. (2023) Comparisons of electrophysiological and psychophysical fitting methods for cochlear implants. International Journal of Audiology 62:2, pages 118-128.
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Saori Shiraki, Takeshi Sato, Ryoukichi Ikeda, Jun Suzuki, Yohei Honkura, Shuichi Sakamoto, Yukio Katori & Tetsuaki Kawase. (2022) Loudness functions for patients with functional hearing loss. International Journal of Audiology 61:1, pages 59-65.
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Kelly Vasconcelos Chaves Martins & Maria Valéria Schmidt Goffi-Gomez. (2021) The influence of stimulation levels on auditory thresholds and speech recognition in adult cochlear implant users. Cochlear Implants International 22:1, pages 42-48.
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Justine Wathour, Paul J. Govaerts & Naïma Deggouj. (2020) From manual to artificial intelligence fitting: Two cochlear implant case studies. Cochlear Implants International 21:5, pages 299-305.
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Articles from other publishers (15)

Ulrich Hoppe, Anne Hast & Thomas Hocke. (2023) Validation of a predictive model for speech discrimination after cochlear impIant provisionValidierung eines Modells zur Vorhersage des Sprachverstehens nach Cochleaimplantation. HNO 71:S1, pages 53-59.
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Matthias Hey, Alexander Mewes & Thomas Hocke. (2022) Speech comprehension in noise—considerations for ecologically valid assessment of communication skills ability with cochlear implantsSprachverstehen im Störschall—Überlegungen zur ökologisch validen Bewertung der Kommunikationsfähigkeit mit Cochleaimplantat. HNO 71:S1, pages 26-34.
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Oliver C. Dziemba, Stephan Merz & Thomas Hocke. (2023) Zur evaluierenden Audiometrie nach Cochlea-Implantat-VersorgungEvaluative audiometry after cochlear implant provision. German Version. HNO.
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Justine Wathour, Paul J. Govaerts, Lucie Derue, Suzanne Vanderbemden, Hélène Huaux, Emilie Lacroix & Naïma Deggouj. (2022) Prospective Comparison Between Manual and Computer-Assisted (FOX) Cochlear Implant Fitting in Newly Implanted Patients. Ear & Hearing 44:3, pages 494-505.
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Ulrich Hoppe, Anne Hast & Thomas Hocke. (2023) Validierung eines Modells zur Vorhersage des Sprachverstehens nach CochleaimplantationValidation of a predictive model for speech discrimination after cochlear implant provision. HNO 71:5, pages 311-318.
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Oliver C. Dziemba, Tina Brzoska, Friedrich Ihler & Chia-Jung Busch. (2023) Eignung der Bestimmung prozentualer Hörverluste zum Monitoring der Cochlea Implantat RehabilitationSuitability of determining percentage hearing loss for monitoring cochlear implant rehabilitation. HNO 71:2, pages 83-91.
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Yefei Mo, Huali Zhou, Fanhui Kong, Zhifeng Liu, Xiaohong Liu, Hongming Huang, Yan Huang, Nengheng Zheng, Qinglin Meng & Peina Wu. (2023) Effects of number of maxima and electrical dynamic range on speech-in-noise perception with an “n-of-m” cochlear-implant strategy. Biomedical Signal Processing and Control 79, pages 104169.
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Matthias Hey, Alexander Mewes & Thomas Hocke. (2022) Sprachverstehen im Störschall – Überlegungen zur ökologisch validen Bewertung der Kommunikationsfähigkeit mit CochleaimplantatSpeech comprehension in noise—considerations for ecologically valid assessment of communication skills ability with cochlear implants. German version. HNO 70:12, pages 861-869.
Crossref
Teresa G. Vos, Kevin D. Brown, Emily Buss, Andrea L. Bucker, Matthew M. Dedmon, Brendan P. O’Connell, Jenna Raymond & Margaret T. Dillon. (2022) Influence of Postponed Follow-Up after Cochlear Implant Activation during the COVID-19 Pandemic on Aided Sound Field Detection and Speech Recognition. Audiology and Neurotology 27:3, pages 227-234.
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Justine Wathour, Paul J. Govaerts & Naïma Deggouj. (2021) Variability of fitting parameters across cochlear implant centres. European Archives of Oto-Rhino-Laryngology 278:12, pages 4671-4679.
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Matthias Hey, Britta Böhnke, Alexander Mewes, Patrick Munder, Stefan J. Mauger & Thomas Hocke. (2021) Speech comprehension across multiple CI processor generations: Scene dependent signal processing . Laryngoscope Investigative Otolaryngology 6:4, pages 807-815.
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Ali Saeedi, Ludwig Englert & Werner Hemmert. (2021) eABR THR Estimation Using High-Rate Multi-Pulse Stimulation in Cochlear Implant Users. Frontiers in Neuroscience 15.
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Kelly Vasconcelos Chaves Martins, Maria Valéria Schmidt Goffi-Gomez, Robinson Koji Tsuji & Ricardo Ferreira Bento. (2021) Do the minimum and maximum comfortable stimulation levels influence the cortical potential latencies or the speech recognition in adult cochlear implant users?. Hearing Research 404, pages 108206.
Crossref
Jonathan R. Mallen, Jerlon Chiu, Hillary Marquis, Amanda Ottochian, Erin Perez, Chia‐Ling Kuo, Steve OttoTessa Ryan & Daniel S. Roberts. (2019) Quantifying tinnitus suppression in cochlear implantation using tinnitus interval‐limited tracking. The Laryngoscope 130:8, pages 2047-2052.
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Feike de Graaff, Birgit I. Lissenberg-WitteMarre W. Kaandorp, Paul Merkus, S. Theo Goverts, Sophia E. Kramer & Cas Smits. (2020) Relationship Between Speech Recognition in Quiet and Noise and Fitting Parameters, Impedances and ECAP Thresholds in Adult Cochlear Implant Users. Ear & Hearing 41:4, pages 935-947.
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