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Original Article

Comparison of three procedures for initial fitting of compression hearing aids. II. Experienced users, fitted unilaterally

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Pages 3-14 | Received 02 May 2002, Accepted 10 Dec 2002, Published online: 07 Jul 2009

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Read on this site (7)

Melinda Anderson, Varsha Rallapalli, Tim Schoof, Pamela Souza & Kathryn Arehart. (2018) The use of self-report measures to examine changes in perception in response to fittings using different signal processing parameters. International Journal of Audiology 57:11, pages 809-815.
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Teresa Y. C. Ching, Vicky W. Zhang, Earl E. Johnson, Patricia Van Buynder, Sanna Hou, Lauren Burns, Laura Button, Christopher Flynn & Karen McGhie. (2018) Hearing aid fitting and developmental outcomes of children fit according to either the NAL or DSL prescription: fit-to-target, audibility, speech and language abilities. International Journal of Audiology 57:sup2, pages S41-S54.
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Brian C. J. Moore & Aleksander Sęk. (2016) Comparison of the CAM2A and NAL-NL2 hearing-aid fitting methods for participants with a wide range of hearing losses. International Journal of Audiology 55:2, pages 93-100.
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Brian C.J. Moore, Brian R. Glasberg & Michael A. Stone. (2010) Development of a new method for deriving initial fittings for hearing aids with multi-channel compression: CAMEQ2-HF. International Journal of Audiology 49:3, pages 216-227.
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Kevin J. Munro & Mark E. Lutman. (2004) Self-reported outcome in new hearing aid users over a 24-week post-fitting period. International Journal of Audiology 43:10, pages 555-562.
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Josephine Marriage, Brian C. J. Moore & José I. Alcántara. (2004) Comparison of three procedures for initial fitting of compression hearing aids. III. Inexperienced versus experienced users. International Journal of Audiology 43:4, pages 198-210.
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Articles from other publishers (11)

Viktorija Radotić, Ana Bedalov, Petar Drviš, Dries Braeken & Damir Kovačić. (2019) Guided growth with aligned neurites in adult spiral ganglion neurons cultured in vitro on silicon micro-pillar substrates . Journal of Neural Engineering 16:6, pages 066037.
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Lukasz Olszewski, W. Wiktor Jedrzejczak, Anna Piotrowska & Henryk Skarzynski. (2017) Round window stimulation with the Vibrant Soundbridge: Comparison of direct and indirect coupling. The Laryngoscope 127:12, pages 2843-2849.
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Brian C. J. Moore, Alexander Gibbs, Grace Onions & Brian R. Glasberg. (2014) Measurement and modeling of binaural loudness summation for hearing-impaired listeners. The Journal of the Acoustical Society of America 136:2, pages 736-747.
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Brian C. J. Moore, Christian Füllgrabe & Michael A. Stone. (2011) Determination of Preferred Parameters for Multichannel Compression Using Individually Fitted Simulated Hearing Aids and Paired Comparisons. Ear & Hearing 32:5, pages 556-568.
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Brian C. J. Moore & Christian Füllgrabe. (2010) Evaluation of the CAMEQ2-HF Method for Fitting Hearing Aids With Multichannel Amplitude Compression. Ear & Hearing 31:5, pages 657-666.
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Lorienne M. Jenstad, Marlene P. Bagatto, Richard C. Seewald, Susan D. Scollie, Leonard E. Cornelisse & Ron Scicluna. (2007) Evaluation of the Desired Sensation Level [Input/Output] Algorithm for Adults with Hearing Loss: The Acceptable Range for Amplified Conversational Speech. Ear & Hearing 28:6, pages 793-811.
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Mick Metselaar, Bert Maat, Hans Verschuure, Wouter A. Dreschler & Louw Feenstra. (2007) Comparative studies on hearing aid selection and fitting procedures: a review of the literature. European Archives of Oto-Rhino-Laryngology 265:1, pages 21-29.
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Brian C.J. Moore. 2007. Cochlear Hearing Loss. Cochlear Hearing Loss 287 326 .
Monika Bertges Reber & Martin Kompis. (2005) Acclimatization in first-time hearing aid users using three different fitting protocols. Auris Nasus Larynx 32:4, pages 345-351.
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Susan Scollie, Richard Seewald, Leonard Cornelisse, Sheila Moodie, Marlene Bagatto, Diana Laurnagaray, Steve Beaulac & John Pumford. (2016) The Desired Sensation Level Multistage Input/Output Algorithm. Trends in Amplification 9:4, pages 159-197.
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Brian C.J. Moore & Brian R. Glasberg. (2004) A revised model of loudness perception applied to cochlear hearing loss. Hearing Research 188:1-2, pages 70-88.
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