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Original Article

Frequency-compression outcomes in listeners with steeply sloping audiograms

Resultados de la compresión de frecuencia en oyentes con audiogramas de pendiente pronunciada

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Pages 619-629 | Published online: 07 Jul 2009

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

Read on this site (19)

Xueqing Chen, Yanyan You, Jing Yang, Jinyu Qian, Qian Lu, Volker Kuehnel, Julia Rehmann, Bo Liu & Li Xu. (2020) Effects of nonlinear frequency compression on Mandarin speech and sound-quality perception in hearing-aid users. International Journal of Audiology 59:7, pages 524-533.
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Andrea Simpson, Alicia Bond, Michelle Loeliger & Sandy Clarke. (2018) Speech intelligibility benefits of frequency-lowering algorithms in adult hearing aid users: a systematic review and meta-analysis. International Journal of Audiology 57:4, pages 249-261.
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Lidwien C. E. Veugen, Josef Chalupper, Lucas H. M. Mens, Ad F. M. Snik & A. John van Opstal. (2017) Effect of extreme adaptive frequency compression in bimodal listeners on sound localization and speech perception. Cochlear Implants International 18:5, pages 266-277.
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Marina Salorio-Corbetto, Thomas Baer & Brian C. J. Moore. (2017) Quality ratings of frequency-compressed speech by participants with extensive high-frequency dead regions in the cochlea. International Journal of Audiology 56:2, pages 106-120.
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Christi W. Miller, Emily Bates & Marc Brennan. (2016) The effects of frequency lowering on speech perception in noise with adult hearing-aid users. International Journal of Audiology 55:5, pages 305-312.
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Nagwa Hazzaa, Dalia Mohamed Hassan & Abeer Hassan. (2016) Evaluation of non-linear frequency compression hearing aids using speech P1-cortical auditory evoked potential. Hearing, Balance and Communication 14:1, pages 36-43.
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Bruna S. S. Mussoi & Ruth A. Bentler. (2015) Impact of frequency compression on music perception. International Journal of Audiology 54:9, pages 627-633.
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Rachel J. Ellis & Kevin J. Munro. (2015) Predictors of aided speech recognition, with and without frequency compression, in older adults. International Journal of Audiology 54:7, pages 467-475.
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Erin M. Picou, Steven C. Marcrum & Todd A. Ricketts. (2015) Evaluation of the effects of nonlinear frequency compression on speech recognition and sound quality for adults with mild to moderate hearing loss. International Journal of Audiology 54:3, pages 162-169.
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Rachel J. Ellis & Kevin J. Munro. (2015) Benefit from, and acclimatization to, frequency compression hearing aids in experienced adult hearing-aid users. International Journal of Audiology 54:1, pages 37-47.
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Ann-Marie Dickinson, Richard Baker, Catherine Siciliano & Kevin J. Munro. (2014) Adaptation to nonlinear frequency compression in normal-hearing adults: A comparison of training approaches. International Journal of Audiology 53:10, pages 719-729.
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Kathryn Hopkins, Mumtaz Khanom, Ann-Marie Dickinson & Kevin J. Munro. (2014) Benefit from non-linear frequency compression hearing aids in a clinical setting: The effects of duration of experience and severity of high-frequency hearing loss. International Journal of Audiology 53:4, pages 219-228.
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Thomas Lenarz, Chris James, Domenico Cuda, Alec Fitzgerald O’Connor, Bruno Frachet, Johan H.M. Frijns, Thomas Klenzner, Roland Laszig, Manuel Manrique, Mathieu Marx, Paul Merkus, Emmanuel A.M. Mylanus, Erwin Offeciers, Joerg Pesch, Angel Ramos-Macias, Alain Robier, Olivier Sterkers & Alain Uziel. (2013) European multi-centre study of the Nucleus Hybrid L24 cochlear implant. International Journal of Audiology 52:12, pages 838-848.
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Rachel J. Ellis & Kevin J. Munro. (2013) Does cognitive function predict frequency compressed speech recognition in listeners with normal hearing and normal cognition?. International Journal of Audiology 52:1, pages 14-22.
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Jace Wolfe, Andrew John, Erin Schafer, Myriel Nyffeler, Michael Boretzki, Teresa Caraway & Mary Hudson. (2011) Long-term effects of non-linear frequency compression for children with moderate hearing loss. International Journal of Audiology 50:6, pages 396-404.
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Danielle Glista, Susan Scollie, Marlene Bagatto, Richard Seewald, Vijay Parsa & Andrew Johnson. (2009) Evaluation of nonlinear frequency compression: Clinical outcomes. International Journal of Audiology 48:9, pages 632-644.
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Joanna D. Robinson, Thomas H. Stainsby, Thomas Baer & Brian C.J. Moore. (2009) Evaluation of a frequency transposition algorithm using wearable hearing aids. International Journal of Audiology 48:6, pages 384-393.
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Parivash Ranjbar, Erik Borg, Lennart Philipson & Dag Stranneby. (2008) Auditive identification of signal-processed environmental sounds: Monitoring the environment. International Journal of Audiology 47:12, pages 724-736.
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Marwa Mahmoud Saleh, Hassnaa Othman Mohammed, Iman Sadek El Danasoury, Dalia Mohamed Hassan, Sally A. Sarwat & Dina A. Elrefaie. (2022) Egyptian vowel second formant in isolation and in transition following high-frequency fricatives by NLFC hearing aid in children: how does the pattern compare to typically hearing peers?. The Egyptian Journal of Otolaryngology 38:1.
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Snandan Sharma, Waldo Nogueira, A. John van Opstal, Josef Chalupper, Lucas H. M. Mens & Marc M. van Wanrooij. (2021) Amount of Frequency Compression in Bimodal Cochlear Implant Users Is a Poor Predictor for Audibility and Spatial Hearing. Journal of Speech, Language, and Hearing Research 64:12, pages 5000-5013.
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Marc A. Brennan & Ryan W. McCreery. (2022) Audibility and Spectral-Ripple Discrimination Thresholds as Predictors of Word Recognition with Nonlinear Frequency Compression. Journal of the American Academy of Audiology 32:09, pages 596-605.
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Jungmin Ahn, Ji Eun Choi, Ju Yong Kang, Ik Joon Choi, Myung-Chul Lee, Byeong-Cheol Lee, Sung Hwa Hong & Il Joon Moon. (2021) The Influence of Non-Linear Frequency Compression on the Perception of Speech and Music in Patients with High Frequency Hearing Loss. Journal of Audiology and Otology 25:2, pages 80-88.
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Masayo Kamei, Hiroaki Sato, Kiyoshi Yonemoto & Youko Odashima. (2019) Study of frequency-lowering functions in hearing aids.補聴器の周波数変換処理機能の検討. AUDIOLOGY JAPAN 62:4, pages 307-314.
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Marina Salorio-Corbetto, Thomas Baer & Brian C. J. Moore. (2019) Comparison of Frequency Transposition and Frequency Compression for People With Extensive Dead Regions in the Cochlea. Trends in Hearing 23, pages 233121651882220.
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Mathieu Hotton & François Bergeron. (2018) User’s perspective of benefits of frequency-lowering hearing aids and electric acoustic stimulation cochlear implants in daily life. Technology and Disability 29:4, pages 199-209.
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James Shehorn, Nicole Marrone & Thomas Muller. (2018) Speech Perception in Noise and Listening Effort of Older Adults With Nonlinear Frequency Compression Hearing Aids. Ear & Hearing 39:2, pages 215-225.
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Marina Salorio-Corbetto, Thomas Baer & Brian C. J. Moore. (2017) Evaluation of a Frequency-Lowering Algorithm for Adults With High-Frequency Hearing Loss. Trends in Hearing 21, pages 233121651773445.
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J.-C. Ceccato, J. Bourien, F. Venail & J.-L. Puel. (2017) Apparecchi acustici convenzionali. EMC - Otorinolaringoiatria 16:4, pages 1-14.
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J.-C. Ceccato, J. Bourien, F. Venail & J.-L. Puel. (2017) Adaptación audioprotésica convencional. EMC - Otorrinolaringología 46:4, pages 1-15.
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Yitao Mao, Jing Yang, Emily Hahn & Li Xu. (2017) Auditory perceptual efficacy of nonlinear frequency compression used in hearing aids: A review. Journal of Otology 12:3, pages 97-111.
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Nathalie Giroud, Ulrike Lemke, Philip Reich, Katarina L. Matthes & Martin Meyer. (2017) The impact of hearing aids and age-related hearing loss on auditory plasticity across three months – An electrical neuroimaging study. Hearing Research 353, pages 162-175.
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Mahmoud S. A.A. Salem, Mohamed A. Talaat & Mona I. Mourad. (2017) Edge frequency effect on speech recognition in patients with steep-slope hearing loss. The Egyptian Journal of Otolaryngology 33:1, pages 111-119.
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Fei Chen & Fiona W. S. Chan. (2016) Understanding frequency-compressed Mandarin sentences: Role of vowels. The Journal of the Acoustical Society of America 139:3, pages 1204-1213.
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Letícia Pimenta Costa-Guarisco, Francisco José Fraga & Maria Cecília Martinelli Iório. (2016) Índice Percentual de Identificação de Fonemas Fricativos: proposta para avaliação da compressão de frequências. Audiology - Communication Research 21:0.
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Martin Kirchberger & Frank A. Russo. (2016) Harmonic Frequency Lowering. Trends in Hearing 20, pages 233121651562613.
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Stefan Launer, Justin A. Zakis & Brian C. J. Moore. 2016. Hearing Aids. Hearing Aids 93 130 .
Vanessa Clarizia Marchesin & Maria Cecília Martinelli Iório. (2015) Study of the long-term effects of frequency compression by behavioral verbal tests in adults. CoDAS 27:1, pages 37-43.
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Amanda Dal Piva Gresele, Maristela Julio Costa & Michele Vargas Garcia. (2015) Compressão de frequências no reconhecimento de fala de idosos com possíveis zonas mortas na cóclea. Revista CEFAC 17:1, pages 223-237.
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Mohammed Alnahwi & Zeinab A. AlQudehy. (2015) Comparison between frequency transposition and frequency compression hearing aids. The Egyptian Journal of Otolaryngology 31:1, pages 10-18.
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Amanda Dal Piva Gresele & Maristela Julio Costa. (2014) Compressão de frequências e reconhecimento de fala em idosos. Audiology - Communication Research 19:3, pages 310-320.
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Ying-Yee Kong, Ala Mullangi & Kostas Kokkinakis. (2014) Classification of Fricative Consonants for Speech Enhancement in Hearing Devices. PLoS ONE 9:4, pages e95001.
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Michelle Moran, Richard Dowell, Arielle Umansky, Robert Briggs & Susannah Corbett. (2014) OUTCOMES FOR PATIENTS WITH SLOPING HEARING LOSS GIVEN STANDARD COCHLEAR IMPLANTS. Journal of Hearing Science 4:3, pages 9-19.
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Pamela E. Souza, Kathryn H. Arehart, James M. Kates, Naomi B. H. Croghan & Namita Gehani. (2013) Exploring the Limits of Frequency Lowering. Journal of Speech, Language, and Hearing Research 56:5, pages 1349-1363.
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Vijay Parsa, Susan Scollie, Danielle Glista & Andreas Seelisch. (2013) Nonlinear Frequency Compression. Trends in Amplification 17:1, pages 54-68.
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Ruiyu Liang, Ji Xi, Jian Zhou, Cairong Zou & Li Zhao. (2013) An improved method to enhance high-frequency speech intelligibility in noise. Applied Acoustics 74:1, pages 71-78.
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Danielle Glista, Susan Scollie & Jacob Sulkers. (2012) Perceptual Acclimatization Post Nonlinear Frequency Compression Hearing Aid Fitting in Older Children. Journal of Speech, Language, and Hearing Research 55:6, pages 1765-1787.
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Ryan W. McCreery, Rebecca A. Venediktov, Jaumeiko J. Coleman & Hillary M. Leech. (2012) An Evidence-Based Systematic Review of Frequency Lowering in Hearing Aids for School-Age Children With Hearing Loss. American Journal of Audiology 21:2, pages 313-328.
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Pandurangarao N. Kulkarni, Prem C. Pandey & Dakshayani S. Jangamashetti. (2012) Multi-band frequency compression for improving speech perception by listeners with moderate sensorineural hearing loss. Speech Communication 54:3, pages 341-350.
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Danielle Glista, Vijayalakshmi Easwar, David W. Purcell & Susan Scollie. (2012) A Pilot Study on Cortical Auditory Evoked Potentials in Children: Aided CAEPs Reflect Improved High-Frequency Audibility with Frequency Compression Hearing Aid Technology. International Journal of Otolaryngology 2012, pages 1-12.
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Ying-Yee Kong & Ala Mullangi. (2012) On the development of a frequency-lowering system that enhances place-of-articulation perception. Speech Communication 54:1, pages 147-160.
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Andrea Bohnert, Myriel Nyffeler & Annerose Keilmann. (2010) Advantages of a non-linear frequency compression algorithm in noise. European Archives of Oto-Rhino-Laryngology 267:7, pages 1045-1053.
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P. N. Kulkarni, P. C. Pandey & D. S. Jangamashetti. (2009) Multi-band frequency compression for sensorineural hearing impairment. Multi-band frequency compression for sensorineural hearing impairment.
Andrea Simpson. (2009) Frequency-Lowering Devices for Managing High-Frequency Hearing Loss: A Review. Trends in Amplification 13:2, pages 87-106.
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P. N. Kulkarni, P. C. Pandey & D. S. Jangamashetti. (2009) Multi-band frequency compression for reducing the effects of spectral masking. International Journal of Speech Technology 10:4, pages 219-227.
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René H. Gifford, Michael F. Dorman, Anthony J. Spahr & Sharon A. McKarns. (2007) Effect of Digital Frequency Compression (DFC) on Speech Recognition in Candidates for Combined Electric and Acoustic Stimulation (EAS). Journal of Speech, Language, and Hearing Research 50:5, pages 1194-1202.
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Brian C.J. Moore. 2007. Cochlear Hearing Loss. Cochlear Hearing Loss 287 326 .

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