872
Views
82
CrossRef citations to date
0
Altmetric
ORIGINAL ARTICLE

Speech and music perception with the new fine structure speech coding strategy: preliminary results

, , , , &
Pages 1298-1303 | Received 13 Jan 2007, Published online: 08 Jul 2009

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

Read on this site (23)

Anandhan Dhanasingh & Ingeborg Hochmair. (2021) Signal processing & audio processors. Acta Oto-Laryngologica 141:sup1, pages 106-134.
Read now
Beier Qi, Ziye Liu, Xin Gu & Bo Liu. (2017) Speech recognition outcomes in Mandarin-speaking cochlear implant users with fine structure processing. Acta Oto-Laryngologica 137:3, pages 286-292.
Read now
Margaret T. Dillon, Emily Buss, English R. King, Ellen J. Deres, Sarah N. Obarowski, Meredith L. Anderson & Marcia C. Adunka. (2016) Comparison of two cochlear implant coding strategies on speech perception. Cochlear Implants International 17:6, pages 263-270.
Read now
Andrea Kleine Punte, Griet Mertens, Ellen Cochet, Marc De Bodt & Paul Van de Heyning. (2015) Improved speech reception and sound quality with the DUET2 audio processor for electric acoustic stimulation. Acta Oto-Laryngologica 135:10, pages 1022-1029.
Read now
Geoff Plant. (2015) Musical FAVORS: Reintroducing music to adult cochlear implant users. Cochlear Implants International 16:sup3, pages S5-S12.
Read now
Rose Thomas Kalathottukaren, Suzanne C. Purdy & Elaine Ballard. (2015) Prosody perception and musical pitch discrimination in adults using cochlear implants. International Journal of Audiology 54:7, pages 444-452.
Read now
Ana Cristina Coelho, Alcione Ghedini Brasolotto & Maria Cecília Bevilacqua. (2015) An initial study of voice characteristics of children using two different sound coding strategies in comparison to normal hearing children. International Journal of Audiology 54:6, pages 417-423.
Read now
Richard T. Penninger, Eugen Kludt, Andreas Büchner & Waldo Nogueira. (2015) Stimulating on multiple electrodes can improve temporal pitch perception. International Journal of Audiology 54:6, pages 376-383.
Read now
Michael F. Dorman & James L. Parkin. (2015) The role of the Utah Artificial Ear project in the development of the modern cochlear implant. Cochlear Implants International 16:sup2, pages S1-S11.
Read now
Martin Boeckmann-Barthel, Michael Ziese, Dorothea Rostalski, Christoph Arens & Jesko Lars Verhey. (2013) Melody and chord discrimination of cochlear implant users in different pitch ranges. Cochlear Implants International 14:5, pages 246-251.
Read now
Xueqing Chen, Bo Liu, Sha Liu, Lingyan Mo, Yuling Li, Ying Kong, Jun Zheng, Yongxin Li, Shusheng Gong & Demin Han. (2013) Cochlear implants with fine structure processing improve speech and tone perception in Mandarin-speaking adults . Acta Oto-Laryngologica 133:7, pages 733-738.
Read now
Beier Qi, Andreas Krenmayr, Ning Zhang, Ruijuan Dong, Xueqing Chen, Reinhold Schatzer, Clemens Zierhofer, Bo Liu & Demin Han. (2012) Effects of temporal fine structure stimulation on Mandarin speech recognition in cochlear implant users. Acta Oto-Laryngologica 132:11, pages 1183-1191.
Read now
Ken Rosslau, Katja N. Spreckelmeyer, Hilke Saalfeld & Martin Westhofen. (2012) Emotional and analytic music perception in cochlear implant users after optimizing the speech processor. Acta Oto-Laryngologica 132:1, pages 64-71.
Read now
Valerie Looi, Philip Winter, Ilona Anderson & Catherine Sucher. (2011) A music quality rating test battery for cochlear implant users to compare the FSP and HDCIS strategies for music appreciation. International Journal of Audiology 50:8, pages 503-518.
Read now
R M van Besouw & M L Grasmeder. (2011) From TEMPO+ to OPUS 2: What can music tests tell us about processor upgrades?. Cochlear Implants International 12:sup2, pages S40-S43.
Read now
Maura K Cosetti & Susan B Waltzman. (2011) Cochlear implants: current status and future potential. Expert Review of Medical Devices 8:3, pages 389-401.
Read now
Andreas Krenmayr, Daniel Visser, Reinhold Schatzer & Clemens Zierhofer. (2011) The effects of fine structure stimulation on pitch perception with cochlear implants. Cochlear Implants International 12:sup1, pages S70-S72.
Read now
Wuqing Wang, Ning Zhou & Li Xu. (2011) Musical pitch and lexical tone perception with cochlear implants. International Journal of Audiology 50:4, pages 270-278.
Read now
Diane S. Lazard, Philippe Bordure, Geneviève Lina-Granade, Jacques Magnan, Renaud Meller, Bernard Meyer, Emilien Radafy, Pierre-Eric Roux, Dan Gnansia, Vincent Péan & Eric Truy. (2010) Speech perception performance for 100 post-lingually deaf adults fitted with Neurelec cochlear implants: Comparison between Digisonic® Convex and Digisonic® SP devices after a 1-year follow-up. Acta Oto-Laryngologica 130:11, pages 1267-1273.
Read now
Reinhold Schatzer, Andreas Krenmayr, Dennis K. K. Au, Mathias Kals & Clemens Zierhofer. (2010) Temporal fine structure in cochlear implants: Preliminary speech perception results in Cantonese-speaking implant users. Acta Oto-Laryngologica 130:9, pages 1031-1039.
Read now
Artur Lorens, Malgorzata Zgoda & Henryk Skarzynski. (2010) Speech Perception and Subjective Benefit in Paediatric C40+ Users after the Upgrade to Fine Structure Processing (FSP). Cochlear Implants International 11:sup1, pages 444-448.
Read now
Martin Kompis, Pascal Senn, Christof Schmid, Benjamin von Gunten, Mattheus Vischer, Eberhard Seifert, Rudolf Häusler & Marco Caversaccio. (2010) Improvement in Speech Understanding and User Satisfaction after Upgrading from the Medel Tempo+ to the Opus2 Speech Processor. Cochlear Implants International 11:sup1, pages 437-441.
Read now

Articles from other publishers (59)

Kira Viviane Schulz, Johannes Gauer, Rainer Martin & Christiane Völter. (2023) Einfluss von Ober- und Untertönen auf die Melodieerkennung mit einem Cochlea-Implantat bei SSD. Laryngo-Rhino-Otologie 103:04, pages 279-288.
Crossref
Raymond L. Goldsworthy & Susan R. S. Bissmeyer. (2023) Cochlear Implant Users can Effectively Combine Place and Timing Cues for Pitch Perception. Ear & Hearing 44:6, pages 1410-1422.
Crossref
Ebru Kösemihal, Mustafa Yüksel, Sidika Cesur & Ayça Çiprut. (2023) Musical Mistuning Perception and Appraisal in Cochlear Implant Recipients. Otology & Neurotology 44:5, pages e281-e286.
Crossref
Kavassery Venkateswaran Nisha, Neelamegarajan Devi & Sampath Sridhar. 2023. Advances in Speech and Music Technology. Advances in Speech and Music Technology 217 236 .
Susan R.S. Bissmeyer & Raymond L. Goldsworthy. (2022) Combining Place and Rate of Stimulation Improves Frequency Discrimination in Cochlear Implant Users. Hearing Research 424, pages 108583.
Crossref
Anita Sulibhavi, Christopher Z. Wen, Kevin L. Li & Tiffany P. Hwa. (2022) The Impact of Cochlear Implant Experience on Music Perception: Systematic Review and Meta-analysis. Current Otorhinolaryngology Reports 10:3, pages 315-321.
Crossref
Susan Rebekah Subrahmanyam Bissmeyer, Jacqueline Rose Ortiz, Helena Gan & Raymond Lee Goldsworthy. (2022) Computer-based musical interval training program for Cochlear implant users and listeners with no known hearing loss. Frontiers in Neuroscience 16.
Crossref
Tiffany P. Hwa, Christopher Z. Wen & Michael J. Ruckenstein. (2021) Assessment of music experience after cochlear implantation: A review of current tools and their utilization. World Journal of Otorhinolaryngology - Head and Neck Surgery 7:2, pages 116-125.
Crossref
Todd Andrew Ricketts & Alan Kan. 2021. Binaural Hearing. Binaural Hearing 385 417 .
Susan R. S. Bissmeyer, Shaikat Hossain & Raymond L. Goldsworthy. (2020) Perceptual learning of pitch provided by cochlear implant stimulation rate. PLOS ONE 15:12, pages e0242842.
Crossref
H. C. Stronks, J. J. Briaire & J. H. M. Frijns. (2020) The Temporal Fine Structure of Background Noise Determines the Benefit of Bimodal Hearing for Recognizing Speech. Journal of the Association for Research in Otolaryngology 21:6, pages 527-544.
Crossref
Marina Imsiecke, Benjamin KrügerAndreas BüchnerThomas LenarzWaldo Nogueira. (2020) Interaction Between Electric and Acoustic Stimulation Influences Speech Perception in Ipsilateral EAS Users. Ear & Hearing 41:4, pages 868-882.
Crossref
N. Heidekrüger, T. Rahne & L. Wagner. (2019) Verarbeitung interauraler Zeitdifferenzen bei Normalhörenden und Cochlea-Implantat-Trägern mit FSP- und HDCIS-KodierungsstrategieProcessing of interaural time differences in normal-hearing subjects and cochlear implant users with FSP and HDCIS coding strategy. HNO 67:11, pages 855-862.
Crossref
Margaret T. Dillon, Emily Buss, Meredith A. Rooth, English R. King, Harold C. Pillsbury & Kevin D. Brown. (2019) Low-Frequency Pitch Perception in Cochlear Implant Recipients With Normal Hearing in the Contralateral Ear. Journal of Speech, Language, and Hearing Research 62:8, pages 2860-2871.
Crossref
Andrew Vandali, Pam Dawson, Agnes Au, Yanyou Yu, Matthew BrownMichael GoorevichRobert Cowan. (2019) Evaluation of the Optimized Pitch and Language Strategy in Cochlear Implant Recipients. Ear & Hearing 40:3, pages 555-567.
Crossref
Raymond L. Goldsworthy. (2019) Temporal envelope cues and simulations of cochlear implant signal processing. Speech Communication 109, pages 24-33.
Crossref
Waldo Nogueira, Anil Nagathil & Rainer Martin. (2019) Making Music More Accessible for Cochlear Implant Listeners: Recent Developments. IEEE Signal Processing Magazine 36:1, pages 115-127.
Crossref
Fei Chen, Wenli Ni, Wenyan Li & Huawei Li. 2019. Hearing Loss: Mechanisms, Prevention and Cure. Hearing Loss: Mechanisms, Prevention and Cure 129 144 .
Xiaoan Sun, Sui Huang & Ningyuan Wang. 2019. Neural Interface: Frontiers and Applications. Neural Interface: Frontiers and Applications 167 206 .
Frédéric Apoux, Brittney L. Carter & Eric W. Healy. (2018) Effect of Dual-Carrier Processing on the Intelligibility of Concurrent Vocoded Sentences. Journal of Speech, Language, and Hearing Research 61:11, pages 2804-2813.
Crossref
Tim Brochier, Colette McKay & Hugh McDermott. (2018) Encoding speech in cochlear implants using simultaneous amplitude and rate modulation. The Journal of the Acoustical Society of America 144:4, pages 2042-2051.
Crossref
Young-Soo Chang & Il Joon Moon. (2018) Definition and Clinical Implication of Temporal Fine Structure. Korean Journal of Otorhinolaryngology-Head and Neck Surgery 61:1, pages 1-8.
Crossref
Natalia Stupak, Monica Padilla, Robert P. Morse & David M. Landsberger. (2018) Perceptual Differences Between Low-Frequency Analog and Pulsatile Stimulation as Shown by Single- and Multidimensional Scaling. Trends in Hearing 22, pages 233121651880753.
Crossref
David M. LandsbergerMonica PadillaAmy S. MartinezLaurie S. Eisenberg. (2018) Spectral-Temporal Modulated Ripple Discrimination by Children With Cochlear Implants. Ear & Hearing 39:1, pages 60-68.
Crossref
Haihong Liu, Xiaoxia Peng, Yawen Zhao & Xin Ni. (2017) The effectiveness of sound‐processing strategies on tonal language cochlear implant users: A systematic review. Pediatric Investigation 1:1, pages 32-39.
Crossref
Risto Näätänen, Bjørn Petersen, Ritva Torppa, Eila Lonka & Peter Vuust. (2017) The MMN as a viable and objective marker of auditory development in CI users. Hearing Research 353, pages 57-75.
Crossref
Meredith T. Caldwell, Nicole T. Jiam & Charles J. Limb. (2017) Assessment and improvement of sound quality in cochlear implant users. Laryngoscope Investigative Otolaryngology 2:3, pages 119-124.
Crossref
Mareike Finke, Martin Billinger & Andreas Büchner. (2017) Toward Automated Cochlear Implant Fitting Procedures Based on Event-Related Potentials. Ear & Hearing 38:2, pages e118-e127.
Crossref
Hartmut Meister, Katrin Fuersen, Stefan Schreitmueller & Martin Walger. (2016) Effect of acoustic fine structure cues on the recognition of auditory-only and audiovisual speech. The Journal of the Acoustical Society of America 139:6, pages 3116-3120.
Crossref
Hartmut Meister, Katrin Fürsen, Barbara Streicher, Ruth Lang-Roth & Martin Walger. (2016) The Use of Voice Cues for Speaker Gender Recognition in Cochlear Implant Recipients. Journal of Speech, Language, and Hearing Research 59:3, pages 546-556.
Crossref
Vijay Marimuthu, Brett A. Swanson & Robert Mannell. (2016) Cochlear Implant Rate Pitch and Melody Perception as a Function of Place and Number of Electrodes. Trends in Hearing 20, pages 233121651664308.
Crossref
Young-Soo Chang, Il Joon Moon & Sung Hwa Hong. (2015) Recent Advances in Cochlear Implantation. Journal of Clinical Otolaryngology Head and Neck Surgery 26:2, pages 195-201.
Crossref
Bernhard Laback, Katharina Egger & Piotr Majdak. (2015) Perception and coding of interaural time differences with bilateral cochlear implants. Hearing Research 322, pages 138-150.
Crossref
Fan-Gang Zeng, Stephen J. Rebscher, Qian-Jie Fu, Hongbin Chen, Xiaoan Sun, Li Yin, Lichuan Ping, Haihong Feng, Shiming Yang, Shusheng Gong, Beibei Yang, Hou-Yong Kang, Na Gao & Fanglu Chi. (2015) Development and evaluation of the Nurotron 26-electrode cochlear implant system. Hearing Research 322, pages 188-199.
Crossref
Alan Kan & Ruth Y. Litovsky. (2015) Binaural hearing with electrical stimulation. Hearing Research 322, pages 127-137.
Crossref
Tyler H. Churchill, Alan Kan, Matthew J. Goupell & Ruth Y. Litovsky. (2014) Spatial hearing benefits demonstrated with presentation of acoustic temporal fine structure cues in bilateral cochlear implant listeners. The Journal of the Acoustical Society of America 136:3, pages 1246-1256.
Crossref
Dayse Távora-Vieira & Gunesh P. Rajan. (2014) Assessment of Fine Structure Processing Strategies in Unilaterally Deafened Cochlear Implant Users. International Journal of Otolaryngology and Head & Neck Surgery 03:06, pages 347-353.
Crossref
Raymond L. Goldsworthy & Robert V. Shannon. (2014) Training improves cochlear implant rate discrimination on a psychophysical task. The Journal of the Acoustical Society of America 135:1, pages 334-341.
Crossref
Harukazu Hiraumi. 2014. Regenerative Medicine for the Inner Ear. Regenerative Medicine for the Inner Ear 139 147 .
Samira Anderson, Alexandra Parbery-Clark, Travis White-Schwoch, Sarah Drehobl & Nina Kraus. (2013) Effects of hearing loss on the subcortical representation of speech cues. The Journal of the Acoustical Society of America 133:5, pages 3030-3038.
Crossref
Javier Galindo, Luis Lassaletta, Rosa Pérez Mora, Alejandro Castro, Marta Bastarrica & Javier Gavilán. (2012) Fine structure processing improves telephone speech perception in cochlear implant users. European Archives of Oto-Rhino-Laryngology 270:4, pages 1223-1229.
Crossref
John C. Middlebrooks & Zekiye A. Onsan. (2012) Stream segregation with high spatial acuity. The Journal of the Acoustical Society of America 132:6, pages 3896-3911.
Crossref
Luke J Campbell, David James Sly & Stephen John O'Leary. (2012) Prediction and control of neural responses to pulsatile electrical stimulation. Journal of Neural Engineering 9:2, pages 026023.
Crossref
Matthew L. Carlson, Colin L.W. Driscoll, René H. Gifford & Sean O. McMenomey. (2012) Cochlear Implantation: Current and Future Device Options. Otolaryngologic Clinics of North America 45:1, pages 221-248.
Crossref
Kate Helms Tillery, Christopher A. Brown & Sid P. Bacon. (2012) Comparing the effects of reverberation and of noise on speech recognition in simulated electric-acoustic listening. The Journal of the Acoustical Society of America 131:1, pages 416-423.
Crossref
Dominik Riss, Jafar-Sasan Hamzavi, Andreas Selberherr, Alexandra Kaider, Michaela Blineder, Veronika Starlinger, Wolfgang Gstoettner & Christoph Arnoldner. (2011) Envelope Versus Fine Structure Speech Coding Strategy. Otology & Neurotology 32:7, pages 1094-1101.
Crossref
Paul J. Boyd. (2011) Potential Benefits From Deeply Inserted Cochlear Implant Electrodes. Ear & Hearing 32:4, pages 411-427.
Crossref
Dominik Riss, Jafar-Sasan Hamzavi, Michaela Katzinger, Wolf-Dieter Baumgartner, Alexandra Kaider, Wolfgang Gstoettner & Christoph Arnoldner. (2011) Effects of fine structure and extended low frequencies in pediatric cochlear implant recipients. International Journal of Pediatric Otorhinolaryngology 75:4, pages 573-578.
Crossref
Helen E. Cullington & Fan-Gang Zeng. (2011) Comparison of Bimodal and Bilateral Cochlear Implant Users on Speech Recognition With Competing Talker, Music Perception, Affective Prosody Discrimination, and Talker Identification. Ear & Hearing 32:1, pages 16-30.
Crossref
Li Xu & Ning Zhou. 2012. Auditory Prostheses. Auditory Prostheses 341 364 .
Hugh McDermott. 2012. Auditory Prostheses. Auditory Prostheses 305 339 .
Artur Lorens, Małgorzata Zgoda, Anita Obrycka & Henryk Skarżynski. (2010) Fine Structure Processing improves speech perception as well as objective and subjective benefits in pediatric MED-EL COMBI 40+ users. International Journal of Pediatric Otorhinolaryngology 74:12, pages 1372-1378.
Crossref
Stephen J O'Leary, Rachael R Richardson & Hugh J McDermott. (2009) Principles of design and biological approaches for improving the selectivity of cochlear implant electrodes. Journal of Neural Engineering 6:5, pages 055002.
Crossref
Joshua S. Stohl, Chandra S. Throckmorton & Leslie M. Collins. (2009) Investigating the effects of stimulus duration and context on pitch perception by cochlear implant users. The Journal of the Acoustical Society of America 126:1, pages 318-326.
Crossref
Demin Han, Bo Liu, Ning Zhou, Xueqing Chen, Ying Kong, Haihong Liu, Yan Zheng & Li Xu. (2009) Lexical Tone Perception with HiResolution and HiResolution 120 Sound-Processing Strategies in Pediatric Mandarin-Speaking Cochlear Implant Users. Ear & Hearing 30:2, pages 169-177.
Crossref
Fan-Gang Zeng, Stephen Rebscher, William V. Harrison, Xiaoan Sun & Haihong Feng. 2009. Implantable Neural Prostheses 1. Implantable Neural Prostheses 1 85 116 .
Kenneth D. Morton, Peter A. TorrioneJr.Jr., Chandra S. Throckmorton & Leslie M. Collins. (2008) Mandarin Chinese tone identification in cochlear implants: Predictions from acoustic models. Hearing Research 244:1-2, pages 66-76.
Crossref
Blake S. Wilson & Michael F. Dorman. (2008) Cochlear implants: A remarkable past and a brilliant future. Hearing Research 242:1-2, pages 3-21.
Crossref
Fan-Gang Zeng, Stephen Rebscher, William Harrison, Xiaoan Sun & Haihong Feng. (2008) Cochlear Implants: System Design, Integration, and Evaluation. IEEE Reviews in Biomedical Engineering 1, pages 115-142.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.