Effect of Chronic Stimulation and Stimulus Level on Temporal Processing by Cochlear Implant Listeners
Author:
Funder
University of Cambridge
Publisher
Springer Science and Business Media LLC
Subject
Sensory Systems,Otorhinolaryngology
Link
http://link.springer.com/content/pdf/10.1007/s10162-018-00706-y.pdf
Reference39 articles.
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3. Blamey P, Artieres F, Baskent D, Bergeron F, Beynon A, Burke E, Dillier N, Dowell R, Fraysse B, Gallégo S, Govaerts PJ, Green K, Huber AM, Kleine-Punte A, Maat B, Marx M, Mawman D, Mosnier I, O’Connor AF, O’Leary S, Rousset A, Schauwers K, Skarzynski H, Skarzynski PH, Sterkers O, Terranti A, Truy E, van de Heyning P, Venail F, Vincent C, Lazard DS (2013) Factors affecting auditory performance of postlinguistically deaf adults using cochlear implants: an update with 2251 patients. Audiol Neuro Otol 18:36–47
4. Carlyon RP, van Wieringen A, Long CJ, Deeks JM, Wouters J (2002) Temporal pitch mechanisms in acoustic and electric hearing. J Acoust Soc Am 112:621–633
5. Carlyon RP, Deeks JM, McKay CM (2010) The upper limit of temporal pitch: stimulus duration, conditioner pulses, and the number of electrodes stimulated. J Acoust Soc Am 127:1469–1478
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1. Temporal Pitch Sensitivity in an Animal Model: Psychophysics and Scalp Recordings;Journal of the Association for Research in Otolaryngology;2022-06-06
2. Cochlear Implant Research and Development in the Twenty-first Century: A Critical Update;Journal of the Association for Research in Otolaryngology;2021-08-25
3. The Effect of Phantom Stimulation and Pseudomonophasic Pulse Shapes on Pitch Perception by Cochlear Implant Listeners;Journal of the Association for Research in Otolaryngology;2020-08-17
4. Formant frequency discrimination with a fine structure sound coding strategy for cochlear implants;Hearing Research;2020-07
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