CrossRef Text and Data Mining
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Frequency-Limiting Effects on Speech and Environmental Sound Identification for Cochlear Implant and Normal Hearing Listeners
Son-A Chang, Jong Ho Won, HyangHee Kim, Seung-Ha Oh, Richard S. Tyler, Chang Hyun Cho
J Audiol Otol. 2018;22(1):28-38.   Published online December 29, 2017

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Frequency-Limiting Effects on Speech and Environmental Sound Identification for Cochlear Implant and Normal Hearing Listeners
Journal of Audiology and Otology. 2018;22(1):28-38   Crossref logo
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Sound Source Localization by Normal-Hearing Listeners, Hearing-Impaired Listeners and Cochlear Implant Listeners
Audiology and Neurotology. 2016;21(3):127-131   Crossref logo
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Comparing Sound Localization Deficits in Bilateral Cochlear-Implant Users and Vocoder Simulations With Normal-Hearing Listeners
Trends in Hearing. 2014;18:233121651455457   Crossref logo
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Vibrotactile Stimulation Based on the Fundamental Frequency Can Improve Melodic Contour Identification of Normal-Hearing Listeners With a 4-Channel Cochlear Implant Simulation
Frontiers in Neuroscience. 2019;13:   Crossref logo

The effect of speech and noise levels on the quality perceived by cochlear implant and normal hearing listeners
Speech Communication. 2021;132:106-113   Crossref logo
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Comparison of word and environmental sound recognition by cochlear implant and hearing aid users
Audiology and Speech Research. 2011;7(1):28-39   Crossref logo
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Psychoacoustic and Phoneme Identification Measures in Cochlear-Implant and Normal-Hearing Listeners
Trends in Amplification. 2013;17(1):27-44   Crossref logo
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Normal-Hearing Listeners’ and Cochlear Implant Users’ Perception of Pitch Cues in Emotional Speech
i-Perception. 2015;6(5):030100661559913   Crossref logo
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Head shadow enhancement with low-frequency beamforming improves sound localization and speech perception for simulated bimodal listeners
Hearing Research. 2018;363:78-84   Crossref logo
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Temporal envelope expansion of speech in noise for normal-hearing and hearing-impaired listeners: effects on identification performance and response times
Hearing Research. 2001;153(1-2):123-131   Crossref logo
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