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Influence of the Frequency‐to‐Place Function on Recognition with Place‐Based Cochlear Implant Maps

作者:Margaret T. Dillon, Luke Helpard, Kevin D. Brown, Anne Morgan Selleck, Margaret E. Richter, Meredith A. Rooth, Nicholas J. Thompson, Matthew M. Dedmon, Hanif M. Ladak, Sumit Agrawal · 发表于:The Laryngoscope · 年份:2023 · DOI:10.1002/lary.30710 · 被引用次数:13 · 研究领域:Hearing Loss and Rehabilitation、Voice and Speech Disorders、Speech and Audio Processing

OBJECTIVE: Comparison of acute speech recognition for cochlear implant (CI) alone and electric-acoustic stimulation (EAS) users listening with default maps or place-based maps using either a spiral ganglion (SG) or a new Synchrotron Radiation-Artificial Intelligence (SR-AI) frequency-to-place function. METHODS: Thirteen adult CI-alone or EAS users completed a task of speech recognition at initial device activation with maps that differed in the electric filter frequency assignments. The three map conditions were: (1) maps with the default filter settings (default map), (2) place-based maps with filters aligned to cochlear SG tonotopicity using the SG function (SG place-based map), and (3) place-based maps with filters aligned to cochlear Organ of Corti (OC) tonotopicity using the SR-AI function (SR-AI place-based map). Speech recognition was evaluated using a vowel recognition task. Performance was scored as the percent correct for formant 1 recognition due to the rationale that the maps would deviate the most in the estimated cochlear place frequency for low frequencies. RESULTS: On average, participants had better performance with the OC SR-AI place-based map as compared to the SG place-based map and the default map. A larger performance benefit was observed for EAS users than for CI-alone users. CONCLUSION: These pilot data suggest that EAS and CI-alone users may experience better performance with a patient-centered mapping approach that accounts for the variability in coc...