Effects of Input Processing and Type of Personal Frequency Modulation System on Speech-Recognition Performance of Adults With Cochlear Implants
Author(s) -
Jace Wolfe,
Erin C. Schafer,
Aaron J. Parkinson,
Andrew John,
Mary Hudson,
Julie Wheeler,
Angie Mucci
Publication year - 2012
Publication title -
ear and hearing
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.577
H-Index - 109
eISSN - 1538-4667
pISSN - 0196-0202
DOI - 10.1097/aud.0b013e3182611982
Subject(s) - quiet , cochlear implant , microphone , speech recognition , noise (video) , audiology , computer science , cochlear nucleus , speech perception , population , psychology , medicine , artificial intelligence , telecommunications , nucleus , sound pressure , physics , perception , environmental health , quantum mechanics , neuroscience , image (mathematics)
The objective of this study was to compare speech recognition in quiet and in noise for cochlear implant recipients using two different types of personal frequency modulation (FM) systems (directly coupled [direct auditory input] versus induction neckloop) with each of two sound processors (Cochlear Nucleus Freedom versus Cochlear Nucleus 5). Two different experiments were conducted within this study. In both these experiments, mixing of the FM signal within the Freedom processor was implemented via the same scheme used clinically for the Freedom sound processor. In Experiment 1, the aforementioned comparisons were conducted with the Nucleus 5 programmed so that the microphone and FM signals were mixed and then the mixed signals were subjected to autosensitivity control (ASC). In Experiment 2, comparisons between the two FM systems and processors were conducted again with the Nucleus 5 programmed to provide a more complex multistage implementation of ASC during the preprocessing stage.
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