Abstract
The aim of this project was to determine for bimodal cochlear implant (CI) patients, i.e. patients with low-frequency hearing in the ear contralateral to the implant, how speech understanding varies as a function of the difference in level between the CI signal and the acoustic signal. The data suggest that (1) acoustic signals perceived as significantly softer than a CI signal can contribute to speech understanding in the bimodal condition, (2) acoustic signals that are slightly softer than, or balanced with, a CI signal provide the largest benefit to speech understanding, and (3) acoustic signals presented at maximum comfortable loudness levels provide nearly as much benefit as signals that have been balanced with a CI signal.
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Dorman, M. F., Loizou, P., Wang, S., Zhang, T., Spahr, A., Loiselle, L., & Cook, S. (2014). Bimodal cochlear implants: The role of acoustic signal level in determining speech perception benefit. Audiology and Neurotology, 19(4), 234–238. https://doi.org/10.1159/000360070
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