The Effect of Loudness Imbalance between Electrodes in Cochlear Implant Users
- 1 April 1997
- journal article
- clinical trial
- Published by Wolters Kluwer Health in Ear & Hearing
- Vol. 18 (2) , 156-165
- https://doi.org/10.1097/00003446-199704000-00008
Abstract
The aim was to determine the effect of loudness imbalance between electrodes in patients using the 22-electrode cochlear implant (Cochlear Pty Ltd). It was hypothesized that speech perception scores would be greater when the loudness of electrodes was balanced at the comfort (C) levels than when the C levels were unbalanced. Ten adult patients received a monosyllabic word test (CNC words) in quiet and a sentence test (CUNY sentences) in noise under two conditions: with C levels balanced for equal loudness and with unbalanced C levels. When the C levels across electrodes were pseudo-randomly unbalanced by 0 to ±20% of the electrodes' dynamic ranges (20% unbalancing), 6 of the 10 subjects showed a significant drop in sentence perception scores. Of these patients, none had a significant decrease in perception when the degree of unbalancing was halved. Of the four patients who showed no change with 20% unbalancing, three revealed a significant decline in sentence perception when the degree of unbalancing was doubled. There also were significant group effects for phonemes on the word test as well as for sentences in noise for the 20% unbalancing. The implications for clinical practice are that it is important to balance the C levels and that clinicians should be encouraged to refine methods for setting C levels in very young children, who may be using unbalanced MAPs. Nevertheless, although most patients revealed a statistically significant drop in sentence perception with 20% imbalance of the C levels, the changes in percentage scores often were only small.Keywords
This publication has 9 references indexed in Scilit:
- The Relationship Between Electrical Acoustic Reflex Thresholds and Behavioral Comfort Levels in Children and Adult Cochlear Implant PatientsEar & Hearing, 1994
- Objective Electrophysiological Measures from Cochlear Implant PatientsEar & Hearing, 1993
- Prediction of Behavioral Threshold and Comfort Values for Nucleus 22-Channel Implant Patients from Electrical Auditory Brain Stem Response Test ResultsAnnals of Otology, Rhinology & Laryngology, 1991
- Performance of Postlinguistically Deaf Adults with the Wearable Speech Processor (WSP III) and Mini Speech Processor (MSP) of the Nucleus Multi-Electrode Cochlear Implant*Ear & Hearing, 1991
- Speech waveform envelope cues for consonant recognitionThe Journal of the Acoustical Society of America, 1987
- Acoustic parameters measured by a formant-estimating speech processor for a multiple-channel cochlear implantThe Journal of the Acoustical Society of America, 1987
- The effect of test difficulty on the sensitivity of speech discrimination testsThe Journal of the Acoustical Society of America, 1983
- Selecting the Gain of Hearing Aids for Persons with Sensorineural Hearing ImpairmentsScandinavian Audiology, 1976
- Revised CNC Lists for Auditory TestsJournal of Speech and Hearing Disorders, 1962