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Improving audibility with nonlinear amplification for listeners with high-frequency loss.
1Department of Speech and Hearing Sciences, University of Washington, Seattle 98105, USA.
Journal of the American Academy of Audiology
|April 28, 2000
Summary
Nonlinear hearing aid amplification benefits listeners with flat hearing loss more than those with sloping loss. This difference is mainly due to better performance in low-audibility conditions for sloping loss listeners.
Area of Science:
- Audiology
- Speech-Language Pathology
- Hearing Science
Background:
- Linear amplification fitting is well-researched for various hearing losses.
- Limited understanding exists regarding nonlinear amplification effects across different audiometric configurations.
Purpose of the Study:
- To compare speech recognition improvements from nonlinear amplification between listeners with sloping and flat sensorineural hearing loss.
- To assess if increased audibility with nonlinear amplification benefits both groups comparably.
Main Methods:
- Examined consonant recognition as a function of audibility.
- Utilized wide dynamic range compression (nonlinear) and linear amplification.
- Compared performance between listeners with flat and sloping sensorineural hearing loss.
Main Results:
- Linear amplification yielded similar recognition improvements for both flat and sloping loss groups with increased audibility.
- Nonlinear amplification showed a greater rate of improvement with audibility for the flat loss group compared to the sloping loss group.
- Sloping loss listeners performed better at low audibility levels with nonlinear amplification than expected based on overall group performance.
Conclusions:
- Nonlinear amplification's benefit in speech recognition varies with audiometric configuration.
- Listeners with flat hearing loss experience greater gains in speech recognition with increasing audibility under nonlinear amplification.
- The performance of sloping loss listeners with nonlinear amplification is influenced by their performance in low-audibility conditions.