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Speech recognition under masking: Age, hearing, and machine learning classification.
Victoria Stenbäck1, Mathias Hällgren2, Erik Marsja3
1Division of Education, Teaching and Learning, Department of Behavioural Sciences and Learning, Linköping University, Linköping, Sweden; Disability Research Division, Department of Behavioural Sciences and Learning, Linköping University, Linköping, Sweden.
Acta Psychologica
|August 27, 2025
Summary
Machine learning classified maskers as energetic or informational. Normal-hearing older adults performed similarly to younger adults, indicating peripheral hearing impacts speech recognition more than age.
Area of Science:
- Audiology
- Machine Learning
- Speech Perception
Background:
- Maskers in auditory research are often categorized as energetic or informational.
- Understanding how age and hearing ability influence speech perception in noise is crucial.
Purpose of the Study:
- To classify maskers into energetic and informational categories using machine learning.
- To investigate the effects of age and hearing impairment on speech reception thresholds (SRTs).
- To compare speech recognition performance across different age groups and hearing abilities under various masker conditions.
Main Methods:
- Machine learning classification techniques were employed to categorize maskers.
- Linear mixed-effects modeling was used to predict signal-to-noise ratios (SNRs).
- Participants included young and older adults with normal hearing, and older adults with hearing impairments (HI).
Main Results:
- Machine learning successfully confirmed the classification of maskers.
- Younger and older normally-hearing adults showed similar performance, especially with informational maskers.
- Older adults with hearing impairments (HI) consistently required higher SNRs across all masker types.
Conclusions:
- Machine learning supports the theoretical categorization of maskers.
- Peripheral hearing status significantly impacts speech recognition more than age.
- Normal-hearing older adults may employ compensatory strategies to match younger adults' performance.
Keywords:
Age-related hearing lossEnergetic maskingHearing impairmentInformational maskingSpeech recognitionSpeech-in-noise
