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Effects of ear canal temperature gradients on altitude-related resonance shifts and hearing aid output.

Created on 23 Sep 2026

Authors

Donghyeon Yun

Published in

The Journal of the Acoustical Society of America. Volume 160. Issue 3. Pages 2504-2513. Sep 01, 2026.

Abstract

Understanding how altitude influences hearing aid performance is increasingly important as more users are exposed to high-altitude environments. A previous computational model predicted substantial output reductions near the first-resonance region but assumed that ear canal temperature followed ambient temperature, potentially overestimating resonance-related effects. The present study incorporated an ear canal temperature-gradient sensitivity model and evaluated its effects on predicted hearing aid output and speech audibility at sea level (0 m) and 4572 m using two representative hearing-loss profiles fitted with the National Acoustic Laboratories-Non-Linear Version 2 prescription. Across all temperature-gradient conditions, peak attenuation was reduced to less than 3 dB, compared with approximately 5.7 dB in the original uniform-temperature model, and decreased further to approximately 1.8-1.9 dB under the strongest thermal-regulation condition. A finer-resolution 18-band American National Standards Institute-style Speech Intelligibility Index analysis showed only small between-model differences, with maximum absolute differences at 4572 m of approximately 0.011 for the N3 audiogram and 0.002 for the N6 audiogram. These findings suggest that incorporating the temperature-gradient model substantially reduces predicted altitude-related resonance effects without producing a correspondingly large change in predicted speech audibility.

PMID:
42775919
Bibliographic data and abstract were imported from PubMed on 23 Sep 2026.

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