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The high-pitch notched audiogram: a cohort of patients without causative noise-induced hearing loss

Published online by Cambridge University Press:  18 May 2023

P J Moore*
Affiliation:
Private otolaryngology practice (retired), Hobart, Tasmania, Australia
*
Corresponding author: Philip J Moore, Email: amo66985@bigpond.net.au

Abstract

Background

One still encounters opinion that hearing loss with high-pitch notched audiogram is invariably due to noise-induced hearing loss. This paper tests this misapprehension.

Methods

A study was conducted of patients identified in a prospective manner with notched audiograms but no history of noise exposure occurring in an otolaryngological practice over a 20-year period.

Results

A cohort of 26 hearing loss patients, in whom notched audiograms were not associated with historical evidence of noise exposure, was documented.

Conclusion

The findings confirm that a notched audiogram is not pathognomonic of noise-induced hearing loss.

Type
Main Article
Copyright
Copyright © The Author(s), 2023. Published by Cambridge University Press on behalf of J.L.O. (1984) LIMITED

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Footnotes

Mr P J Moore takes responsibility for the integrity of the content of the paper

References

Sataloff, R, Sataloff, J. Diagnosing occupational hearing loss. In: Sataloff, R, Sataloff, J, eds. Occupational Hearing Loss, 2nd edn. New York: Marcel Dekker, 1993;373Google Scholar
Australian Society of Otolaryngology – Head and Neck Surgery. Guidelines for Evaluation of Occupational Noise Induced Hearing Loss (ONIHL) of Gradual Process, 2nd edn. Sydney: Australian Society of Otolaryngology – Head and Neck Surgery, 2009Google Scholar
Dobie, R. Medical-Legal Evaluation of Hearing Loss, 2nd edn. New York: Delmar Cengage, 2001;280Google Scholar
Colvin, I, Luxon, L. Clinical diagnosis of noise-induced hearing loss. In: Luxon, L, Prasher, D, eds. Noise and its Effects. Chichester: John Wiley and Sons, 2007;219Google Scholar
Luxon, LM. The clinical diagnosis of noise induced hearing loss. In: Prasher, D, Luxon, LM, eds. Advances in Noise Research, Vol. 1: Biological Effects of Noise. London: Whurr Publishers, 1998;83113Google Scholar
Lie, A, Engdahl, B, Hoffman, HJ, Li, CM, Tambs, K. Occupational noise exposure, hearing loss, and notched audiograms in the HUNT Nord-Trøndelag hearing loss study 1996–1998. Laryngoscope 2017;127:1442–50CrossRefGoogle Scholar
Nondahl, DM, Shi, X, Cruickshanks, KJ, Dalton, DS, Tweed, TS, Wiley, TL et al. Notched audiograms and noise exposure history in older adults. Ear Hear 2009;30:696703CrossRefGoogle ScholarPubMed
Osei-Lah, V, Yeoh, LH. High frequency audiometric notch: an outpatient clinic survey. Int J Audiol 2010;49:95–8CrossRefGoogle ScholarPubMed
Sataloff, J, Vassallo, L. Head colds and viral cochleitis. Arch Otolaryngol 1968;19:56–9CrossRefGoogle Scholar
Sataloff, R, Sataloff, J. Diagnosing occupational hearing loss. In: Sataloff, R, Sataloff, J, eds. Occupational Hearing Loss, 2nd edn. New York: Marcel Dekker, 1993;382, 384Google Scholar
Lutman, ME, Qasem, HYN. A source of audiometric notches at 6 kHz. In: Prasher, D, Luxon, L, eds. Advances in Noise Research, Vol 1: Biological Effects of Noise. London: Whurr Publishers, 1998;170–6Google Scholar
Klockhoff, I, Lyttkens, L. Hearing defects of noise trauma type with lack of noise exposure. Scand Audiol 1982;11:257–60CrossRefGoogle ScholarPubMed
Oluwole, M, Irwin, J. Hereditary sensorineural hearing loss mimicking noise-induced hearing loss. J Audiol Med 1996;5:920Google Scholar
Anderson, H, Wedenberg, E. Genetic aspects of hearing impairment in children. Acta Otolaryngol (Stockh) 1970;69:7788CrossRefGoogle ScholarPubMed
Fisch, L. The etiology of congenital deafness and audiometric patterns. J Laryngol Otol 1955;69:479–93CrossRefGoogle ScholarPubMed
Huizing, EH, van Bolhuis, AH, Odenthal, DW. Studies on progressive hereditary perceptive deafness in a family of 335 members. Acta Otolaryngol (Stockh) 1966;61:3541, 161–7CrossRefGoogle Scholar
Dobie, R. Medical-Legal Evaluation of Hearing Loss, 2nd edn. New York: Delmar Cengage, 2001;138, 160Google Scholar
Colvin, I, Luxon, L. Clinical diagnosis of noise-induced hearing loss. In: Luxon, L, Prasher, D, eds. Noise and its Effects. Chichester: John Wiley and Sons, 2007;210Google Scholar
Sataloff, R, Sataloff, J. Diagnosing occupational hearing loss. In: Sataloff, R, Sataloff, J, eds. Occupational Hearing Loss, 2nd edn. New York: Marcel Dekker, 1993;371Google Scholar
Dobie, R. Medical-Legal Evaluation of Hearing Loss, 2nd edn. New York: Delmar Cengage, 2001;158Google Scholar
Prasher, D. Clinical diagnosis of noise-induced hearing loss. In: Luxon, L, Prasher, D, eds. Noise and its Effects. Chichester: John Wiley and Sons, 2007;127Google Scholar
Colvin, I, Luxon, L. Clinical diagnosis of noise-induced hearing loss. In: Luxon, L, Prasher, D, eds. Noise and its Effects. Chichester: John Wiley and Sons, 2007;201Google Scholar
Sataloff, R, Sataloff, J. Diagnosing occupational hearing loss. In: Sataloff, R, Sataloff, J, eds. Occupational Hearing Loss, 2nd edn. New York: Marcel Dekker, 1993;378Google Scholar