Literature DB >> 34407375

Potential Risks to Hearing Functions of Service Members From Exposure to Jet Fuels.

Thais C Morata1, Michelle Hungerford2, Dawn Konrad-Martin2.   

Abstract

Purpose Several military occupations, particularly those within the U.S. Air Force, require working with or around jet fuels. Jet fuels contain components that are known to affect central nervous function, yet effects of these fuels on auditory function, specifically auditory processing of sound, are not well understood at this time. Animal studies have demonstrated that exposure to jet fuels prior to noise exposure can exacerbate the noise exposure's effects, and service members exposed to jet fuels are at risk of noise exposure within their work environments. The purpose of this article was to give a brief synopsis of the evidence on the ototoxic effects due to jet fuel exposure to aid audiologists in their decision making when providing care for populations who are occupationally exposed to fuels or while during military service. Conclusions Exposure to jet fuels impacts central nervous function and, in combination with noise exposure, may have detrimental auditory effects that research has yet to fully explain. Additional longitudinal research is needed to explain the relationships, which have clinical implications for service members and others exposed to jet fuels. In the meantime, audiologists can gain useful information by screening for chemical exposures when obtaining patient case histories. If jet fuel exposure is suspected, the Lifetime Exposure to Noise and Solvents Questionnaire can be used to estimate a noise exposure ranking and identify other potentiating agents such as jet fuel and industrial chemicals. A history of jet fuel exposure should inform the selection of hearing tests in the audiometric evaluation and when devising the treatment plan.

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Year:  2021        PMID: 34407375     DOI: 10.1044/2021_AJA-20-00226

Source DB:  PubMed          Journal:  Am J Audiol        ISSN: 1059-0889            Impact factor:   1.493


  1 in total

1.  Ototoxicity and Noise Damage: From Preclinical Findings to Audiological Management.

Authors:  Angela Garinis; Dawn Konrad-Martin; Naomi Bramhall
Journal:  Am J Audiol       Date:  2021-10-04       Impact factor: 1.636

  1 in total

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