Ambient noise limits efficacy of smartphone-based screening for hearing loss in children at risk
To determine if hearScreen®, a smartphone-based pure tone audiometric screen, serves as an effective hearing screen for identifying hearing loss in children at risk, such as those with chronic otitis media and/or craniofacial anomalies. A cross-sectional, single-center, prospective study at an urban...
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Veröffentlicht in: | American journal of otolaryngology 2022-01, Vol.43 (1), p.103223-103223, Article 103223 |
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Zusammenfassung: | To determine if hearScreen®, a smartphone-based pure tone audiometric screen, serves as an effective hearing screen for identifying hearing loss in children at risk, such as those with chronic otitis media and/or craniofacial anomalies.
A cross-sectional, single-center, prospective study at an urban tertiary care hospital was completed. From June to October 2019, a total of 208 pediatric ears at risk for hearing loss were evaluated by both hearScreen® and conventional pure tone audiometry. The efficacy of hearScreen® for detecting hearing loss in a pediatric population at risk was determined.
A total of 208 pediatric ears at risk for hearing loss were screened. HearScreen® demonstrated a sensitivity of 85%, a specificity of 41%, a positive predictive value of 36%, and a negative predictive value of 87%. Subgroup analysis stratified by hearing loss type showed that hearScreen® screens for conductive hearing loss with increased sensitivity.
This investigation suggests that hearScreen® may serve as a an accessible, low-cost, and sensitive pure tone audiometric screen for hearing loss in children at risk, particularly those with conductive hearing loss, with the caveat that it may generate a high proportion of false positives due to the influence of ambient noise, especially when screening at 500 Hz. Future investigations should weigh the utility of including 500 Hz in the screening protocol as well as assess methods that may mitigate the influence of ambient noise during a pure-tone audiometric screen. |
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ISSN: | 0196-0709 1532-818X |
DOI: | 10.1016/j.amjoto.2021.103223 |