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The Indoor Environment and Otitis Media among Australian Children: A National Cross-Sectional Study.

David VeiversGail M WilliamsBrett G ToelleAdriana M Cortés de WatermanYuming GuoLyn DenisonBo-Yi YangGuang-Hui DongBin JalaludinGuy B MarksLuke D Knibbs
Published in: International journal of environmental research and public health (2022)
The association between the indoor environment and lifetime prevalence of otitis media (OM) in Australian children was assessed. We analysed data from a cross-sectional study of children, aged 7-11 years, performed in twelve Australian cities during 2007-2008. The main outcome was a parental report of their child's diagnosis with OM by a doctor. Information on the indoor environment (energy sources used for heating, cooling, and cooking, pets, and second-hand smoke exposure), in the first year of life and at present, was collected from parents by a questionnaire. Multi-level logistic regression models were used to adjust for individual- and area-level confounders. Our analysis comprised 2872 children (51% female, mean age: 10.0 (SD 1.2)). Of those, 1097 (39%) were reported to have OM. Exposure to gas heating in the first year of life was significantly associated with higher odds of OM in adjusted models (OR:1.22; 95% CI: 1.00,1.47), as was current exposure to reverse-cycle air conditioning (OR: 1.52, 95% CI: 1.27,1.82). Ownership of a cat or dog at any time was also associated with high odds of OM (OR: 1.50; 95% CI: 1.17,1.92). No other significant associations were observed. In this national study of Australian children, indoor environmental exposures associated with the lifetime prevalence of OM were gas heating, reverse-cycle air conditioning and pet ownership. Exposures in both early life and later childhood may both play a role in OM.
Keyphrases
  • air pollution
  • young adults
  • early life
  • particulate matter
  • risk factors
  • health risk
  • machine learning
  • healthcare
  • risk assessment
  • drinking water
  • climate change
  • pet ct
  • electronic health record
  • heavy metals
  • pet imaging