Association of indoor nitrogen dioxide with respiratory symptoms in children: application of measurement error

Ruifeng Li1, Edie Weller, Douglas W Dockery

  • 1Department of Epidemiology, Harvard School of Public Health, Boston, Massachusetts 02115, USA.

Insights

Indoor nitrogen dioxide (NO2) exposure significantly increases children's annual risk of lower respiratory symptoms. This study refined estimates by accounting for measurement errors in NO2 exposure data.

Area of Science:

  • Environmental Health
  • Pediatric Respiratory Medicine
  • Epidemiology

Background:

  • Indoor nitrogen dioxide (NO2), a combustion byproduct, has been linked to lower respiratory symptoms in children.
  • Previous studies assessed NO2 exposure in limited subsets, potentially introducing measurement error.
  • Surrogate variables for NO2 exposure (e.g., gas stoves, heaters) and residential characteristics were available for a larger cohort.

Purpose of the Study:

  • To evaluate the effect of indoor NO2 exposure on the annual risk of lower respiratory symptoms in children.
  • To apply regression calibration to adjust for measurement error from using NO2 surrogate data.
  • To utilize all available data for a more precise estimation of NO2's impact on respiratory health.

Main Methods:

  • Utilized a cohort of 2,891 children with complete covariate and outcome data.
  • Applied regression calibration to adjust for measurement error in NO2 exposure estimates derived from surrogate data.
  • Adjusted for covariates including age, gender, city, parental respiratory history, and indoor smoking.

Main Results:

  • A 15 p.p.b. increment in indoor NO2 exposure was associated with a 50% increased annual risk of lower respiratory symptoms (OR=1.5, 95% CI=[1.2, 1.8]).
  • The regression calibration method provided an unbiased estimate with good coverage probability.
  • The methodology yielded a 34% more precise estimate of the NO2 exposure effect compared to previous methods.

Conclusions:

  • Indoor nitrogen dioxide exposure is a significant risk factor for lower respiratory symptoms in children.
  • Regression calibration effectively adjusts for measurement error when using NO2 surrogate data.
  • This approach enhances the precision of epidemiological findings regarding air pollution and child respiratory health.

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