Long-term aircraft noise exposure and risk of hypertension in the Nurses' Health Studies

Длительное воздействие шума от воздушного транспорта и риск гипертонии в исследованиях Nurses' Health Studies
JoAnn E. Manson, Kathryn M. Rexrode, Francine Laden, Peter James, John P. Forman, Jonathan I. Levy, Trang VoPham, Jaime E. Hart, Chloe S. Kim, Stephanie T. Grady, Daniel Nguyen, Junenette L. Peters
2021-10-08

Nurses' Health Studyaircraft noise exposurehypertension incidencenoise level dB(A) (45 and 55 dB(A))time-varying Cox proportional hazards
BACKGROUND: Aircraft noise can affect populations living near airports. Chronic exposure to aircraft noise has been associated with cardiovascular disease, including hypertension. However, previous studies have been limited in their ability to characterize noise exposures over time and to adequately control for confounders. OBJECTIVES: The aim of this study was to examine the association between aircraft noise and incident hypertension in two cohorts of female nurses, using aircraft noise exposure estimates with high spatial resolution over a 20-year period. METHODS: We obtained contour maps of modeled aircraft noise levels over time for 90 U.S. airports and linked them with geocoded addresses of participants in the Nurses' Health Study (NHS) and Nurses' Health Study II (NHS II) to assign noise exposure for 1994-2014 and 1995-2013, respectively. We used time-varying Cox proportional hazards models to estimate hypertension risk associated with time-varying noise exposure (dichotomized at 45 and 55 dB(A)), adjusting for fixed and time-varying confounders. Results from both cohorts were pooled via random effects meta-analysis. RESULTS: In meta-analyses of parsimonious and fully-adjusted models with aircraft noise dichotomized at 45 dB(A), hazard ratios (HR) for hypertension incidence were 1.04 (95% CI: 1.00, 1.07) and 1.03 (95% CI: 0.99, 1.07), respectively. When dichotomized at 55 dB(A), HRs were 1.10 (95% CI: 1.01, 1.19) and 1.07 (95% CI: 0.98, 1.15), respectively. After conducting fully-adjusted sensitivity analyses limited to years in which particulate matter (PM) was obtained, we observed similar findings. In NHS, the PM-unadjusted HR was 1.01 (95% CI: 0.90, 1.14) and PM-adjusted HR was 1.01 (95% CI: 0.89, 1.14); in NHS II, the PM-unadjusted HR was 1.08 (95% CI: 0.96, 1.22) and the PM-adjusted HR was 1.08 (95% CI: 0.95, 1.21). Overall, in these cohorts, we found marginally suggestive evidence of a positive association between aircraft noise exposure and hypertension.
1
Fully-adjusted sensitivity analyses controlling for particulate matter showed similar results: NHS PM-adjusted HR ~1.01 and NHS II PM-adjusted HR ~1.08, indicating associations were not explained by PM confounding.
2
Meta-analysis with noise dichotomized at 45 dB(A) yielded HRs for hypertension of 1.04 (95% CI: 1.00, 1.07) parsimonious and 1.03 (95% CI: 0.99, 1.07) fully adjusted, indicating marginal positive association.
3
Overall evidence from these cohorts was marginally suggestive of a positive association between long-term aircraft noise exposure and incident hypertension.
4
Using high-spatial-resolution modeled aircraft noise maps linked to geocoded addresses from two Nurses' Health Study cohorts, time-varying Cox models assessed incident hypertension for 1994–2014 and 1995–2013.
5
When dichotomized at 55 dB(A), pooled HRs were 1.10 (95% CI: 1.01, 1.19) parsimonious and 1.07 (95% CI: 0.98, 1.15) fully adjusted, suggesting stronger association at higher noise levels.

Long-term aircraft noise exposure among participants in the Nurses' Health Study and Nurses' Health Study II cohorts

Association between time-varying aircraft noise exposure (dichotomized at 45 and 55 dB(A)) and incident hypertension risk, adjusted for confounders including particulate matter

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2021-10-08
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JoAnn E. Manson
Kathryn M. Rexrode
Francine Laden
Peter James
John P. Forman
Jonathan I. Levy
Trang VoPham
Jaime E. Hart
Chloe S. Kim
Stephanie T. Grady
Daniel Nguyen
Junenette L. Peters
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