The role of aircraft noise annoyance and noise sensitivity in the association between aircraft noise levels and medication use: results ... View Full Text


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Article Info

DATE

2021-02-05

AUTHORS

Clémence Baudin, Marie Lefèvre, Wolfgang Babisch, Ennio Cadum, Patricia Champelovier, Konstantina Dimakopoulou, Danny Houthuijs, Jacques Lambert, Bernard Laumon, Göran Pershagen, Stephen Stansfeld, Venetia Velonaki, Anna L. Hansell, Anne-Sophie Evrard

ABSTRACT

BackgroundFew studies have considered aircraft noise annoyance and noise sensitivity in analyses of the health effects of aircraft noise, especially in relation to medication use. This study aims to investigate the moderating and mediating role of these two factors in the relationship between aircraft noise levels and medication use among 5860 residents of ten European airports included in the HYENA and DEBATS studies.MethodsInformation on aircraft noise annoyance, noise sensitivity, medication use, and demographic, socio-economic and lifestyle factors was collected during a face-to-face interview at home. Medication was coded according to the Anatomical Therapeutic Chemical (ATC) classification. Outdoor aircraft noise exposure was estimated by linking the participant’s home address to noise contours using Geographical Information Systems (GIS) methods. Logistic regressions with adjustment for potential confounding factors were used. In addition, Baron and Kenny’s recommendations were followed to investigate the moderating and mediating effects of aircraft noise annoyance and noise sensitivity.ResultsA significant association was found between aircraft noise levels at night and antihypertensive medication only in the UK (OR = 1.43, 95%CI 1.19–1.73 for a 10 dB(A)-increase in Lnight). No association was found with other medications. Aircraft noise annoyance was significantly associated with the use of antihypertensive medication (OR = 1.33, 95%CI 1.14–1.56), anxiolytics (OR = 1.48, 95%CI 1.08–2.05), hypnotics and sedatives (OR = 1.60, 95%CI 1.07–2.39), and antasthmatics (OR = 1.44, 95%CI 1.07–1.96), with no difference between countries. Noise sensitivity was significantly associated with almost all medications, with the exception of the use of antasthmatics, showing an increase in ORs with the level of noise sensitivity, with differences in ORs among countries only for the use of antihypertensive medication. The results also suggested a mediating role of aircraft noise annoyance and a modifying role of both aircraft noise annoyance and noise sensitivity in the association between aircraft noise levels and medication use.ConclusionsThe present study is consistent with the results of the small number of studies available to date suggesting that both aircraft noise annoyance and noise sensitivity should be taken into account in analyses of the health effects of exposure to aircraft noise. More... »

PAGES

300

Identifiers

URI

http://scigraph.springernature.com/pub.10.1186/s12889-021-10280-3

DOI

http://dx.doi.org/10.1186/s12889-021-10280-3

DIMENSIONS

https://app.dimensions.ai/details/publication/pub.1135162865

PUBMED

https://www.ncbi.nlm.nih.gov/pubmed/33546655


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22 schema:keywords Anatomical Therapeutic Chemical (ATC) classification
23 BackgroundFew studies
24 Baron
25 ConclusionsThe present study
26 European airports
27 European countries
28 Kenny's recommendations
29 MethodsInformation
30 ORs
31 Outdoor aircraft noise exposure
32 ResultsA significant association
33 UK
34 account
35 addition
36 address
37 adjustment
38 aircraft noise
39 aircraft noise annoyance
40 aircraft noise exposure
41 aircraft noise levels
42 airports
43 analysis
44 annoyance
45 antihypertensive medications
46 anxiolytics
47 association
48 chemical classification
49 classification
50 confounding factors
51 contours
52 countries
53 date
54 differences
55 effect
56 exception
57 exposure
58 face
59 face interviews
60 factors
61 geographical information system methods
62 health effects
63 home
64 home address
65 hyenas
66 hypnotics
67 increase
68 information system methods
69 interviews
70 levels
71 lifestyle factors
72 logistic regression
73 medication use
74 medications
75 method
76 moderating
77 modifying role
78 night
79 noise
80 noise annoyance
81 noise contours
82 noise exposure
83 noise level
84 noise sensitivity
85 number
86 participant's home address
87 potential confounding factors
88 present study
89 recommendations
90 regression
91 relation
92 relationship
93 residents
94 results
95 role
96 sedatives
97 sensitivity
98 significant association
99 small number
100 study
101 system method
102 use
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