20 - Health
Health
- CD20.01 IS Organization. ISO TS 15666: Acoustics − Assessment of Noise Annoyance by Means of Social and Socio-Acoustic Surveys. 2003
- CD20.02 Fields JM. Effect of personal and situational variables on noise annoyance in residential areas
- CD20.03 Miedema HM, Vos H. Demographic and attitudinal factors that modify annoyance from transportation noise
- CD20.04 Job RF. Community response to noise − A review of factors influencing the relationship between noise exposure and reaction
- CD20.05 Guski R. Personal and social variables as co-determinants of noise annoyance. Noise Health
- CD20.06 Miedema HM, Oudshoorn CG. Annoyance from transportation noise: Relationships with exposure metrics DNL and DENL and their confidence intervals. Environ Health Perspect
- CD20.07 Janssen SA, Vos H, van Kempen EE, Breugelmans OR, Miedema HM. Trends in aircraft noise annoyance: The role of study and sample characteristics
- CD20.08 Babisch W, Houthuijs D, Pershagen G, Cadum E, Katsouyanni K, Velonakis M, et al. Annoyance due to aircraft noise has increased over the years − Results of the HYENA study
- CD20.09 . Fidell S, Silvati L. Social survey of community response to a step change in aircraft noise exposure
- CD20.10 Brink M, Wirth KE, Schierz C, Thomann G, Bauer G. Annoyance responses to stable and changing aircraft noise exposure. J Acoust Soc Am. 2008;124:2930–41
- CD20.11 Fidell S, Mestre V, Schomer P, Berry B, Gjestland T, Vallet M, et al. A first-principles model for estimating the prevalence of annoyance with aircraft noise exposure. J Acoust Soc Am. 2011;130:791–806
- CD20.12 Miedema HM, Vos H, de Jong RG. Community reaction to aircraft noise: Time-of-day penalty and tradeoff between levels of overflights. J Acoust Soc Am. 2000;107:3245–53
- CD20.14 Fields JM. The effect of numbers of noise events on people’s reactions to noise: An analysis of existing survey data. J Acoust Soc Am. 1984;75:447–67
- CD20.15 Schreckenberg D, editor. Aircraft Noise Annoyance and Residents’ Acceptance and Use of Sound Proof Windows and Ventilation Systems. New York City, NY, USA: Internoise; 2012
- CD20.16 Stansfeld SA, Berglund B, Clark C, Lopez-Barrio I, Fischer P, Ohrstrom E, et al. Aircraft and road traffic noise and children’s cognition and health: A cross-national study. Lancet. 2005;365:1942–9
- CD20.17 Clark C, Crombie R, Head J, van Kamp I, van Kempen E, Stansfeld SA. Does traffic-related air pollution explain associations of aircraft and road traffic noise exposure on children’s health and cognition?
- CD20.18 Stansfeld SA, Hygge S, Clark C, Alfred T. Night time aircraft noise exposure and children’s cognitive performance
- CD20.19 Hygge S, Evans GW, Bullinger M. A prospective study of some effects of aircraft noise on cognitive performance in schoolchildren
- CD20.20 Sharp B, Connor TL, McLaughlin D, Clark C, Stansfeld SA, Hervey J. Assessing Aircraft Noise Conditions Affecting Student Learning. Washington, DC, USA: Transportation Research Board of the National Academies; 2014
- CD20.21 Evans G, Lepore S. Non-auditory effects of noise on children: A critical review. Child Environ. 1993
- CD20.22 WHO. Guidelines for Community Noise. Geneva: World Health Organization Europe; 2000
- CD20.23 Muzet A. Environmental noise, sleep and health. Sleep Med Rev. 2007
- CD20.24 Dang-Vu TT, McKinney SM, Buxton OM, Solet JM, Ellenbogen JM. Spontaneous brain rhythms predict sleep stability in the face of noise
- CD20.25 Basner M, Müller U, Griefahn B. Practical guidance for risk assessment of traffic noise effects on sleep. Appl Acoust
- CD20.26 Basner M, Müller U, Elmenhorst E-M. Single and combined effects of air, road, and rail traffic noise on sleep and recuperation
- CD20.27 Brink M, Basner M, Schierz C, Spreng M, Scheuch K, Bauer G, et al. Determining physiological reaction probabilities to noise events during sleep
- CD20.28 Cassel W, Ploch T, Griefahn B, Speicher T, Loh A, Penzel T, et al. Disturbed sleep in obstructive sleep apnea expressed in a single index of sleep disturbance (SDI) Somnologie
- CD20.29 Basner M. Nocturnal aircraft noise increases objectively assessed daytime sleepiness. Somnologie. 2008;12:110–7
- CD20.30 Elmenhorst EM, Elmenhorst D, Wenzel J, Quehl J, Mueller U, Maass H, et al. Effects of nocturnal aircraft noise on cognitive performance in the following morning: Dose–response relationships in laboratory and field. Int Arch Occup Environ Health
- CD20.31 Jarup L, Babisch W, Houthuijs D, Pershagen G, Katsouyanni K, Cadum E, et al. Hypertension and exposure to noise near airports
- CD20.32 Basner M, Isermann U, Samel A. Aircraft noise effects on sleep: Application of the results of a large polysomnographic field study
- CD20.33 Pearsons K, Barber D, Tabachnick BG, Fidell S. Predicting noise-induced sleep disturbance
- CD20.34 Marks A, Griefahn B, Basner M. Event-related awakenings caused by nocturnal transportation noise
- CD20.35 Babisch W. The noise/stress concept, risk assessment and research needs. Noise Health. 2002
- CD20.36 Correia AW, Peters JL, Levy JI, Melly S, Dominici F. Residential exposure to aircraft noise and hospital admissions for cardiovascular diseases: Multi-airport retrospective study
- CD20.37 Hansell AL, Blangiardo M, Fortunato L, Floud S, de Hoogh K, Fecht D, et al. Aircraft noise and cardiovascular disease near Heathrow airport in London: Small area study
- CD20.38 Floud S, Blangiardo M, Clark C, Babisch W, Houthuijs D, Pershagen G, et al. Reported heart disease and stroke in relation to aircraft and road traffic noise in six European countries − The HYENA study
- CD20.39 Gan WQ, Davies HW, Koehoorn M, Brauer M. Association of long-term exposure to community noise and traffic-related air pollution with coronary heart disease mortality
- CD20.40 Sorensen M, Hvidberg M, Andersen ZJ, Nordsborg RB, Lillelund KG, Jakobsen J, et al. Road traffic noise and stroke: A prospective cohort study
- CD20.41 Babisch W, Kamp I. Exposure–response relationship of the association between aircraft noise and the risk of hypertension
- CD20.42 Huang D, Song X, Cui Q, Tian J, Wang Q, Yang K. Is there an association between aircraft noise exposure and the incidence of hypertension? A meta-analysis of 16784 participants
- CD20.43 van Kempen E, Babisch W. The quantitative relationship between road traffic noise and hypertension: A meta-analysis
- CD20.44 van Kempen E, van Kamp I, Fischer P, Davies H, Houthuijs D, Stellato R, et al. Noise exposure and children’s blood pressure and heart rate: The RANCH project
- CD20.45 Haralabidis AS, Dimakopoulou K, Vigna-Taglianti F, Giampaolo M, Borgini A, Dudley ML, et al. Acute effects of night-time noise exposure on blood pressure in populations living near airports
- CD20.46 Schmidt FP, Basner M, Kroger G, Weck S, Schnorbus B, Muttray A, et al. Effect of nighttime aircraft noise exposure on endothelial function and stress hormone release in healthy adults
- CD20.47 Schmidt F, Kolle K, Kreuder K, Schnorbus B, Wild P, Hechtner M, et al. Nighttime aircraft noise impairs endothelial function and increases blood pressure in patients with or at high risk for coronary artery disease
- CD20.48 Eriksson C, Hilding A, Pyko A, Bluhm G, Pershagen G, Ostenson CG. Long-term aircraft noise exposure and body mass index, waist circumference, and type 2 diabetes
- CD20.49 Pyko A, Eriksson C, Oftedal B, Hilding A, Ostenson CG, Krog NH, et al. Exposure to traffic noise and markers of obesity
- CD20.50 Ristovska G, Laszlo HE, Hansell AL. Reproductive outcomes associated with noise exposure − A systematic review of the literature
- CD20.51 Matsui T, Matsuno T, Ashimine K, Miyakita T, Hiramatsu K, Yamamoto T. [Association between the rates of low birth-weight and/or preterm infants and aircraft noise exposure
- CD20.52 Schreckenberg D, Meis M, Kahl C, Peschel C, Eikmann T. Aircraft noise and quality of life around Frankfurt Airport
- CD20.53 Floud S, Vigna-Taglianti F, Hansell A, Blangiardo M, Houthuijs D, Breugelmans O, et al. Medication use in relation to noise from aircraft and road traffic in six European countries
- CD20.54 Selander J, Bluhm G, Theorell T, Pershagen G, Babisch W, Seiffert I, et al. Saliva cortisol and exposure to aircraft noise in six European countries
- CD20.55 Haines MM, Stansfeld SA, Job RF, Berglund B, Head J. Chronic aircraft noise exposure, stress responses, mental health and cognitive performance in school children
- CD20.56 Haines MM, Stansfeld SA, Brentnall S, Head J, Berry B, Jiggins M, et al. The West London Schools Study: The effects of chronic aircraft noise exposure on child health
- CD20.57 Stansfeld SA, Clark C, Cameron RM, Alfred T, Head J, Haines MM, et al. Aircraft and road traffic noise exposure and children’s mental health
- CD20.58 Fisher L, Liu L, Maurice L, Shepherd K. Supersonic aircraft: Balancing fast, affordable, and green
- CD20.60 Maglieri D, Bobbitt P, Plotkin K, Shepherd K, Coen P, Richwine D. Sonic Boom: Six Decades of Research
- CD20.61 He Q, Wollersheim C, Locke M, Waitz I. Estimation of the global impacts of aviation-related noise using an income-based approach. Transport Policy. 2014
- CD20.64 Zaporozhets O, Tokarev V, Attenborough K. Aircraft Noise: Assessment, Prediction, and Control. Abingdon, UK: SPON Press; 2011
- CD20.65 Human Health: Ensuring a high level of protection December 2020
- CD20.66 PHE guidance on HIA in spatial planning, Oct 2020
- CD20.67 Planning Practice Guidance: Guidance on promoting healthy and safe communities