Robustness of Land-Use Regression Models Developed from Mobile Air Pollutant Measurements.
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Marianne Hatzopoulou | Gang Lu | Ilan Levy | Laura Minet | Ilan Levy | J. Brook | M. Valois | M. Hatzopoulou | Scott Bagg | L. Minet | Cristian Mihele | G. Lu | Jeffrey Brook | C. Mihele | Marie France Valois | Scott Bagg
[1] L. Morawska,et al. Ultrafine particles in cities. , 2014, Environment international.
[2] Cheol-Heon Jeong,et al. Development of a land-use regression model for ultrafine particles in Toronto, Canada. , 2015 .
[3] A. Cohen,et al. Lung Cancer and Exposure to Nitrogen Dioxide and Traffic: A Systematic Review and Meta-Analysis , 2015, Environmental health perspectives.
[4] Bert Brunekreef,et al. Spatial variation of ultrafine particles and black carbon in two cities: results from a short-term measurement campaign. , 2015, The Science of the total environment.
[5] X. Basagaña,et al. Spatial distribution of ultrafine particles in urban settings: A land use regression model , 2012 .
[6] Bert Brunekreef,et al. A Land Use Regression Model for Ultrafine Particles in Amsterdam , 2009 .
[7] Edward Ng,et al. Developing Street-Level PM2.5 and PM10 Land Use Regression Models in High-Density Hong Kong with Urban Morphological Factors. , 2016, Environmental science & technology.
[8] Marianne Hatzopoulou,et al. Characterizing the spatial distribution of ambient ultrafine particles in Toronto, Canada: A land use regression model. , 2016, Environmental pollution.
[9] Constantinos Sioutas,et al. Exposure Assessment for Atmospheric Ultrafine Particles (UFPs) and Implications in Epidemiologic Research , 2005, Environmental health perspectives.
[10] I. Tager,et al. Population intervention models to estimate ambient NO2 health effects in children with asthma , 2014, Journal of Exposure Science and Environmental Epidemiology.
[11] J. Araujo. Particulate air pollution, systemic oxidative stress, inflammation, and atherosclerosis , 2010, Air quality, atmosphere, & health.
[12] B. Brunekreef,et al. Comparison of Ultrafine Particle and Black Carbon Concentration Predictions from a Mobile and Short-Term Stationary Land-Use Regression Model. , 2016, Environmental science & technology.
[13] J. Gulliver,et al. A review of land-use regression models to assess spatial variation of outdoor air pollution , 2008 .
[14] Bert Brunekreef,et al. Estimating Long-Term Average Particulate Air Pollution Concentrations: Application of Traffic Indicators and Geographic Information Systems , 2003, Epidemiology.
[15] Marianne Hatzopoulou,et al. Investigating the Use Of Portable Air Pollution Sensors to Capture the Spatial Variability Of Traffic-Related Air Pollution. , 2016, Environmental science & technology.
[16] Marc L. Serre,et al. An LUR/BME Framework to Estimate PM2.5 Explained by on Road Mobile and Stationary Sources , 2014, Environmental science & technology.
[17] P. Elliott,et al. A regression-based method for mapping traffic-related air pollution: application and testing in four contrasting urban environments. , 2000, The Science of the total environment.
[18] A. Lewis,et al. Year‐round measurements of nitrogen oxides and ozone in the tropical North Atlantic marine boundary layer , 2009 .
[19] Ilan Levy,et al. Elucidating multipollutant exposure across a complex metropolitan area by systematic deployment of a mobile laboratory , 2012 .
[20] Zev Ross,et al. A hybrid approach to estimating national scale spatiotemporal variability of PM2.5 in the contiguous United States. , 2013, Environmental science & technology.
[21] Marianne Hatzopoulou,et al. A land use regression model for ambient ultrafine particles in Montreal, Canada: A comparison of linear regression and a machine learning approach. , 2016, Environmental research.
[22] Naveen Eluru,et al. Land-use and socio-economics as determinants of traffic emissions and individual exposure to air pollution , 2013 .
[23] Scott Fruin,et al. Modeling the concentrations of on-road air pollutants in southern California. , 2013, Environmental science & technology.
[24] M. Jerrett,et al. Modeling the Intraurban Variability of Ambient Traffic Pollution in Toronto, Canada , 2007, Journal of toxicology and environmental health. Part A.
[25] Mark S Goldberg,et al. Assessing Spatial Variability of Ambient Nitrogen Dioxide in Montréal, Canada, with a Land-Use Regression Model , 2005, Journal of the Air & Waste Management Association.
[26] M. Brauer,et al. Spatiotemporal land use regression models of fine, ultrafine, and black carbon particulate matter in New Delhi, India. , 2013, Environmental science & technology.
[27] A. Cohen,et al. ehp Lung Cancer and Exposure to Nitrogen Dioxide and Traffic : A Systematic Review and Meta-Analysis , 2015 .
[28] Joris Van den Bossche,et al. Mobile monitoring for mapping spatial variation in urban air quality: Development and validation of a methodology based on an extensive dataset , 2015 .
[29] Bert Brunekreef,et al. Land use regression model for ultrafine particles in Amsterdam. , 2011, Environmental science & technology.
[30] Michael Jerrett,et al. The use of wind fields in a land use regression model to predict air pollution concentrations for health exposure studies , 2007 .
[31] Bert Brunekreef,et al. Land use regression models for estimating individual NOx and NO₂ exposures in a metropolis with a high density of traffic roads and population. , 2014, The Science of the total environment.
[32] Scott Fruin,et al. Mobile platform measurements of ultrafine particles and associated pollutant concentrations on freeways and residential streets in Los Angeles , 2005 .
[33] Michael Brauer,et al. Application of land use regression to estimate long-term concentrations of traffic-related nitrogen oxides and fine particulate matter. , 2007, Environmental science & technology.
[34] Dan L. Crouse,et al. A prediction-based approach to modelling temporal and spatial variability of traffic-related air pollution in Montreal, Canada , 2009 .
[35] Bin Zou,et al. Air pollution exposure assessment methods utilized in epidemiological studies. , 2009, Journal of environmental monitoring : JEM.
[36] M. Goldberg,et al. Postmenopausal Breast Cancer Is Associated with Exposure to Traffic-Related Air Pollution in Montreal, Canada: A Case–Control Study , 2010, Environmental health perspectives.
[37] Steve Hankey,et al. Land Use Regression Models of On-Road Particulate Air Pollution (Particle Number, Black Carbon, PM2.5, Particle Size) Using Mobile Monitoring. , 2015, Environmental science & technology.
[38] N. Eluru,et al. Quantifying the Effects of Land-use and Socio-economics on the Generation of Traffic Emissions and Individual Exposure to Air Pollution , 2013 .
[39] M. Brauer,et al. A land use regression model for ultrafine particles in Vancouver, Canada. , 2013, Environmental science & technology.
[40] D. Arveiler,et al. Traffic-Related Air Pollution and the Onset of Myocardial Infarction: Disclosing Benzene as a Trigger? A Small-Area Case-Crossover Study , 2014, PloS one.
[41] Allan Brand,et al. A spatiotemporal land-use regression model of winter fine particulate levels in residential neighbourhoods , 2012, Journal of Exposure Science and Environmental Epidemiology.
[42] Michael Brauer,et al. Mobile monitoring of particle light absorption coefficient in an urban area as a basis for land use regression. , 2009, Environmental science & technology.
[43] Altaf Arain,et al. A Land Use Regression Model for Predicting Ambient Concentrations of Nitrogen Dioxide in Hamilton, Ontario, Canada , 2006, Journal of the Air & Waste Management Association.
[44] H. Wichmann,et al. Predicting long-term average concentrations of traffic-related air pollutants using GIS-based information , 2006 .
[45] Simon Kingham,et al. Mapping Urban Air Pollution Using GIS: A Regression-Based Approach , 1997, Int. J. Geogr. Inf. Sci..