Short-term effects of ultrafine particles on daily mortality by primary vehicle exhaust versus secondary origin in three Spanish cities.
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Xavier Querol | Aurelio Tobías | Andrés Alastuey | Cristina Reche | Jordi Sunyer | A. Tobías | J. Sunyer | I. Rivas | C. Reche | X. Querol | A. Alastuey | S. Rodríguez | J. De la Rosa | R. Fernández-Camacho | Ioar Rivas | Sergio Rodríguez | Jesús de la Rosa | Rocío Fernández-Camacho | Ana M Sánchez de la Campa | A. M. Sánchez de la Campa
[1] G. Oberdörster,et al. Nanotoxicology: An Emerging Discipline Evolving from Studies of Ultrafine Particles , 2005, Environmental health perspectives.
[2] A. Nel,et al. Particulate matter and atherosclerosis: role of particle size, composition and oxidative stress , 2009, Particle and Fibre Toxicology.
[3] Brian J. Bennett,et al. Ambient Particulate Pollutants in the Ultrafine Range Promote Early Atherosclerosis and Systemic Oxidative Stress , 2008, Circulation research.
[4] H. R. Anderson,et al. Differential health effects of short-term exposure to source-specific particles in London, U.K. , 2016, Environment international.
[5] Zoran Ristovski,et al. Observation of new particle formation in subtropical urban environment , 2010 .
[6] M. Jiménez,et al. Efectos a corto plazo de la contaminación atmosférica sobre la mortalidad: resultados del proyecto EMECAM en Zaragoza, 1991-1995 , 1999 .
[7] S. Rodríguez,et al. Study on the formation and transport of ozone in relation to the air quality management and vegetation protection in Tenerife (Canary Islands). , 2004, Chemosphere.
[8] Maria Antònia Barceló,et al. Spatial variability in mortality inequalities, socioeconomic deprivation, and air pollution in small areas of the Barcelona Metropolitan Region, Spain. , 2009, The Science of the total environment.
[9] Xavier Querol,et al. Impact of harbour emissions on ambient PM10 and PM2.5 in Barcelona (Spain): Evidences of secondary aerosol formation within the urban area. , 2016, The Science of the total environment.
[10] W. Kreyling,et al. Ultrafine particle-lung interactions: does size matter? , 2006, Journal of aerosol medicine : the official journal of the International Society for Aerosols in Medicine.
[11] X. Basagaña,et al. The risks of acute exposure to black carbon in Southern Europe: results from the MED-PARTICLES project , 2014, Occupational and Environmental Medicine.
[12] M. Chin. Basic mechanisms for adverse cardiovascular events associated with air pollution , 2014, Heart.
[13] A. Ding,et al. On the mode-segregated aerosol particle number concentration load : contributions of primary and secondary particles in Hyytiälä and Nanjing , 2016 .
[14] Hanna Vehkamäki,et al. Formation and growth rates of ultrafine atmospheric particles: a review of observations , 2004 .
[15] A. Domínguez-Rodríguez,et al. Black carbon exposure, oxidative stress markers and major adverse cardiovascular events in patients with acute coronary syndromes. , 2015, International journal of cardiology.
[16] Flemming R Cassee,et al. Oxidative potential of semi-volatile and non volatile particulate matter (PM) from heavy-duty vehicles retrofitted with emission control technologies. , 2009, Environmental science & technology.
[17] Xavier Querol,et al. Influence of sea breeze circulation and road traffic emissions on the relationship between particle number, black carbon, PM1, PM2.5 and PM2.5–10 concentrations in a coastal city , 2008 .
[18] Y. Fujitani,et al. Nano-Sized Secondary Organic Aerosol of Diesel Engine Exhaust Origin Impairs Olfactory-Based Spatial Learning Performance in Preweaning Mice , 2015, Nanomaterials.
[19] J. Samet,et al. Air Pollution and Cardiovascular Disease: A Statement for Healthcare Professionals From the Expert Panel on Population and Prevention Science of the American Heart Association , 2004, Circulation.
[20] Roy M. Harrison,et al. Primary particle formation from vehicle emissions during exhaust dilution in the roadside atmosphere , 2003 .
[21] F. Ballester,et al. Air pollution and mortality in the Canary Islands: a time-series analysis , 2010, Environmental health : a global access science source.
[22] A. Domínguez-Rodríguez,et al. Comparative study of ambient air particles in patients hospitalized for heart failure and acute coronary syndrome. , 2011, Revista espanola de cardiologia.
[23] Xavier Querol,et al. Ultrafine particle and fine trace metal (As, Cd, Cu, Pb and Zn) pollution episodes induced by industrial emissions in Huelva, SW Spain , 2012 .
[24] S. Rodríguez,et al. The contributions of “minimum primary emissions” and “new particle formation enhancements” to the particle number concentration in urban air , 2007 .
[25] S. Rodríguez,et al. Ultrafine particles pollution in urban coastal air due to ship emissions , 2011 .
[26] Fulvio Amato,et al. The Effects of Particulate Matter Sources on Daily Mortality: A Case-Crossover Study of Barcelona, Spain , 2011, Environmental health perspectives.
[27] Comparative study of ambient air particles in patients hospitalized for heart failure and acute coronary syndrome. , 2011, Revista espanola de cardiologia.
[28] G. Hoek,et al. Total and size-resolved particle number and black carbon concentrations in urban areas near Schiphol airport (the Netherlands) , 2015 .
[29] S. Rodríguez,et al. A comparative study on the ultrafine particle episodes induced by vehicle exhaust: A crude oil refinery and ship emissions , 2013 .
[30] P. Monks,et al. Quantifying primary and secondary source contributions to ultrafine particles in the UK urban background , 2017 .
[31] R. Harrison,et al. New considerations for PM, Black Carbon and particle number concentration for air quality monitoring across different European cities , 2011 .
[32] Antonella Zanobetti,et al. Air pollution and health: a European and North American approach (APHENA). , 2009, Research report.
[33] Alexandra Schneider,et al. Health effects of particulate air pollution: A review of epidemiological evidence , 2011, Inhalation toxicology.
[34] Peter Wåhlin,et al. Exposure to Ultrafine Particles from Ambient Air and Oxidative Stress–Induced DNA Damage , 2007, Environmental health perspectives.
[35] L. Morawska,et al. Traffic and nucleation events as main sources of ultrafine particles in high-insolation developed world cities , 2015 .
[36] M. Stafoggia,et al. Associations between Fine and Coarse Particles and Mortality in Mediterranean Cities: Results from the MED-PARTICLES Project , 2013, Environmental health perspectives.
[37] D. Zmirou,et al. Short-term effects of ambient particles on mortality in the elderly: results from 28 cities in the APHEA2 project , 2003, European Respiratory Journal.
[38] X. Querol,et al. Identification and Chemical Characterization of Industrial Particulate Matter Sources in Southwest Spain , 2006, Journal of the Air & Waste Management Association.
[39] Christer Johansson,et al. Urban scale modeling of particle number concentration in Stockholm , 2005 .
[40] Lidia Morawska,et al. Ultrafine particle emission of waste incinerators and comparison to the exposure of urban citizens. , 2015, Waste management.
[41] Alexandra Schneider,et al. Associations between ultrafine and fine particles and mortality in five central European cities - Results from the UFIREG study. , 2016, Environment international.
[42] A. Peters,et al. Association Between Short-term Exposure to Ultrafine Particles and Mortality in Eight European Urban Areas , 2017, Epidemiology.
[43] B. McNeil,et al. Improving quality of care through disease management: principles and recommendations from the American Heart Association's Expert Panel on Disease Management. , 2004, Stroke.
[44] Gary W. Fuller,et al. Urban Ambient Particle Metrics and Health: A Time-series Analysis , 2010, Epidemiology.
[45] N Künzli,et al. Size fractionate particulate matter, vehicle traffic, and case-specific daily mortality in Barcelona, Spain. , 2009, Environmental science & technology.
[46] A. Wiedensohler,et al. Long term measurements of submicrometer urban aerosols: statistical analysis for correlations with meteorological conditions and trace gases , 2002 .
[47] B. Cohen. Health Effects of Ambient Ultrafine Particles , 2012 .
[48] Paul S. Monks,et al. Ultrafine particles in four European urban environments: Results from a new continuous long-term monitoring network , 2016 .
[49] R. Harrison,et al. AIRUSE-LIFE+: a harmonized PM speciation and source apportionment in five southern European cities , 2015 .
[50] Flemming R. Cassee,et al. Particulate matter beyond mass: recent health evidence on the role of fractions, chemical constituents and sources of emission , 2013, Inhalation toxicology.
[51] W. Birmili,et al. Estimating the contribution of photochemical particle formation to ultrafine particle number averages in an urban atmosphere. , 2015, The Science of the total environment.
[52] J. Chow,et al. Health effects of organic aerosols. , 2008, Inhalation toxicology.
[53] M. Kulmala,et al. Regional effect on urban atmospheric nucleation , 2016 .
[54] T. Tuch,et al. Significant increase of aerosol number concentrations in air masses crossing a densely trafficked sea area , 2016 .
[55] Julia C. Fussell,et al. Size, source and chemical composition as determinants of toxicity attributable to ambient particulate matter , 2012 .
[56] J. Schauer,et al. Impact of primary and secondary organic sources on the oxidative potential of quasi-ultrafine particles (PM0.25) at three contrasting locations in the Los Angeles Basin , 2015 .
[57] A. Peters,et al. Particulate Matter Air Pollution and Cardiovascular Disease: An Update to the Scientific Statement From the American Heart Association , 2010, Circulation.
[58] R. Harrison,et al. On the spatial distribution and evolution of ultrafine particles in Barcelona , 2013 .
[59] Thomas Lumley,et al. Referent Selection in Case-Crossover Analyses of Acute Health Effects of Air Pollution , 2001, Epidemiology.
[60] J. Seinfeld,et al. The effects of α-pinene versus toluene-derived secondary organic aerosol exposure on the expression of markers associated with vascular disease , 2013, Inhalation toxicology.
[61] On the spatial distribution and evolution of ultrafine aerosols in urban air , 2012 .
[62] L. Ahonen,et al. Measurements of sub-3 nm particles using a particle size magnifier in different environments: from clean mountain top to polluted megacities , 2017 .
[63] C. Reche,et al. Peculiarities in atmospheric particle number and size-resolved speciation in an urban area in the western Mediterranean: Results from the DAURE campaign , 2011 .