The Exposure Core will be responsible for the assessment of all air pollutant exposures for all Projects of the Program Project. Air pollutant exposures will be assessed for each project following a three-tiered approach to characterize regional, community, and residential ambient particulate pollution. In the first tier, regional ambient concentrations will be characterized continuously for PM2.5, its major components, and other important particulate measures at a central stationary ambient monitoring (SAM) site located on the roof of Countway Library at 10 Shattuck Street, Boston, MA. At this site, ambient concentrations of PM2.5, PM10, black carbon (BC), sulfate (SO4[2-]), nitrate (NO3-), elemental (EC) and organic (OC) carbon, and particle counts (PC) will be measured continuously. Daily 24-h (9-9am) integrated PM2.5 samples will also be collected, with collected samples analyzed for PM2.5, BC (by reflectance), and elements (by XRF). Spatial variation in locally generated particle concentrations within metropolitan Boston will be assessed in Tier 2 using continuous measurements of ambient PM2.5 and BC concentrations at ten community monitoring stations. Finer spatial scale variation in locally generated particles will be captured in Tier 3 using residence-specific outdoor concentrations of traffic-related particles, which will be estimated using central and community site and State monitoring network pollution measurements and GIS-based spatial models. In our panel studies, exposures will also be measured directly for each study participant. Personal PM2.5 exposures will be measured continuously for each study participant for 24-h prior to each health measurement. Corresponding 24-h integrated personal PM2.5, SO4[2-] and BC exposures will also be measured for each participant. Personal measurements will include personal PM2.5, BC and particle count exposures, which will be measured continuously for participants as they travel on field trips aboard a diesel-powered bus. The Exposure Core is central to the Program Project. Not only will it provide all ambient and personal exposure measurements, but it will also provide expertise in atmospheric sciences, environmental and analytical chemistry, aerosol engineering and exposure assessment. This expertise will be used to characterize the sources and types of particle exposures and to provide an exposure assessment framework that will help to interpret and relate exposure and health effects data collected as part of this PPG.

Agency
National Institute of Health (NIH)
Institute
National Institute of Environmental Health Sciences (NIEHS)
Type
Research Program Projects (P01)
Project #
5P01ES009825-09
Application #
7665540
Study Section
Special Emphasis Panel (ZES1)
Project Start
Project End
Budget Start
2008-08-01
Budget End
2009-07-31
Support Year
9
Fiscal Year
2008
Total Cost
$479,452
Indirect Cost
Name
Harvard University
Department
Type
DUNS #
149617367
City
Boston
State
MA
Country
United States
Zip Code
02115
Corlin, Laura; Woodin, Mark; Hart, Jaime E et al. (2018) Longitudinal associations of long-term exposure to ultrafine particles with blood pressure and systemic inflammation in Puerto Rican adults. Environ Health 17:33
Rice, Mary B; Rifas-Shiman, Sheryl L; Litonjua, Augusto A et al. (2018) Lifetime air pollution exposure and asthma in a pediatric birth cohort. J Allergy Clin Immunol 141:1932-1934.e7
Li, Wenyuan; Dorans, Kirsten S; Wilker, Elissa H et al. (2018) Ambient air pollution, adipokines, and glucose homeostasis: The Framingham Heart Study. Environ Int 111:14-22
Li, Wenyuan; Nyhan, Marguerite M; Wilker, Elissa H et al. (2018) Recent exposure to particle radioactivity and biomarkers of oxidative stress and inflammation: The Framingham Heart Study. Environ Int 121:1210-1216
Gaffin, Jonathan M; Hauptman, Marissa; Petty, Carter R et al. (2018) Nitrogen dioxide exposure in school classrooms of inner-city children with asthma. J Allergy Clin Immunol 141:2249-2255.e2
Li, Wenyuan; Dorans, Kirsten S; Wilker, Elissa H et al. (2017) Short-Term Exposure to Ambient Air Pollution and Biomarkers of Systemic Inflammation: The Framingham Heart Study. Arterioscler Thromb Vasc Biol 37:1793-1800
Fleisch, A F; Luttmann-Gibson, H; Perng, W et al. (2017) Prenatal and early life exposure to traffic pollution and cardiometabolic health in childhood. Pediatr Obes 12:48-57
Li, Wenyuan; Dorans, Kirsten S; Wilker, Elissa H et al. (2017) Residential Proximity to Major Roadways, Fine Particulate Matter, and Hepatic Steatosis: The Framingham Heart Study. Am J Epidemiol 186:857-865
Zanobetti, Antonella; Coull, Brent A; Kloog, Itai et al. (2017) Fine-scale spatial and temporal variation in temperature and arrhythmia episodes in the VA Normative Aging Study. J Air Waste Manag Assoc 67:96-104
Harris, Maria H; Gold, Diane R; Rifas-Shiman, Sheryl L et al. (2016) Prenatal and childhood traffic-related air pollution exposure and childhood executive function and behavior. Neurotoxicol Teratol 57:60-70

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