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1.

GPS-based microenvironment tracker (MicroTrac) model to estimate time-location of individuals for air pollution exposure assessments: model evaluation in central North Carolina.

Breen MS, Long TC, Schultz BD, Crooks J, Breen M, Langstaff JE, Isaacs KK, Tan YM, Williams RW, Cao Y, Geller AM, Devlin RB, Batterman SA, Buckley TJ.

J Expo Sci Environ Epidemiol. 2014 Jul;24(4):412-20. doi: 10.1038/jes.2014.13. Epub 2014 Mar 12.

2.
3.

Part 5. Public health and air pollution in Asia (PAPA): a combined analysis of four studies of air pollution and mortality.

Wong CM, Vichit-Vadakan N, Vajanapoom N, Ostro B, Thach TQ, Chau PY, Chan EK, Chung RY, Ou CQ, Yang L, Peiris JS, Thomas GN, Lam TH, Wong TW, Hedley AJ, Kan H, Chen B, Zhao N, London SJ, Song G, Chen G, Zhang Y, Jiang L, Qian Z, He Q, Lin HM, Kong L, Zhou D, Liang S, Zhu Z, Liao D, Liu W, Bentley CM, Dan J, Wang B, Yang N, Xu S, Gong J, Wei H, Sun H, Qin Z; HEI Health Review Committee.

Res Rep Health Eff Inst. 2010 Nov;(154):377-418.

PMID:
21446215
4.

The microenvironmental modelling approach to assess children's exposure to air pollution - A review.

Branco PT, Alvim-Ferraz MC, Martins FG, Sousa SI.

Environ Res. 2014 Nov;135:317-32. doi: 10.1016/j.envres.2014.10.002. Epub 2014 Oct 22. Review.

PMID:
25462682
5.

A new analytical method for the classification of time-location data obtained from the global positioning system (GPS).

Kim T, Lee K, Yang W, Yu SD.

J Environ Monit. 2012 Aug;14(8):2270-4. doi: 10.1039/c2em30190c. Epub 2012 Jun 27.

PMID:
22739933
6.

Effects of short-term exposure to air pollution on hospital admissions of young children for acute lower respiratory infections in Ho Chi Minh City, Vietnam.

HEI Collaborative Working Group on Air Pollution, Poverty, and Health in Ho Chi Minh City, Le TG, Ngo L, Mehta S, Do VD, Thach TQ, Vu XD, Nguyen DT, Cohen A.

Res Rep Health Eff Inst. 2012 Jun;(169):5-72; discussion 73-83.

PMID:
22849236
7.

Travel patterns during pregnancy: comparison between Global Positioning System (GPS) tracking and questionnaire data.

Wu J, Jiang C, Jaimes G, Bartell S, Dang A, Baker D, Delfino RJ.

Environ Health. 2013 Oct 9;12(1):86. doi: 10.1186/1476-069X-12-86.

8.

Personal exposure to mixtures of volatile organic compounds: modeling and further analysis of the RIOPA data.

Batterman S, Su FC, Li S, Mukherjee B, Jia C; HEI Health Review Committee.

Res Rep Health Eff Inst. 2014 Jun;(181):3-63.

PMID:
25145040
9.

Characterisation of urban inhalation exposures to benzene, formaldehyde and acetaldehyde in the European Union: comparison of measured and modelled exposure data.

Bruinen de Bruin Y, Koistinen K, Kephalopoulos S, Geiss O, Tirendi S, Kotzias D.

Environ Sci Pollut Res Int. 2008 Jul;15(5):417-30. doi: 10.1007/s11356-008-0013-4. Epub 2008 May 20.

PMID:
18491156
10.

Modeling personal particle-bound polycyclic aromatic hydrocarbon (pb-pah) exposure in human subjects in Southern California.

Wu J, Tjoa T, Li L, Jaimes G, Delfino RJ.

Environ Health. 2012 Jul 11;11:47. doi: 10.1186/1476-069X-11-47.

11.

A population exposure model for particulate matter: case study results for PM(2.5) in Philadelphia, PA.

Burke JM, Zufall MJ, Ozkaynak H.

J Expo Anal Environ Epidemiol. 2001 Nov-Dec;11(6):470-89.

12.

Spatial variations in estimated chronic exposure to traffic-related air pollution in working populations: a simulation.

Setton EM, Keller CP, Cloutier-Fisher D, Hystad PW.

Int J Health Geogr. 2008 Jul 18;7:39. doi: 10.1186/1476-072X-7-39.

13.

Combining regional- and local-scale air quality models with exposure models for use in environmental health studies.

Isakov V, Touma JS, Burke J, Lobdell DT, Palma T, Rosenbaum A, Ozkaynak H.

J Air Waste Manag Assoc. 2009 Apr;59(4):461-72.

PMID:
19418820
14.

Predicting residential air exchange rates from questionnaires and meteorology: model evaluation in central North Carolina.

Breen MS, Breen M, Williams RW, Schultz BD.

Environ Sci Technol. 2010 Dec 15;44(24):9349-56. doi: 10.1021/es101800k. Epub 2010 Nov 11.

15.

Effects of long-term exposure to traffic-related air pollution on respiratory and cardiovascular mortality in the Netherlands: the NLCS-AIR study.

Brunekreef B, Beelen R, Hoek G, Schouten L, Bausch-Goldbohm S, Fischer P, Armstrong B, Hughes E, Jerrett M, van den Brandt P.

Res Rep Health Eff Inst. 2009 Mar;(139):5-71; discussion 73-89.

PMID:
19554969
16.

Spatiotemporal air pollution exposure assessment for a Canadian population-based lung cancer case-control study.

Hystad P, Demers PA, Johnson KC, Brook J, van Donkelaar A, Lamsal L, Martin R, Brauer M.

Environ Health. 2012 Apr 4;11:22. doi: 10.1186/1476-069X-11-22.

17.

Comparison of global positioning system (GPS) tracking and parent-report diaries to characterize children's time-location patterns.

Elgethun K, Yost MG, Fitzpatrick CT, Nyerges TL, Fenske RA.

J Expo Sci Environ Epidemiol. 2007 Mar;17(2):196-206. Epub 2006 Jun 14.

PMID:
16773123
18.

Modelling of human exposure to air pollution in the urban environment: a GPS-based approach.

Dias D, Tchepel O.

Environ Sci Pollut Res Int. 2014 Mar;21(5):3558-71. doi: 10.1007/s11356-013-2277-6. Epub 2013 Nov 24.

PMID:
24271724
19.

Early prenatal exposure to air pollution and its associations with birth defects in a state-wide birth cohort from North Carolina.

Vinikoor-Imler LC, Davis JA, Meyer RE, Luben TJ.

Birth Defects Res A Clin Mol Teratol. 2013 Oct;97(10):696-701. doi: 10.1002/bdra.23159. Epub 2013 Jul 29.

PMID:
23897551
20.

Estimating volatile organic compound concentrations in selected microenvironments using time-activity and personal exposure data.

Sexton K, Mongin SJ, Adgate JL, Pratt GC, Ramachandran G, Stock TH, Morandi MT.

J Toxicol Environ Health A. 2007 Mar 1;70(5):465-76.

PMID:
17454570
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