Literature DB >> 18079769

Panel discussion review: session two--interpretation of observed associations between multiple ambient air pollutants and health effects in epidemiologic analyses.

Jee Young Kim1, Richard T Burnett, Lucas Neas, George D Thurston, Joel Schwartz, Paige E Tolbert, Bert Brunekreef, Mark S Goldberg, Isabelle Romieu.   

Abstract

Air pollution epidemiologic research has often utilized ambient air concentrations measured from centrally located monitors as a surrogate measure of exposure to these pollutants. Associations between these ambient concentrations and health outcomes such as lung function, hospital admissions, and mortality have been examined in short- and long-term cohort studies as well as in time-series and case-crossover studies. The issues related to interpreting the observed associations of ambient air pollutants with health outcomes were discussed at the US EPA sponsored workshop on December 13 and 14, 2006 in Chapel Hill, North Carolina, USA. The second session of this workshop focused on the following topics: (1) statistical methodology and study designs that may improve understanding of multipollutant health effects; (2) ambient concentrations as surrogate measures of pollutant mixtures; and (3) source-focused epidemiologic research. New methodology and approaches to better distinguish the effects of individual pollutants include multicity hierarchical modeling and the use of case-crossover analysis to control for copollutants. An alternative approach is to examine the mixture as a whole using principal component analysis. Another important consideration is to what extent the observed health associations are attributable to individual pollutants, which are often from common sources and are correlated, versus the pollutant mixtures that the pollutants are representing. For example, several ambient air concentrations, such as particulate matter mass, nitrogen dioxide, and carbon monoxide, may be serving as surrogate measures of motor vehicle exhaust. Source apportionment analysis is one method that may allow further advancement in understanding the source components that contribute to multipollutant health effects.

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Year:  2007        PMID: 18079769     DOI: 10.1038/sj.jes.7500623

Source DB:  PubMed          Journal:  J Expo Sci Environ Epidemiol        ISSN: 1559-0631            Impact factor:   5.563


  5 in total

1.  Associations between daily mortality in London and combined oxidant capacity, ozone and nitrogen dioxide.

Authors:  M L Williams; R W Atkinson; H R Anderson; F J Kelly
Journal:  Air Qual Atmos Health       Date:  2014-03-22       Impact factor: 3.763

2.  Methodological issues in studies of air pollution and reproductive health.

Authors:  Tracey J Woodruff; Jennifer D Parker; Lyndsey A Darrow; Rémy Slama; Michelle L Bell; Hyunok Choi; Svetlana Glinianaia; Katherine J Hoggatt; Catherine J Karr; Danelle T Lobdell; Michelle Wilhelm
Journal:  Environ Res       Date:  2009-02-11       Impact factor: 6.498

3.  Gender differences and effect of air pollution on asthma in children with and without allergic predisposition: northeast Chinese children health study.

Authors:  Guang-Hui Dong; Tao Chen; Miao-Miao Liu; Da Wang; Ya-Nan Ma; Wan-Hui Ren; Yungling Leo Lee; Ya-Dong Zhao; Qin-Cheng He
Journal:  PLoS One       Date:  2011-07-19       Impact factor: 3.240

4.  Pediatric emergency department visits and ambient Air pollution in the U.S. State of Georgia: a case-crossover study.

Authors:  Qingyang Xiao; Yang Liu; James A Mulholland; Armistead G Russell; Lyndsey A Darrow; Paige E Tolbert; Matthew J Strickland
Journal:  Environ Health       Date:  2016-11-25       Impact factor: 5.984

5.  Prenatal exposure to traffic-related air pollution and ultrasound measures of fetal growth in the INMA Sabadell cohort.

Authors:  Inmaculada Aguilera; Raquel Garcia-Esteban; Carmen Iñiguez; Mark J Nieuwenhuijsen; Agueda Rodríguez; Montserrat Paez; Ferran Ballester; Jordi Sunyer
Journal:  Environ Health Perspect       Date:  2010-01-26       Impact factor: 9.031

  5 in total

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