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Association of Cardiovascular Responses in Mice with Source-apportioned PM2.5 Air Pollution in Beijing
Author(s) -
Polina Maciejczyk,
Lan Jin,
JingShiang Hwang,
Xinbiao Guo,
Mianhua Zhong,
George Thurston,
Qingshan Qu,
Junfeng Zhang,
Qinghua Sun,
LungChi Chen
Publication year - 2018
Publication title -
aerosol and air quality research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.866
H-Index - 55
eISSN - 2071-1409
pISSN - 1680-8584
DOI - 10.4209/aaqr.2017.11.0504
Subject(s) - heart rate variability , beijing , heart rate , particulates , environmental science , pollution , air pollution , environmental chemistry , medicine , chemistry , ecology , biology , geography , blood pressure , archaeology , china
In this study, factor analysis and mass regression were used to identify four fine particulate matter sources and estimate their contributions to the ambient air pollution in Beijing. The identified sources were traffic re-suspended soil, mixed industrial sources, oil combustion, and secondary sulfate. The estimated source contributions were then introduced into two models as exposure variables to explore the relationships between cardiovascular responses in mice and PM exposures. We observed that PM2.5 has a small negative acute effect on heart rate, but the individual source factors showed much more significant effects. Traffic re-suspended soil had the most significant effect on heart rate, with a positive contribution on the day of exposure and a negative one on day lag 1. Acute heart rate variability outcomes were better explained by the total PM2.5 than by the source components. Chronic effects were observed as a decreased heart rate but an increased number of heart rate variability outcomes.

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