Literature DB >> 12728364

The lag-effect pattern in the relationship of particulate air pollution to daily mortality in Seoul, Korea.

Ho Kim1, Yoonsang Kim, Yun-Chul Hong.   

Abstract

To assess differences in the lag-effect pattern in the relationship between particulate matter less than 10 microm in aerodynamic diameter (PM(10)) and cause-specific mortality in Seoul, Korea, from January 1995 to December 1999, we performed a time-series analysis. We used a generalized additive Poisson regression model to control for time trends, temperature, humidity, air pressure, and the day of the week. The PM(10) effect was estimated on the basis of the time-series models using the 24-h means and the quadratic distributed-lag models using a cumulative 6-day effect. One interquartile range increase in the 6-day cumulative mean of PM(10) (43.12 microg/m(3)) was associated with an increase in non-accidental deaths [3.7%, 95% confidence interval (CI): 2.1, 5.4], respiratory disease (13.9%, 95% CI: 6.8, 21.5), cardiovascular disease (4.4%, 95% CI: -1.0, 9.0), and cerebrovascular disease (6.3%, 95% CI: 2.3, 10.5). We found the following patterns in the disease-specific lag-effect window: respiratory mortality was more affected by air pollution level on the day of death, whereas cardiovascular deaths were more affected by the previous day's air pollution level. Cerebrovascular deaths were simultaneously associated with the air pollution levels of the same day and the previous day. The patterns in the lag effect from the distributed-lag models were similar to those of a series of time-series models with 24-h means. These results contribute to our understanding of how exposure to air pollution causes adverse health effects.

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Year:  2003        PMID: 12728364     DOI: 10.1007/s00484-003-0176-0

Source DB:  PubMed          Journal:  Int J Biometeorol        ISSN: 0020-7128            Impact factor:   3.787


  18 in total

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5.  Short-term effects of ambient sulphur dioxide and particulate matter on mortality in 12 European cities: results from time series data from the APHEA project. Air Pollution and Health: a European Approach.

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7.  Air pollution and daily mortality in the Coachella Valley, California: a study of PM10 dominated by coarse particles.

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8.  Is air pollution a risk factor for low birth weight in Seoul?

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10.  Air pollution and daily mortality in Seoul and Ulsan, Korea.

Authors:  J T Lee; D Shin; Y Chung
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  18 in total

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4.  The Impact of Air Pollution on Healthcare Expenditure for Respiratory Diseases: Evidence from the People's Republic of  China.

Authors:  Lele Li; Tiantian Du; Chi Zhang
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5.  Ambient air pollution and risk for ischemic stroke and transient ischemic attack.

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6.  Weather-induced ischemia and arrhythmia in patients undergoing cardiac rehabilitation: another difference between men and women.

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7.  Association between PM10 and specific circulatory system diseases in China.

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8.  Machine Learning Models for Predicting the Occurrence of Respiratory Diseases Using Climatic and Air-Pollution Factors.

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