Use of weather types to analyze the simultaneous abundance of ozone, PM2.5 and allergenic tree pollen: focusing on the potential impact on asthma hospitalization in Montreal, Canada
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Published:2024-08-14
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ISSN:0393-5965
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Container-title:Aerobiologia
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language:en
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Short-container-title:Aerobiologia
Abstract
AbstractAir pollution, aeroallergens, and weather conditions can worsen health symptoms such as asthma. While studying the impact of these factors, the use of weather types (WTs) rather than individual meteorological variables (such as temperature, relative humidity, wind, cloudiness, or precipitation) is more appropriate since it is holistic and integrative. Moreover, several studies have shown that the human body responds to WTs, rather than to individual meteorological variables. In this study, the use of Sheridan’s WTs is adopted and compared with a so-called “In-House” WTs. The analysis presented here deals with the links between asthma hospitalization and the synergy among air pollution, birch tree pollen and WTs. Knowing the daily WT in a region can provide valuable information for health planning and management of asthma hospitalization, emergency visits and sub-clinical symptoms in the population. This is because air pollution and birch pollen both occur within only a few specific WTs, such as the TROWAL (trough of warm air aloft) or tropical airmasses. These specific WTs need to be more scrutinized since, in Montreal, these are often linked with higher daily mean hospitalization. The findings of this study emphasize the importance of specific WTs in determining the maximum daily concentrations of ozone, fine particles, Betula pollen concentrations and health effects such as asthma hospitalization. Moreover, the use of data filters in the analysis (for temperature and total count of hospitalization) also reveals new insights in the complex nature of asthma disease and its relationship with environmental factors.
Funder
Environment & Climate Change Canada
Publisher
Springer Science and Business Media LLC
Reference70 articles.
1. Ahlholm, J. U., Helander, M. L., & Savolainen, J. (1998). Genetic and environmental factors affecting the allergenicity of birch pollen (Betula pubescens ssp. Czerepanobii (Orl) Hämet-Ahti). Clinical and Experimental Allergy, 28, 1384–1388. 2. Anderegg, W. R. L., Abatzoglou, J. T., Anderegg, L. D. L., Bielory, L., Kinney, P. L., & Ziska, L. (2021). Anthropogenic climate change is worsening North American pollen seasons. Proceedings of the National Academy of Sciences of the United States of America, 118(7), e2013284118. https://doi.org/10.1073/pnas.2013284118 3. Bapikee, C. (2005). Contenu pollinique atmosphérique à Montréal (Québec) et les variations climatiques interannuelles de 1985 à 1988. Mémoire de maîtrise. Département de géographie de l’Université de Montréal. Available at: https://papyrus.bib.umontreal.ca/xmlui/bitstream/handle/1866/17600/Bapikee_Chaina_2005_memoire.pdf?sequence=1. 4. Boezen, H. M., van der Zee, S. C., Postma, D. S., Vonk, J. M., Gerritsen, J., Hoek, G., Brunekreef, B., Rijcken, B., & Schouten, J. P. (1999). The effects of ambient air pollution on upper and lower respiratory symptoms and peak expiratory flow in children. Lancet, 353, 874–878. 5. Brauer, M., Hoek, G., Smit, H. A., de Jongste, J. C., Gerritsen, J., et al. (2007). Air pollution and development of asthma, allergy and infections in a birth cohort. European Respiratory Journal, 29, 879–888.
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