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Geohealth|December 8, 2021
No Consistent Link Between Dust Storms and Valley Fever (Coccidioidomycosis)Andrew C ComrieEnvironmental Health Perspectives|June 3, 2005
Climate factors influencing coccidioidomycosis seasonality and outbreaksAndrew C ComrieJournal of the Air & Waste Management Association (1995)|September 29, 2005
Extending the Kolmogorov-Zurbenko filter: application to ozone, particulate matter, and meteorological trendsErika K Wise, Andrew C ComriePlos One|June 25, 2011
Coccidioidomycosis incidence in Arizona predicted by seasonal precipitationJames D Tamerius, Andrew C ComrieInternational Journal of Biometeorology|March 21, 2003
Modeling valley fever (coccidioidomycosis) incidence on the basis of climate conditionsKorine N Kolivras, Andrew C ComrieInternational Journal of Biometeorology|August 5, 2010
Modeled response of the West Nile virus vector Culex quinquefasciatus to changing climate using the dynamic mosquito simulation modelCory W Morin, Andrew C ComrieProceedings of the National Academy of Sciences of the United States of America|September 11, 2013
Regional and seasonal response of a West Nile virus vector to climate changeCory W Morin, Andrew C ComrieAnnals of the New York Academy of Sciences|March 9, 2007
Assessment of climate-coccidioidomycosis model: model sensitivity for assessing climatologic effects on the risk of acquiring coccidioidomycosisAndrew C Comrie, Mary F GlueckJournal of the Air & Waste Management Association (1995)|September 18, 2004
Real-time ozone mapping using a regression-interpolation hybrid approach, applied to Tucson, ArizonaJoseph S Abraham, Andrew C ComrieEnvironmental Pollution (Barking, Essex : 1987)|July 20, 2002
Predictive mapping of air pollution involving sparse spatial observationsJeremy E Diem, Andrew C ComriePageof 2