EventsMOL2NET'17, Conference on Molecular, Biomed., Comput. & Network Science and Engineering, 3rd ed.
Published
This submission belongs to the session 03. USEDAT-03: USA-EU Data Analysis Training Prog. Work., Cambridge, UK-Bilbao, Spain-Duluth, USA, 2017 of the event MOL2NET'17, Conference on Molecular, Biomed., Comput. & Network Science and Engineering, 3rd ed.
Published date
20 Dec, 2017
Citation
David Quesada, Paula De la Plaza, Time series analysis and forecast of respiratory conditions in Florida, in Proceedings of MOL2NET'17, Conference on Molecular, Biomed., Comput. & Network Science and Engineering, 3rd ed., 15 January–15 December 2017, MDPI: Basel, Switzerland, doi: 10.3390/mol2net-03-05103
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Time series analysis and forecast of respiratory conditions in Florida

Paula De la Plaza 2
1. School of Science, Technology and Engineering Management, St. Thomas University, Miami Gardens, FL 33054, USA
2. Miami Dade College, North Campus, Miami FL 33167, USA
Abstract

In an effort to understand conditions triggering asthma episodes and therefore create a asthma risk index that might be valuable to both patients and medical practitioners, 6 different counties in Florida were chosen, 3 of them in the southeast region and 3 located in the central region. The number of cases at emergency rooms due to asthma and other respiratory conditions were provided by the Department of Health BRACE project and analyzed statistically looking for potential associations with weather and environmental conditions. Weather information was obtained from airports through Wolfram Language data mining interface, and environmental parameters (Ozone level and particulate matter) from the Environmental Protection Agency measuring stations. Correlation analysis was performed with both, linear and logistic models and using software RStudio. Additionally, ARIMA forecasting modeling was implemented within RStudio to predict future events based on previous records and compared with a Machine Learning approach.

Keywords
asthma
risk forecast
time series analysis
weather conditions
biometeorology
ozone levels
particulate matter
Poster
mol2net-03_PDPlaza-DQ.pdf
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