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contributor authorBrown, Heidi E.
contributor authorYoung, Alex
contributor authorLega, Joceline
contributor authorAndreadis, Theodore G.
contributor authorSchurich, Jessica
contributor authorComrie, Andrew
date accessioned2017-06-09T16:47:08Z
date available2017-06-09T16:47:08Z
date copyright2015/12/01
date issued2015
identifier otherams-74040.pdf
identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4216221
description abstracthile estimates of the impact of climate change on health are necessary for health care planners and climate change policy makers, models to produce quantitative estimates remain scarce. This study describes a freely available dynamic simulation model parameterized for three West Nile virus vectors, which provides an effective tool for studying vectorborne disease risk due to climate change. The Dynamic Mosquito Simulation Model is parameterized with species-specific temperature-dependent development and mortality rates. Using downscaled daily weather data, this study estimates mosquito population dynamics under current and projected future climate scenarios for multiple locations across the country. Trends in mosquito abundance were variable by location; however, an extension of the vector activity periods, and by extension disease risk, was almost uniformly observed. Importantly, midsummer decreases in abundance may be offset by shorter extrinsic incubation periods, resulting in a greater proportion of infective mosquitoes. Quantitative descriptions of the effect of temperature on the virus and mosquito are critical to developing models of future disease risk.
publisherAmerican Meteorological Society
titleProjection of Climate Change Influences on U.S. West Nile Virus Vectors
typeJournal Paper
journal volume19
journal issue18
journal titleEarth Interactions
identifier doi10.1175/EI-D-15-0008.1
journal fristpage1
journal lastpage18
treeEarth Interactions:;2015:;volume( 019 ):;issue: 018
contenttypeFulltext


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