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We defined forest security cover for ungulates as forested areas with a canopy closure above 75% [54] and using a GIS model of canopy closure [55] we calculated the distance of each animal location to forest cover with 75% canopy closure.
In the first paper, individual exposure to traffic was assessed using a GIS model and a traffic exposure classification scheme [ 9].
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The artificial groundwater recharge suitability map using a GIS-based fuzzy model is presented in Fig. 9.
A primary strength of our study is the estimation of residential pesticide exposure using a GIS-based computer model and not subjects' self-reports; therefore, our residential estimates are unlikely to be biased by differential recall.
Nonpoint source pollutants were modeled using a GIS-based empirical deterministic model parameterized with multi-year land cover data to quantify fire-induced increases in transport to the nearshore environment.
The building energy use was estimated using a GIS-based building energy simulation model in conjunction with Department of Energy/Energy Information Administration survey data, the Assessor's parcel data, GIS floor areas data, and remote sensing-derived building height data.
Integrated assessment of these thematic maps using a GIS-based-fuzzy logic model proved a suitable method to identify the best artificial recharge sites.
Jaguar corridors across the range of the species were initially identified using a GIS-based least-cost corridor model.
We implemented an integrated ecological assessment using a GIS-based decision support system model for Upper Delaware Scenic and Recreational River (UPDE) and Delaware Water Gap National Recreation Area (DEWA)—national park units with the mid-Atlantic region of the United States.
We demonstrate the application of a population viability model for ovenbirds (Seiurus aurocapillus) that is linked to realistic landscape simulations using a GIS-based habitat suitability index (HSI) model.
Specifically, we studied the potential breeding between natural and cultivated poplar populations in the Mediterranean environment to gain insight into spontaneous hybridization events between exotic and native poplars; we also used a GIS-based model to evaluate the potential threats related to an intensive land use management.
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