International Journal of Environmental Research and Public Health · 2014 · 30 citations · 24 references
Precision AgricultureEngineeringOncomelania Hupensis DistributionLand UseEcological Risk AssessmentPotential High RiskPlain RegionsSocial SciencesEnvironmental BiologyEcological IssueBiodiversityWaterway NetworkGeographyEcosystem InteractionLandscape ChangeOncomelania Hupensis HabitatsLandscape EcologyEcosystem FunctioningNatural Resource ManagementLand ManagementLandscape Pattern Analysis
This study aims to identify the landscape ecological determinants related to Oncomelania hupensis distribution, map the potential high risk of O. hupensis habitats at the microscale, and assess the effects of two environmental control strategies. Sampling was performed on 242 snail sites and 726 non-snail sites throughout Qianjiang City, Hubei Province, China. An integrated approach of landscape pattern analysis coupled with multiple logistic regression modeling was applied to investigate the effects of environmental factors on snail habitats. The risk probability of snail habitats positively correlated with patch fractal dimension (FD), paddy farm land proportion, and wetness index but inversely correlated with categorized normalized difference vegetation index (NDVI) and elevation. These findings indicate that FD can identify irregular features (e.g., irrigation ditches) in plain regions and that a moderate NDVI increases the microscale risk probability. Basing on the observed determinants, we predicted a map showing high-risk areas of snail habitats and simulated the effects of conduit hardening and paddy farming land rotation to dry farming land. The two approaches were confirmed effective for snail control. These findings provide an empirical basis for health professionals in local schistosomiasis control stations to identify priority areas and promising environmental control strategies for snail control and prevention.
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