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Object-Based Image Analysis Detection of Aquatic Vegetation, Lake Erie, Western Basin, 2018

Dates

Start Date
2018-08-23
End Date
2018-08-24
Publication Date

Citation

Hanson, J.L., and Hoy, E.E., 2021, Object-Based Image Analysis Detection of Aquatic Vegetation, Lake Erie, 2018: U.S. Geological Survey data release, https://doi.org/10.5066/P936I3YN.

Summary

The USGS developed the second in a series of informative spatial distribution datasets of submersed aquatic vegetation (SAV) in the western basin of Lake Erie. The second dataset was developed by object-based image analysis of high-resolution imagery (US waters < 6 meters deep) collected during peak biomass in 2018 to allow assessments of changes in SAV distribution. Assessing SAV abundance may contribute to inform the long-term impacts of Grass Carp, Common Carp, eutrophication, wind fetch and sedimentation on vegetation communities throughout Lake Erie and the impact these stressors may have on other organisms in the ecosystem. These data may also help inform the deployment of toxic bait deployments targeting Grass Carp. Bait placement [...]

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Shapefile: WLakeErie_AquaticVeg_2018.zip
WLakeErie_AquaticVeg_2018.dbf 521.5 KB
WLakeErie_AquaticVeg_2018.prj 424 Bytes
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WLakeErie_AquaticVeg_2018.shp.xml
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WLakeErie_AquaticVeg_2018.shx 50.96 KB

Purpose

USGS is completing the second phase for developing informative spatial distribution datasets of the western basin of Lake Erie. To assess changes in SAV distribution, a second dataset using high-resolution imagery (US waters < 6 meters deep) collected during peak biomass in 2018 was analyzed. While these efforts contribute to the assessment of long-term impacts of Grass carp on vegetation communities throughout Lake Erie and the impact this may have on other organisms in the ecosystem, they also help inform the deployment of Grass carp-specific toxic bait deployments. Bait deployments can be strategically placed based on the spatial distribution and diet preferences of Grass carp to maximize control efforts while reducing impacts to native species.

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  • Upper Midwest Environmental Sciences Center (UMESC)

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