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Full-Text Articles in Life Sciences
Scalability And Performance Tradeoffs In Quantifying Relationships Between Elevation And Tidal Wetland Plant Communities, James R. Holmquist, Lisa Schile-Beers, Kevin Buffington, Meng Lu, Thomas J. Mozdzer, Jefferson Riera, Donald E. Weller, Meghan Williams, J Patrick Megonigal
Scalability And Performance Tradeoffs In Quantifying Relationships Between Elevation And Tidal Wetland Plant Communities, James R. Holmquist, Lisa Schile-Beers, Kevin Buffington, Meng Lu, Thomas J. Mozdzer, Jefferson Riera, Donald E. Weller, Meghan Williams, J Patrick Megonigal
Biology Faculty Research and Scholarship
Elevation is a major driver of plant ecology and sediment dynamics in tidal wetlands, so accurate and precise spatial data are essential for assessing wetland vulnerability to sea-level rise and making forecasts. We performed survey-grade elevation and vegetation surveys of the Global Change Research Wetland, a brackish microtidal wetland in the Chesapeake Bay estuary, Maryland (USA), to both intercompare unbiased digital elevation model (DEM) creation techniques and to describe niche partitioning of several common tidal wetland plant species. We identified a tradeoff between scalability and performance in creating unbiased DEMs, with more data-intensive methods such as kriging performing better than …