{"accessLevel": "public", "bureauCode": ["010:12"], "contactPoint": {"@type": "vcard:Contact", "fn": "Camille L. Stagg", "hasEmail": "mailto:staggc@usgs.gov"}, "description": "We assessed the resilience of wetlands to sea-level rise along a transitional gradient from tidal freshwater forested wetland (TFFW) to oligohaline marsh by measuring processes controlling wetland elevation. We identified fundamental differences in how resilience is maintained across wetland community types, which have important implications for management activities that aim to restore or conserve resilient systems.", "distribution": [{"@type": "dcat:Distribution", "description": "The metadata original format", "downloadURL": "https://data.usgs.gov/datacatalog/metadata/USGS.5820c66de4b080404e711965.xml", "format": "XML", "mediaType": "text/xml", "title": "Original Metadata"}, {"@type": "dcat:Distribution", "accessURL": "https://doi.org/10.5066/F7W66HXB", "description": "Landing page for access to the data", "format": "XML", "mediaType": "application/http", "title": "Digital Data"}], "identifier": "http://datainventory.doi.gov/id/dataset/USGS_5820c66de4b080404e711965", "keyword": ["oligohaline marsh", "South Carolina", "sea-level rise", "Waccamaw River", "Savannah River", "USGS:5820c66de4b080404e711965", "coastal wetlands", "tidal freshwater forested wetland", "resilience", "wetland RSLR", "elevation change", "accretion", "Georgia"], "modified": "2020-08-30T00:00:00Z", "publisher": {"@type": "org:Organization", "name": "U.S. Geological Survey"}, "spatial": "-81.15849459, 32.153122271, -79.089969903, 33.569861584", "theme": ["geospatial"], "title": "Elevation change along a coastal wetland landscape gradient from tidal freshwater forested wetland to oligohaline marsh in the Southeastern U.S.A. (2009-2014) data"}