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Original Articles

Remote Sensing of Vegetation Pattern and Condition to Monitor Changes in Everglades Biogeochemistry

Pages 64-91 | Published online: 19 Feb 2011

REFERENCES

  • White , P. S. 1994 . “ Synthesis: Vegetation pattern and process in the Everglades ecosystem ” . In Everglades: The ecosystem and its restoration , Edited by: Davis , S. M. and Ogden , J. C. 445 – 458 . Delray Beach, FL : St Lucie .
  • Schlesinger , W. H. 1991 . Biogeochemistry: An analysis of global change , San Diego, CA : Academic Press .
  • 1999 . “ Comprehensive Everglades Restoration Plan ” . In Central and southern Florida project comprehensive review study , Washington, DC : U.S. Army Choir of Engineers .
  • U.S. Department of the Interior . 2005 . DOI Science in support of ecosystem restoration, preservation, and protection in South Florida , Washington, DC : Author .
  • 2006 . “ Comprehensive Everglades Restoration Plan ” . In Evaluation of the applicability of remote sensing technologies for RECOVER monitoring and assessment activities , West Palm Beach, FL : South Florida Water Management District and U.S. Army Corps of Engineers .
  • Doren , R. F. , Armentano , T. V. , Whiteaker , L. D. and Jones , R. D. 1997 . Marsh vegetation patterns and soil phosphorus gradients in the Everglades ecosystem . Aquatic Botany , 56 : 18
  • Childers , D. L. , Doren , R. F. , Jones , R. , Noe , G. B. , Rugge , M. and Scinto , L. J. 2003 . Decadal change in vegetation and soil phosphorus pattern across the Everglades landscape . Journal of Environmental Quality , 32 : 19
  • King , R. S. , Richardson , C. J. , Urban , D. L. and Romanowicz , E. A. 2004 . Spatial dependency of vegetation-environment linkages in an anthropogenically influenced wetland ecosystem . Ecosystems , 7 : 23
  • Hagerthey , S. E. , Newman , S. , Rutchey , K. , Smith , E. P. and Godin , J. 2008 . Multiple regime shifts in a subtropical peatland: community specific thresholds to eutrophication . Ecological Monographs , 78 ( 4 ) : 19
  • Powers , E. 2005 . Meta-stable states of vegetative habitats in water conservation area 3A, Everglades , Gainesville, FL : University of Florida .
  • Zweig , C. L. and Kitchens , W. M. 2008 . Effects of landscape gradients on wetland vegetation communities: Information for large-scale restoration . Wetlands , 28 ( 4 ) : 11
  • Loveless , C. M. 1959 . A study of the vegetation of the Florida Everglades . Ecology , 40 ( 1 ) : 1
  • Ewe , S. M. L. , Gaiser , E. E. , Childers , D. L. , Iwaniec , D. , Rivera-Monroy , V. H. and Twilley , R. R. 2006 . Spatial and temporal patterns of aboveground net primary productivity (ANPP) along two freshwater-estuarine transects in the Florida coastal Everglades . Hydrobiologia , 569 : 16
  • Givnish , T. J. , Volin , J. C. , Owen , V. D. , Volin , V. C. , Muss , J. D. and Glaser , P. H. 2008 . Vegetation differentiation in the patterned landscape of the central Everglades: Importance of local and landscape drivers . Global Ecology and Biogeography , 17 : 18
  • Armentano , T. V. , Sah , J. P. , Ross , M. S. , Jones , D. T. , Cooley , H. C. and Smith , C. S. 2006 . Rapid responses of vegetation to hydrological changes in Taylor Slough, Everglades National Park, Florida, USA . Hydrobiologia , 569 : 293
  • Ross , M. S. , Mitchell-Bruker , S. , Sah , J. P. , Stothoff , S. , Ruiz , P. L. , Reed , D. L. , Jayachandran , K. and Coultas , C. L. 2006 . Interaction of hydrology and nutrient limitation in the ridge and slough landscape of the southern Everglades . Hydrobiologia , 569 : 22
  • Smith , S. M. , Leeds , J. A. , McCormick , P. V. , Garrett , P. B. and Darwish , M. 2008 . Sawgrass (Cladium jamaicense) responses as early indicators of low-level phosphorus enrichment in the Florida Everglades . Wetlands Ecology and Management , 17 : 291
  • Davis , J. H. 1943 . Natural features of southern Florida, especially the vegetation, and the Everglades , Tallahassee, FL : Florida Geological Survey .
  • Olmsted , I. and Armentano , T. V. 1997 . Vegetation of shark slough, Everglades National Park , Homestead, FL : South Florida Natural Resource Center .
  • Doren , R. F. , Rutchey , K. and Welch , R. 1999 . The Everglades: A perspective on the requirements and applications for vegetation map and database products . Photogrammetric Engineering and Remote Sensing , 65 ( 2 ) : 7
  • Johnson , L. 1958 . “ A survey of the water resources of the Everglades National Park, Florida ” . In Report to the Superintendent, Everglades National Park and the U.S. National Park Service , 36 Washington, DC : National Park Service .
  • Kolipinski , M. C. and Higer , A. L. 1969 . “ Some aspects of the effects of the quantity and quality of water on biological communities in Everglades National Park ” . In U.S. Geological Survey Open File Report , 97 Tallahassee, FL : U.S. Geological Survey .
  • McPherson , B. F. 1973 . Vegetation in relation to water depth in Conservation Area 3, Florida , Tallahassee, FL : U.S. Geological Survey .
  • Olmsted , I. C. , Robertson , W. B. , Johnson , J. and Bass , O. L. Jr. 1983 . Vegetation of Long Pine Key, Everglades National Park, in South Florida Research Center Technical Report , Homestead, FL : South Florida Natural Resources Center .
  • Rose , M. and Draughn , F. 1991 . GIS applications in the Everglades National Park . GISworld , 4 ( 3 ) : 49
  • Zahina , J. G. and Kramp , J. 2004 . “ Vegetation communities within the Loxahatchee Slough: A GIS-based analysis of baseline conditions (1995–2000) before the construction and operation of the G-160 structure ” . In Technical Publication , West Palm Beach, FL : South Florida Water Management District .
  • Fuller , D. O. 2005 . Remote detection of invasive Melaleuca trees (Melaleuca quinquenervia) in South Florida with multispectral IKONOS imagery . International Journal of Remote Sensing , 26 ( 5 ) : 6
  • McCormick , C. M. 1999 . Mapping exotic vegetation in the Everglades from large-scale aerial photographs . Photogrammetric Engineering and Remote Sensing , 65 ( 2 ) : 6
  • Wu , Y. , Rutchey , K. , Wang , N. and Godin , J. 2006 . The spatial pattern and dispersion of Lygodium microphyllum in the Everglades wetland ecosystem . Biological Invasions , 8 : 10
  • Browder , J. A. , Gleason , P. J. and Swift , D. R. 1994 . “ Periphyton in the Everglades: Spatial variation, environmental correlates, and ecological implications ” . In Everglades: The ecosystem and its restoration , Edited by: Davis , S. M. and Ogden , J. C. 379 – 418 . Delray Beach, FL : St. Lucie Press .
  • U.S. Fish and Wildlife Service . 2008 . Digital wetlands data , Middleton, WI : Author .
  • Pearlstine , L. G. , Smith , S. E. , Brandt , L. , Allen , C. , Kitchens , W. and Stenberg , J. 2002 . Assessing statewide biodiversity in the Florida GAP analysis project . Journal of Environmental Management , 66 : 17
  • 1985 . “ Florida Department of Transportation ” . In Florida land use, cover and forms classification system , Tallahassee, FL : Department of Transportation, State Topographic Bureau, Thematic Mapping Section .
  • Zahina , J. G. , Said , W. P. , Grein , R. and Duever , M. 2007 . Pre-development vegetation communities of southern Florida , West Palm Beach, FL : South Florida Water Management District .
  • Carter , V. , Rybicki , N. B. , Reel , J. T. , Ruhl , H. A. , Stewart , D. A. and Jones , J. W. Paper presented at the Third International Symposium on Ecohydraulics . Salt Lake City. Classification of vegetation for surface-water flow models in Taylor Slough, Everglades National Park , Utah .
  • Rutchey , K. , Schall , T. and Sklar , F. 2008 . Development of vegetation maps for assessing Everglades restoration progress . Wetlands , 28 ( 3 ) : 11
  • Rutchey , K. , Schall , T. N. , Doren , R. F. , Atkinson , A. , Ross , M. S. , Jones , D. T. , Madden , M. , Vilchek , L. , Bradley , K. A. , Snyder , J. R. , Burch , J. N. , Pernas , T. , Witcher , B. , Pyne , M. , White , R. , Smith , T. J. III , Sadle , J. , Smith , C. S. , Patterson , M. E. and Gann , G. D. 2006 . Vegetation classification for South Florida Natural Areas , St. Petersburg, FL : U.S. Geological Survey .
  • Ustin , S. L. , Roberts , D. A. , Gamon , J. A. , Asner , G. P. and Green , R. O. 2004 . Using imaging spectroscopy to study ecosystem processes and properties . BioScience , 54 : 523
  • Clark , R. N. 1999 . “ Spectroscopy of rocks and minerals, and principles of spectroscopy ” . In Manual of remote sensing , Edited by: Rencz , A. N. 3 – 58 . New York : Wiley .
  • Curran , P. J. 1989 . Remote sensing of foliar chemistry . Remote Sensing of Environment , 30 : 8
  • Curran , P. J. , Dungan , J. L. and Peterson , D. L. 2001 . Estimating the foliar biochemical concentration of leaves with reflectance spectroscopy—Testing the Kokaly and Clark methodologies . Remote Sensing of Environment , 76 : 11
  • Kokaly , R. F. and Clark , R. N. 1999 . Spectroscopic determination of leaf biochemistry using band-depth analysis of absorption features and stepwise multiple linear regression . Remote Sensing of Environment , 67 : 216
  • Ramsey , E. W. and Jenson , J. R. 1996 . Remote sensing of mangrove wetlands: Relating canopy spectra to site-specific data . Photogrammetric Engineering and Remote Sensing , 62 ( 8 ) : 9
  • Hirano , A. , Madden , M. and Welch , R. 2003 . Hyperspectral image data for mapping wetland vegetation . Wetlands , 23 ( 2 ) : 12
  • Lass , L. W. and Prather , T. R. 2004 . Detecting the locations of Brazilian Pepper trees in the Everglades with a hyperspectral sensor . Weed Technology , 18 : 5
  • Lowe Engineers and SAIC . 2003 . Kissimmee River restoration remote sensing pilot study project Atlanta, , GA, USA
  • Proisy , C. , Mougin , E. , Fromard , F. , Trichon , V. and Karam , M. A. 2002 . On the influence of canopy structure on the radar backscattering of mangrove forests . International Journal of Remote Sensing , 23 ( 20 ) : 13
  • Simard , M. 2006 . Using shuttle radar topography mission elevation data to map mangrove forest height in the Caribbean . IEEE International Geoscience and Remote Sensing Symposium , 31 : 1714
  • Simard , M. , Zhang , K. , Rivera-Monroy , V. H. , Ross , M. S. , Ruiz , P. L. , Castañeda-Moya , E. , Twilley , R. R. and Rodriguez , E. 2006 . Mapping height and biomass of mangrove forests in Everglades National Park with SRTM elevation data . Photogrammetric Engineering and Remote Sensing , 72 ( 3 ) : 12
  • Houle , P. A. , Zhang , K. , Ross , M. S. and Simard , S. 2006 . Landscape structure in the pine forests of Everglades National Park . IEEE International Geoscience and Remote Sensing Symposium , 31 : 1960
  • Chiang , C. , Craft , C. , Rogers , D. W. and Richardson , C. J. 2000 . Effects of 4 years of nitrogen and phosphorus additions on Everglades plant communities . Aquatic Botany , 68 ( 1 ) : 61
  • Jensen , J. R. , Rutchey , K. , Koch , M. S. and Sunil , N. 1995 . Inland wetland change detection in the Everglades water conservation area 2A using a time series of normalized remotely sensed data . Photogrammetric Engineering and Remote Sensing , 61 : 199
  • Silva , T. S. F. , Costa , M. P. F. , Melack , J. M. and Novo , E. M. L. M. 2008 . Remote sensing of aquatic vegetation: Theory and applications . Environmental Monitoring and Assessment , 140 : 131
  • Rutchey , K. and Vilchek , L. 1998 . Air photointerpretation and satellite imagery analysis techniques for mapping cattail coverage in a northern Everglades impoundment . Photogrammetric Engineering and Remote Sensing , 64 : 7
  • Obeysekera , J. and Rutchey , K. 1997 . Selection of scale for Everglades landscape models . Landscape Ecology , 12 ( 1 ) : 11
  • Brandt , L. A. , Portier , K. M. and Kitchens , W. M. 2000 . Patterns of change in tree islands in Arthur R. Marshall Loxahatchee National Wildlife Refuge from 1950 to 1991 . Wetlands , 20 ( 1 ) : 1
  • Wu , Y. , Wang , N. and Rutchey , K. 2005 . An analysis of spatial complexity of ridge and slough patterns in the Everglades ecosystem . Ecological Complexity , 3 ( 3 ) : 10
  • Finn , M. , Iglehart , J. and Kangas , P. Paper presented at the 24th Annual Conference on Ecosystem Restoration and Creation . Plant City, FL. A taxonomy of spatial forms of mangrove dieoffs in southwest Florida ,
  • Zhang , K. 2008 . Identification of gaps in mangrove forests with airborne LIDAR . Remote Sensing of Environment , 112 : 16
  • Davis , B. C. and Jensen , J. R. 1998 . Remote sensing of mangrove biophysical characteristics . GeoCarto International , 13 ( 4 ) : 9
  • Jensen , J. R. , Lin , H. , Yang , X. , Ramsey , E III , Davis , B. A. and Thoernke , C. W. 1991 . The measurement of mangrove characteristics in southwest Florida using SPOT multispectral data . GeoCarto International , 2 : 8
  • Carter , V. , Ruhl , H. A. , Rybicki , N. B. , Reel , J. T. and Gammon , P. T. 1999 . Vegetative resistance to flow in the south Florida: Summary of vegetation sampling at sites NESRS3 and P33, Shark River Slough, April, 1996 , Reston, VA : U.S. Geological Survey .
  • Carter , V. , Reel , J. T. , Rybicki , N. B. , Ruhl , H. A. , Gammon , P. T. and Lee , J. K. 1999 . Vegetative resistance to flow in the south Florida: summary of vegetation sampling at sites NESRS3 and P33, Shark River Slough, November, 1996 , Reston, VA : U.S. Geological Survey .
  • Anderson , J. 1997 . Mapping sawgrass densities in the Florida Everglades using spectral data and digital multispectral video , Washington, DC : U.S. Army Corp of Engineers, Army Engineering Strategic Studies Center .
  • Jones , J. W. 2001 . Image and in situ data integration to derive sawgrass density for surface-flow modeling in the Everglades . International Association of Hydrologic Sciences , 267 : 6
  • Gunderson , L. H. 1994 . “ Vegetation of the Everglades: Determinants of community ” . In Everglades: The ecosystem and its restoration , Edited by: Davis , S. M. and Ogden , J. C. 323 – 340 . Delray Beach, FL : St. Lucie Press .
  • Wu , Y. , Sklar , F. H. and Rutchey , K. 1997 . Analysis and simulations of fragmentation patterns in the Everglades . Ecological Applications , 7 ( 1 ) : 9
  • Richardson , J. R. , Bryand , W. L. , Kitchens , W. M. , Mattson , J. E. and Pope , K. R. 1990 . An evaluation of refuge habitats and relationship to water quality, quantity and hydroperiod, a synthesis report , Boynton Beach, FL : Loxahatchee National Wildlife Refuge .
  • Asner , G. P. 1998 . Biophysical and biochemical sources of variability in canopy reflectance . Remote Sensing of Environment , 64 : 19
  • Jones , J. W. 2010 . Unpublished Everglades spectral library , Reston, VA : U.S. Geological Survey .
  • Childers , D. L. , Jones , R. D. , Trexler , J. C. , Buzzelli , C. , Dailey , S. , Edwards , A. L. , Gaiser , E. E. , Jayachandaran , K. , Kenne , A. , Lee , D. , Meeder , J. F. , Pechmann , J. H. K. , Renshaw , A. , Richards , J. , Rugge , M. , Scinto , L. J. , Sterling , P. and Van Gelder , W. 2002 . “ Quantifying the effects of low-level phosphorus additions on unenriched Everglades wetlands with in situ flames and phosphorus dosing ” . In The Everglades, Florida Bay, and coral reefs of the Florida Keys: An ecosystem sourcebook , Edited by: Porter , J. W. and Porter , K. G. 128 – 150 . Boca Raton, FL : CRC Press .
  • McCormick , P. V. , Newman , S. , Miao , S. , Gawlik , D. E. , Marley , D. , Reddy , K. R. and Fontaine , T. D. 2002 . “ Effects of anthropogenic phosphorous inputs on the Everglades ” . In The Everglades, Florida Bay, and coral reefs of the Florida Keys: An ecosystem sourcebook , Edited by: Porter , J. W. and Porter , K. G. 83 – 126 . Boca Raton, FL : CRC Press .
  • Liu , G. , Cai , Y. , Phillippi , T. , Kalla , P. , Scheidt , D. , Richards , J. , Scinto , L. and Appleby , C. 2008 . Distribution of total methylmercury in different ecosystem compartments in the Everglades: Implications for mercury bioaccumulation . Environmental Pollution , 153 : 8
  • Olson , M. L. , Cleckner , L. B. , Hurley , J. P. , Krabbenhoft , D. P. and Heelan , T. W. 1997 . Resolution of matrix effects on analysis of total and methyl mercury in aqueous samples from the Florida Everglades . Fresenious Journal of Analytical Chemistry , 358 : 4
  • Jones , J. W. 2000 . In situ and remotely sensed data collection and analysis for periphyton mapping in the Everglades . EOS Transactions , 81 ( 48 ) : 1
  • Rivero , R. G. , Grunwald , S. , Binford , M. W. and Osborne , T. Z. 2009 . Integrating spectral indices into prediction models of soil phosphorus in a subtropical wetland . Remote Sensing of Environment , 113 : 13
  • U.S. Geological Survey . 2010 . USGS global visualization viewer Retrieved from http://glovis.usgs.gov/
  • U.S. Department of the Interior . 2005 . DOI science in support of ecosystem restoration, preservation, and protection in south Florida , Washington, DC : Author .
  • Environmental , U. S. 2001 . South Florida ecosystem assessment: Phase I/II (technical report)—Everglades stressor interactions: Hydropatterns, eutrophication, habitat alteration, and mercury contamination , Washington, DC : Author . Protection Agency
  • Running , S. W. , Loveland , T. R. and Pierce , L. L. 1994 . A vegetation classification logic based on remote sensing for use in global biogeochemical models . AMBIO , 23 ( 1 ) : 5
  • McMahon , G. , Benjamin , S. P. , Clarke , K. , Findley , J. E. , Fisher , R. N. , Graf , W. L. , Gundersen , L. C. , Jones , J. W. , Loveland , T. R. , Roth , K. S. , Usery , L. and Wood , N. J. 2005 . Geography for a changing world: A science strategy for the geographic research of the U.S. Geological Survey , Reston, VA : U.S. Geological Survey .
  • Ries , L. , Fletcher , R. J. , Battin , J. and Sisk , T. D. 2004 . Ecological responses to habitat edges: Mechanisms, modes, and variability explained . Annual Review of Ecology and Systematics , 35 : 32
  • Moran , M. S. , Peters , D. C. , McClaran , M. P. , Nichols , M. H. and Adams , M. B. 2009 . Long-term data collection at USDA experimental sites for studies of ecohydrology . Ecohydrology , 1 : 17
  • Draeger , W. , Holm , T. M. , Lauer , D. T. and Thompson , R. J. 1997 . The availability of Landsat data: Past, present and future . Photogrammetric Engineering and Remote Sensing , 63 ( 7 ) : 6
  • Leimgruber , P. , Christen , C. A. and Laborderie , A. 2005 . The impact of Landsat satellite monitoring on conservation biology . Environmental Monitoring and Assessment , 106 : 21
  • Washington-Allen , R. A. , West , N. E. , Ramsey , R. D. and Efroymson , R. A. 2006 . A protocol for retrospective remote sensing-based ecological monitoring of rangelands . Rangeland Ecological Management , 58 : 10
  • Lockwood , J. L. , Ross , M. S. and Sah , J. P. 2003 . Smoke on the water: The interplay of fire and water on Everglades restoration . Front Ecol Environ , 1 ( 9 ) : 7
  • Sano , E. E. , Ferreira , L. G. and Huete , A. R. 2005 . Synthetic aperture Radar (L band) and optical vegetation indices for discriminating the Brazilian savanna physiognomies: A comparative analysis . Earth Interactions , 9 ( 15 ) : 15
  • Lu , D. , Mausel , P. , Brondizio , E. and Moran , E. 2004 . Change detection techniques . International Journal of Remote Sensing , 25 ( 12 ) : 43
  • Platt , R. V. and Rapoza , L. 2008 . An evaluation of object-oriented paradigm for land use / land cover classification . The Professional Geographer , 60 ( 8 ) : 13
  • De’ath , G. and Fabricius , K. E. 2000 . Classification and regression trees: A powerful yet simple technique for ecological data analysis . Ecology , 81 : 14
  • Foody , G. M. 2008 . Harshness in image classification accuracy assessment . International Journal of Remote Sensing , 29 ( 11 ) : 21
  • Rutchey , K. and Godin , J. 2009 . Determining an appropriate minimum mapping unit in vegetation mapping for ecosystem restoration: A case study from the Everglades, USA . Landscape Ecology , 24 : 11
  • 2007 . “ Comprehensive Everglades Restoration Plan ” . In Development and application of comprehensive Everglades restoration plan system-wide performance measures , West Palm Beach, FL : Author .
  • Sklar , F. , Coronado , C. and Crozier , G. 2004 . “ Ecological effects of hydrology ” . In Everglades Consolidated Report , 58 West Palm Beach, FL : South Florida Water Management District .

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