76. Ku NW, Popescu SC, Ansley RJ, Perotto-Baldivieso HL, Fillippi AN (2012) Assessment of
available rangeland woody plant biomass with a terrestrial lidar system. Photogramm Eng
Remote Sens 78:349–361
77. Peregon A, Maksyutov S, Kosykh NP, Mironycheva-Tokareva NP (2008) Map-based inventory of wetland biomass and net primary production in Western Siberia. J Geophys Res
113:1–12
78. Riegel B (2012) A comparison of remote sensing methods for estimating above-ground
carbon biomass at a wetland restoration area in the southeastern coastal plain. http://
dukespace.lib.duke.edu/dspace/handle/10161/5164. Accessed 15 Oct 2012
79. Running SW, Nemani RR, Heinsch FA, Zhao M, Reeves M, Hashimoto H (2004) A
continuous satellite-derived measure of global terrestrial primary production. Bioscience
54:547–560
80. Lucas R, Armston J, Fairfax J, Fensham R, Dwyer J, Bowen M, Eyre T, Laidlaw M, Shimada
M (2010) An evaluation of the ALOS PALSAR L-band backscatter- above ground biomass
relationship over Queensland, Australia. IEEE J Sel Top Earth Obs Remote Sens 3:576–593
81. Graham S (2000) Drought: the creeping disaster. NASA Earth Observatory, August 28, 2000.
http://earthobservatory.nasa.gov/Features/DroughtFacts/. Accessed 11 Apr 2014
82. Weier J, Herring D (2000) Measuring Vegetation (NDVI & EVI). NASA Earth Observatory,
August 30, 2000. http://earthobservatory.nasa.gov/Features/MeasuringVegetation/. Accessed
11 Apr 2014
83. Hao Z, AghaKouchak A (2014) A nonparametric multivariate multi-index drought monitoring framework. J Hydrometeorol 15:89–101
84. Momtaz F, Nakhjiri N, AghaKouchak A (2014) Toward a drought cyber infrastructure
system. Eos 95(22):182–183
85. Leibowitz SG (2003) Isolated wetlands and their functions: an ecological perspective.
Wetlands 23:517–531
86. Semlitsch RD, Bodie JR (1998) Are small, isolated wetlands expendable? Conserv Biol
12:1129–1133
87. Winter TC, Labaugh JW (2003) Hydrologic considerations in defining isolated wetlands.
Wetlands 23:532–540
88. Dahl TE (2006) Status and trends of wetlands in the conterminous United States 1998 to
2004. U.S. Department of the Interior, Fish and Wildlife Service, Washington, DC, p 112
89. Kelly M, Tuxen K (2009) Remote sensing support for tidal wetland vegetation research and
management. In: Yang X (ed) Remote sensing and geospatial technologies for coastal
ecosystem assessment and management. Springer, Berlin, pp 341–363
90. Ozesmi SL, Bauer ME (2002) Satellite remote sensing of wetlands. Wetlands Ecol Manag
10:381–402
91. Prigent C, Matthews E, Aires F, Rossow WB (2001) Remote sensing of global wetland
dynamics with multiple satellite data sets. Geophys Res Lett 28:4631–4634
92. Tiner RW (1996) Wetlands. In: Manual of photographic interpretation, 2nd edn. American
Society for Photogrammetry and Remote Sensing, Falls Church, Virginia, p 2440
93. Lunetta RS, Balogh ME (1999) Application of multi-temporal Landsat 5 TM imagery for
wetland identification. Photogramm Eng Remote Sens 65:1303–1310
94. Baker C, Lawrence R, Montagne C, Patten D (2006) Mapping wetlands and riparian areas
using Landsat ETM+ imagery and decision-based models. Wetlands 27:465–474
95. De Roeck ER, Verhoest NEC, Miya MH, Lievens H, Batelaan O, Thomas A, Brendonck L
(2008) Remote sensing and wetland ecology: a South African case study. Sensors
8:3542–3556
96. Frohn RC, Reif M, Lane C, Autrey B (2009) Satellite remote sensing of isolated wetlands
using object-oriented classification of Landsat-7 data. Wetlands 29:931–941
97. Tiner RW (2003) Geographically isolated wetlands of the United States. Wetlands
23:494–516
58
V. Klemas and A. Pieterse
available rangeland woody plant biomass with a terrestrial lidar system. Photogramm Eng
Remote Sens 78:349–361
77. Peregon A, Maksyutov S, Kosykh NP, Mironycheva-Tokareva NP (2008) Map-based inventory of wetland biomass and net primary production in Western Siberia. J Geophys Res
113:1–12
78. Riegel B (2012) A comparison of remote sensing methods for estimating above-ground
carbon biomass at a wetland restoration area in the southeastern coastal plain. http://
dukespace.lib.duke.edu/dspace/handle/10161/5164. Accessed 15 Oct 2012
79. Running SW, Nemani RR, Heinsch FA, Zhao M, Reeves M, Hashimoto H (2004) A
continuous satellite-derived measure of global terrestrial primary production. Bioscience
54:547–560
80. Lucas R, Armston J, Fairfax J, Fensham R, Dwyer J, Bowen M, Eyre T, Laidlaw M, Shimada
M (2010) An evaluation of the ALOS PALSAR L-band backscatter- above ground biomass
relationship over Queensland, Australia. IEEE J Sel Top Earth Obs Remote Sens 3:576–593
81. Graham S (2000) Drought: the creeping disaster. NASA Earth Observatory, August 28, 2000.
http://earthobservatory.nasa.gov/Features/DroughtFacts/. Accessed 11 Apr 2014
82. Weier J, Herring D (2000) Measuring Vegetation (NDVI & EVI). NASA Earth Observatory,
August 30, 2000. http://earthobservatory.nasa.gov/Features/MeasuringVegetation/. Accessed
11 Apr 2014
83. Hao Z, AghaKouchak A (2014) A nonparametric multivariate multi-index drought monitoring framework. J Hydrometeorol 15:89–101
84. Momtaz F, Nakhjiri N, AghaKouchak A (2014) Toward a drought cyber infrastructure
system. Eos 95(22):182–183
85. Leibowitz SG (2003) Isolated wetlands and their functions: an ecological perspective.
Wetlands 23:517–531
86. Semlitsch RD, Bodie JR (1998) Are small, isolated wetlands expendable? Conserv Biol
12:1129–1133
87. Winter TC, Labaugh JW (2003) Hydrologic considerations in defining isolated wetlands.
Wetlands 23:532–540
88. Dahl TE (2006) Status and trends of wetlands in the conterminous United States 1998 to
2004. U.S. Department of the Interior, Fish and Wildlife Service, Washington, DC, p 112
89. Kelly M, Tuxen K (2009) Remote sensing support for tidal wetland vegetation research and
management. In: Yang X (ed) Remote sensing and geospatial technologies for coastal
ecosystem assessment and management. Springer, Berlin, pp 341–363
90. Ozesmi SL, Bauer ME (2002) Satellite remote sensing of wetlands. Wetlands Ecol Manag
10:381–402
91. Prigent C, Matthews E, Aires F, Rossow WB (2001) Remote sensing of global wetland
dynamics with multiple satellite data sets. Geophys Res Lett 28:4631–4634
92. Tiner RW (1996) Wetlands. In: Manual of photographic interpretation, 2nd edn. American
Society for Photogrammetry and Remote Sensing, Falls Church, Virginia, p 2440
93. Lunetta RS, Balogh ME (1999) Application of multi-temporal Landsat 5 TM imagery for
wetland identification. Photogramm Eng Remote Sens 65:1303–1310
94. Baker C, Lawrence R, Montagne C, Patten D (2006) Mapping wetlands and riparian areas
using Landsat ETM+ imagery and decision-based models. Wetlands 27:465–474
95. De Roeck ER, Verhoest NEC, Miya MH, Lievens H, Batelaan O, Thomas A, Brendonck L
(2008) Remote sensing and wetland ecology: a South African case study. Sensors
8:3542–3556
96. Frohn RC, Reif M, Lane C, Autrey B (2009) Satellite remote sensing of isolated wetlands
using object-oriented classification of Landsat-7 data. Wetlands 29:931–941
97. Tiner RW (2003) Geographically isolated wetlands of the United States. Wetlands
23:494–516
58
V. Klemas and A. Pieterse
