98. Klemas V (2013) Remote sensing of emergent and submerged wetlands: an overview. Int J
Remote Sens 34:6286–6320
99. Wulder MA, Hall RJ, Coops NC, Franklin SE (2004) High spatial resolution remotely sensed
data for ecosystem characterization. Bioscience 54:511–521
100. McCoy R (2005) Field methods in remote sensing. Guilford, New York, p 161
101. Ellis JM, Dodd HS (2000) Applications and lessons learned with airborne multispectral
imaging. In: Fourteenth international conference on applied geological remote sensing, Las
Vegas, Nevada, 6–8 Nov 2000
102. Lyon JG, McCarthy J (1995) Wetland and environmental applications of GIS. Lewis,
New York, p 400
103. Hays RL (2009) Vegetation patterns and nutrient cycling in Delaware Bay salt marshes, Great
Marsh (Lewes) and Webbs Marsh (South Bowers), Delaware. PhD Dissertation, University
of Delaware, Lewes, p 384
104. Jensen RR, Mausel P, Dias N, Gonser R, Yang C, Everitt J, Fletcher R (2007) Spectral
analysis of coastal vegetation and land cover using AISA+ hyperspectral data. Geocarto Int
22:17–28
105. Schmid T, Koch M, Gumuzzio J (2005) Multisensor approach to determine changes of
wetland characteristics in semiarid environments in central Sapin. IEEE Trans Geosci
Remote Sens 43:2516–2525
106. Schmidt KS, Skidmore AK, Kloosterman EH, Van Oosten H, Kumar L, Janssen JAM (2004)
Mapping coastal vegetation using an expert system and hyperspectral imagery. Photogramm
Eng Remote Sens 70:703–716
107. Yang C, Everitt JH, Fletcher RS, Jensen JR, Mausel PW (2009) Mapping black mangrove
along the south Texas gulf coast using AISA+ hyperspectral imagery. Photogramm Eng
Remote Sens 75:425–436
108. Yang J, Artigas FJ (2009) Mapping salt marsh vegetation by integrating hyperspectral and
LiDAR remote sensing. In: Wang J (ed) Remote sensing of coastal environments. CRC, Boca
Raton, pp 173–187
109. Gilmore MS, Civco DL, Wilson EH, Barrett N, Prisloe S, Hurd JD, Chadwick C (2009)
Remote sensing and in situ measurements for delineation and assessment of coastal marshes
and their constituent species. In: Wang J (ed) Remote sensing of coastal environments. CRC,
Boca Raton, pp 261–280
110. Adam E, Mutanga O, Rugege D (2010) Multispectral and hyperspectral remote sensing for
identification and mapping of wetland vegetation: a review. Wetlands Ecol Manag
18:281–296
111. Simard M, Fatoyinbo LE, Pinto N (2009) Mangrove canopy 3D structure and ecosystem
productivity using active remote sensing. In: Wang J (ed) Remote sensing of coastal environments. CRC, Boca Raton, pp 61–78
112. Wang Y (2009) Remote sensing of coastal environments: an overview. In: Wang J
(ed) Remote sensing of coastal environments. CRC, Boca Raton, pp 1–24
113. Baghdadi N, Bernier M, Gauthier R, Neeson I (2001) Evaluation of C-band SAR data for
wetlands mapping. Int J Remote Sens 22:71–88
114. Lang MW, McCarty GW (2008) Remote sensing data for regional wetland mapping in the
United States: trends and future prospects. In: Russo RE (ed) Wetlands: ecology, conservation and restoration. Nova Science, Hauppauge, pp 73–112
115. Novo EMLM, Costa MPF, Mantovani JE, Lima IBT (2002) Relationship between macrophyte stand variables and radar backscatter at L and C band, Tucurui reservoir, Brasil. Int J
Remote Sens 23:1241–1260
116. Rosenqvist A, Finlayson CM, Lowry J, Taylor D (2007) The potential of long-wavelength
satellite-borne radar to support implementation of the Ramsar Wetland Convention. Aquat
Conserv Mar Freshw Ecosyst 17:229–244
117. Townsend PA (2000) A quantitative fuzzy approach to assess mapped vegetation classifications for ecological applications. Remote Sens Environ 72:253–267
Using Remote Sensing to Map and Monitor Water Resources in Arid and Semiarid. . .
59
Remote Sens 34:6286–6320
99. Wulder MA, Hall RJ, Coops NC, Franklin SE (2004) High spatial resolution remotely sensed
data for ecosystem characterization. Bioscience 54:511–521
100. McCoy R (2005) Field methods in remote sensing. Guilford, New York, p 161
101. Ellis JM, Dodd HS (2000) Applications and lessons learned with airborne multispectral
imaging. In: Fourteenth international conference on applied geological remote sensing, Las
Vegas, Nevada, 6–8 Nov 2000
102. Lyon JG, McCarthy J (1995) Wetland and environmental applications of GIS. Lewis,
New York, p 400
103. Hays RL (2009) Vegetation patterns and nutrient cycling in Delaware Bay salt marshes, Great
Marsh (Lewes) and Webbs Marsh (South Bowers), Delaware. PhD Dissertation, University
of Delaware, Lewes, p 384
104. Jensen RR, Mausel P, Dias N, Gonser R, Yang C, Everitt J, Fletcher R (2007) Spectral
analysis of coastal vegetation and land cover using AISA+ hyperspectral data. Geocarto Int
22:17–28
105. Schmid T, Koch M, Gumuzzio J (2005) Multisensor approach to determine changes of
wetland characteristics in semiarid environments in central Sapin. IEEE Trans Geosci
Remote Sens 43:2516–2525
106. Schmidt KS, Skidmore AK, Kloosterman EH, Van Oosten H, Kumar L, Janssen JAM (2004)
Mapping coastal vegetation using an expert system and hyperspectral imagery. Photogramm
Eng Remote Sens 70:703–716
107. Yang C, Everitt JH, Fletcher RS, Jensen JR, Mausel PW (2009) Mapping black mangrove
along the south Texas gulf coast using AISA+ hyperspectral imagery. Photogramm Eng
Remote Sens 75:425–436
108. Yang J, Artigas FJ (2009) Mapping salt marsh vegetation by integrating hyperspectral and
LiDAR remote sensing. In: Wang J (ed) Remote sensing of coastal environments. CRC, Boca
Raton, pp 173–187
109. Gilmore MS, Civco DL, Wilson EH, Barrett N, Prisloe S, Hurd JD, Chadwick C (2009)
Remote sensing and in situ measurements for delineation and assessment of coastal marshes
and their constituent species. In: Wang J (ed) Remote sensing of coastal environments. CRC,
Boca Raton, pp 261–280
110. Adam E, Mutanga O, Rugege D (2010) Multispectral and hyperspectral remote sensing for
identification and mapping of wetland vegetation: a review. Wetlands Ecol Manag
18:281–296
111. Simard M, Fatoyinbo LE, Pinto N (2009) Mangrove canopy 3D structure and ecosystem
productivity using active remote sensing. In: Wang J (ed) Remote sensing of coastal environments. CRC, Boca Raton, pp 61–78
112. Wang Y (2009) Remote sensing of coastal environments: an overview. In: Wang J
(ed) Remote sensing of coastal environments. CRC, Boca Raton, pp 1–24
113. Baghdadi N, Bernier M, Gauthier R, Neeson I (2001) Evaluation of C-band SAR data for
wetlands mapping. Int J Remote Sens 22:71–88
114. Lang MW, McCarty GW (2008) Remote sensing data for regional wetland mapping in the
United States: trends and future prospects. In: Russo RE (ed) Wetlands: ecology, conservation and restoration. Nova Science, Hauppauge, pp 73–112
115. Novo EMLM, Costa MPF, Mantovani JE, Lima IBT (2002) Relationship between macrophyte stand variables and radar backscatter at L and C band, Tucurui reservoir, Brasil. Int J
Remote Sens 23:1241–1260
116. Rosenqvist A, Finlayson CM, Lowry J, Taylor D (2007) The potential of long-wavelength
satellite-borne radar to support implementation of the Ramsar Wetland Convention. Aquat
Conserv Mar Freshw Ecosyst 17:229–244
117. Townsend PA (2000) A quantitative fuzzy approach to assess mapped vegetation classifications for ecological applications. Remote Sens Environ 72:253–267
Using Remote Sensing to Map and Monitor Water Resources in Arid and Semiarid. . .
59
