Hinkle R L, Mitsch W J. Salt marsh vegetation recoveryat salt hay farm wetland restoration sites on DelawareBay. Ecological Engineering, 2005, 25(3): 240-251.
[2]
Melesse A M, Nangia V, Wang X, et al. Wetland RestorationResponse Analysis using MODIS and GroundwaterData. Sensors, 2007, 7(9): 1916-1933.
[3]
Tuxen K A, Schile L M, Kelly M, et al. Vegetation Colonizationin a Restoring Tidal Marsh: A Remote SensingApproach. Restoration Ecology, 2008, 16(2): 313-323.
[4]
Shuman C S, Ambrose R F. A comparison of remote sensingand ground-based methods for monitoring wetlandrestoration success. Restoration Ecology, 2003, 11(3):325-333
[5]
Al-khudhairy D H A, Leemhuis C, Hoffmann V, et al.Monitoring wetland ditch water levels in the North KentMarshes, UK, using Landsat TM imagery andground-based measurements. Hydrological Sciences Journal,2001, 46(4): 585-14.
Alexandridis T K, Lazaridou E, Tsirika A, et al. UsingEarth Observation to update a Natura 2000 habitat mapfor a wetland in Greece. Journal of Environmental Management,2009, 90(7): 2243-2251.
[9]
Bock M, Rossner G, Wissen M, et al. Spatial indicatorsfor nature conservation from European to local scale.Ecological Indicators, 2005, 5(4): 322-338.
[10]
Zhang M, Ustin S L, Rejmankova E, et al. Monitoring Pacificcoast salt marshes using remote sensing. EcologicalApplications, 1997, 7(3): 1039-1053.
[11]
Phinn S R, Stow D A, Mouwerik D V. Remotely sensedestimates of vegetation structural characteristics in restoredwetlands, Southern California. PhotogrammetricEngineering and Remote Sensing, 1999, 65(4): 485-493.
[12]
Hinkle R L, Mitsch W J. Salt marsh vegetation recoveryat salt hay farm wetland restoration sites on DelawareBay. Ecological Engineering, 2005, 25(3): 240-251.
[13]
Melesse A M, Nangia V, Wang X, et al. Wetland RestorationResponse Analysis using MODIS and GroundwaterData. Sensors, 2007, 7(9): 1916-1933.
[14]
Tuxen K A, Schile L M, Kelly M, et al. Vegetation Colonizationin a Restoring Tidal Marsh: A Remote SensingApproach. Restoration Ecology, 2008, 16(2): 313-323.
[15]
Shuman C S, Ambrose R F. A comparison of remote sensingand ground-based methods for monitoring wetlandrestoration success. Restoration Ecology, 2003, 11(3):325-333
[16]
Al-khudhairy D H A, Leemhuis C, Hoffmann V, et al.Monitoring wetland ditch water levels in the North KentMarshes, UK, using Landsat TM imagery andground-based measurements. Hydrological Sciences Journal,2001, 46(4): 585-14.
McFeeters S K. The Use of Normalized Difference WaterIndex (NDWI) in the Delineation of Open Water Features.International Journal of Remote Sensing, 1996, 17(7): 1425-1432.
[27]
朱庆平, 任建华, 王建中, 等. 我国内陆河流生态调水.中国水利, 2003(6):49-52.
[28]
Thomson A G, Fuller R M, Yates M G, et al. The use ofairborne remote sensing for extensive mapping of intertidalsediments and salt marshes in eastern England. InternationalJournal of Remote Sensing, 2003, 24(13):2717-2737.
[29]
Wulder M A, Hall R J, Coops N C, et al. High spatial resolutionremotely sensed data for ecosystem characterization.BioScience, 2004, 54(6): 511-521.
[30]
Higinbotham C B, Alber M, Chalmers A G. Analysis oftidal marsh vegetation patterns in two Georgia estuariesusing aerial photography and GIS. Estuaries, 2004, 27(4):670-683.
[31]
Alexandridis T K, Lazaridou E, Tsirika A, et al. UsingEarth Observation to update a Natura 2000 habitat mapfor a wetland in Greece. Journal of Environmental Management,2009, 90(7): 2243-2251.
[32]
Bock M, Rossner G, Wissen M, et al. Spatial indicatorsfor nature conservation from European to local scale.Ecological Indicators, 2005, 5(4): 322-338.
[33]
Phinn S R, Stow D A, Zedler J B. Monitoring wetland habitatrestoration in southern California using airborne multispectralvideo data. Restoration Ecology, 1996, 4(4):412-422.
[34]
Zhang M, Ustin S L, Rejmankova E, et al. Monitoring Pacificcoast salt marshes using remote sensing. EcologicalApplications, 1997, 7(3): 1039-1053.
[35]
Phinn S R, Stow D A, Mouwerik D V. Remotely sensedestimates of vegetation structural characteristics in restoredwetlands, Southern California. PhotogrammetricEngineering and Remote Sensing, 1999, 65(4): 485-493.
McFeeters S K. The Use of Normalized Difference WaterIndex (NDWI) in the Delineation of Open Water Features.International Journal of Remote Sensing, 1996, 17(7): 1425-1432.
[43]
朱庆平, 任建华, 王建中, 等. 我国内陆河流生态调水.中国水利, 2003(6):49-52.
[44]
Thomson A G, Fuller R M, Yates M G, et al. The use ofairborne remote sensing for extensive mapping of intertidalsediments and salt marshes in eastern England. InternationalJournal of Remote Sensing, 2003, 24(13):2717-2737.
[45]
Wulder M A, Hall R J, Coops N C, et al. High spatial resolutionremotely sensed data for ecosystem characterization.BioScience, 2004, 54(6): 511-521.
[46]
Higinbotham C B, Alber M, Chalmers A G. Analysis oftidal marsh vegetation patterns in two Georgia estuariesusing aerial photography and GIS. Estuaries, 2004, 27(4):670-683.
Phinn S R, Stow D A, Zedler J B. Monitoring wetland habitatrestoration in southern California using airborne multispectralvideo data. Restoration Ecology, 1996, 4(4):412-422.