Dynamic monitoring of the Poyang Lake wetland by integrating Landsat and MODIS observations
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Lifan Chen | Bin Chen | B. Xu | Bo Huang | Ryo Michishita | Bing Xu | B. Huang
[1] L. M. Cowardin,et al. Classification of Wetlands and Deepwater Habitats of the United States , 2017 .
[2] Bin Chen,et al. A hierarchical spatiotemporal adaptive fusion model using one image pair , 2017, Int. J. Digit. Earth.
[3] Peijuan Wang,et al. Fusing Landsat and MODIS Data for Vegetation Monitoring , 2015, IEEE Geoscience and Remote Sensing Magazine.
[4] Jin Chen,et al. Spatiotemporal reflectance blending in a wetland environment , 2015, Int. J. Digit. Earth.
[5] Jin Chen,et al. Global land cover mapping at 30 m resolution: A POK-based operational approach , 2015 .
[6] Yang Zhang,et al. Spatiotemporal analysis of land use/cover changes in Nanchang area, China , 2015, Int. J. Digit. Earth.
[7] Lin Wang,et al. Mapping dynamic cover types in a large seasonally flooded wetland using extended principal component analysis and object-based classification , 2015 .
[8] Bin Chen,et al. Comparison of Spatiotemporal Fusion Models: A Review , 2015, Remote. Sens..
[9] M. Kumar,et al. Status of wetlands in India: A review of extent, ecosystem benefits, threats and management strategies , 2014 .
[10] Jun Cai,et al. Dynamic monitoring of wetland cover changes using time-series remote sensing imagery , 2014, Ecol. Informatics.
[11] Xiaodong Zhu,et al. Coastal wetland loss and environmental change due to rapid urban expansion in Lianyungang, Jiangsu, China , 2014, Regional Environmental Change.
[12] Zhenyu Jin,et al. Empirical comparison of noise reduction techniques for NDVI time-series based on a new measure , 2014 .
[13] F. Gao,et al. Generating daily land surface temperature at Landsat resolution by fusing Landsat and MODIS data , 2014 .
[14] Yi Peng,et al. Wetland inundation mapping and change monitoring using Landsat and airborne LiDAR data , 2014 .
[15] Bing Xu,et al. Perspective on remote sensing change detection of Poyang Lake wetland , 2013, Ann. GIS.
[16] Zhenyu Jin,et al. A Novel Compound Smoother—RMMEH to Reconstruct MODIS NDVI Time Series , 2013, IEEE Geoscience and Remote Sensing Letters.
[17] L. Fahrig,et al. Effects of habitat loss, habitat configuration and matrix composition on declining wetland species , 2013 .
[18] C. Deng,et al. BCI: A biophysical composition index for remote sensing of urban environments , 2012 .
[19] P. Gong,et al. A new time series vegetation-water index of phenological-hydrological trait across species and functional types for Poyang Lake wetland ecosystem , 2012 .
[20] B. Xu,et al. Bi-scale analysis of multitemporal land cover fractions for wetland vegetation mapping , 2012 .
[21] Xiaoling Chen,et al. Assessment of inundation changes of Poyang Lake using MODIS observations between 2000 and 2010 , 2012 .
[22] Feng Gao,et al. A Modified Neighborhood Similar Pixel Interpolator Approach for Removing Thick Clouds in Landsat Images , 2012, IEEE Geoscience and Remote Sensing Letters.
[23] Zhe Zhu,et al. Object-based cloud and cloud shadow detection in Landsat imagery , 2012 .
[24] Bo Huang,et al. Spatiotemporal Reflectance Fusion via Sparse Representation , 2012, IEEE Transactions on Geoscience and Remote Sensing.
[25] B. Xu,et al. Monitoring two decades of urbanization in the Poyang Lake area, China through spectral unmixing , 2012 .
[26] P. Gong,et al. Object-based analysis and change detection of major wetland cover types and their classification uncertainty during the low water period at Poyang Lake, China , 2011 .
[27] Xiaoling Chen,et al. Monitoring the dynamics of wetland inundation by random sets on multi-temporal images , 2011 .
[28] Feng Gao,et al. A simple and effective method for filling gaps in Landsat ETM+ SLC-off images , 2011 .
[29] Xiaolin Zhu,et al. An enhanced spatial and temporal adaptive reflectance fusion model for complex heterogeneous regions , 2010 .
[30] D. Strayer. Alien species in fresh waters: ecological effects, interactions with other stressors, and prospects for the future , 2010 .
[31] M. Schaepman,et al. Downscaling time series of MERIS full resolution data to monitor vegetation seasonal dynamics , 2009 .
[32] Joanne C. White,et al. A new data fusion model for high spatial- and temporal-resolution mapping of forest disturbance based on Landsat and MODIS , 2009 .
[33] M. Friedl,et al. Using MODIS data to characterize seasonal inundation patterns in the Florida Everglades , 2008 .
[34] S. Prince,et al. Wetland change mapping for the U.S. mid-Atlantic region using an outlier detection technique , 2008 .
[35] Peng Gong,et al. Modelling spatial‐temporal change of Poyang Lake using multitemporal Landsat imagery , 2008 .
[36] Michael E. Schaepman,et al. Unmixing-Based Landsat TM and MERIS FR Data Fusion , 2008, IEEE Geoscience and Remote Sensing Letters.
[37] C. Peng,et al. Land use change in Asia and the ecological consequences , 2006, Ecological Research.
[38] Mathew R. Schwaller,et al. On the blending of the Landsat and MODIS surface reflectance: predicting daily Landsat surface reflectance , 2006, IEEE Transactions on Geoscience and Remote Sensing.
[39] R. Lawrence,et al. Mapping wetlands and riparian areas using Landsat ETM+ imagery and decision-tree-based models , 2006, Wetlands.
[40] R. Naiman,et al. Freshwater biodiversity: importance, threats, status and conservation challenges , 2006, Biological reviews of the Cambridge Philosophical Society.
[41] R. Nicholls. Coastal flooding and wetland loss in the 21st century: changes under the SRES climate and socio-economic scenarios , 2004 .
[42] Nathan J. Heinert,et al. Extending satellite remote sensing to local scales: land and water resource monitoring using high-resolution imagery , 2003 .
[43] F. Baret,et al. Assessing the biomass dynamics of Andean bofedal and totora high-protein wetland grasses from NOAA/AVHRR , 2003 .
[44] S. Franklin,et al. Classification of wetland habitat and vegetation communities using multi-temporal Ikonos imagery in southern Saskatchewan , 2002 .
[45] K. Tockner,et al. Riverine flood plains: present state and future trends , 2002, Environmental Conservation.
[46] M. Brinson,et al. Temperate freshwater wetlands: types, status, and threats , 2002, Environmental Conservation.
[47] G. Hill,et al. Vegetation mapping of a tropical freshwater swamp in the Northern Territory, Australia: A comparison of aerial photography, Landsat TM and SPOT satellite imagery , 2001 .
[48] Donald R. Cahoon,et al. Pattern and process of land loss in the Mississippi Delta: A Spatial and temporal analysis of wetland habitat change , 2000 .
[49] J. Gibbs. Wetland Loss and Biodiversity Conservation , 2000 .
[50] Robert J. Nicholls,et al. Increasing flood risk and wetland losses due to global sea-level rise: regional and global analyses , 1999 .
[51] S. Sader,et al. Accuracy of landsat-TM and GIS rule-based methods for forest wetland classification in Maine , 1995 .
[52] B. Holben. Characteristics of maximum-value composite images from temporal AVHRR data , 1986 .
[53] Jay L. Devore,et al. Probability and statistics for engineering and the sciences , 1982 .
[54] Michael A. Lefsky,et al. A flexible spatiotemporal method for fusing satellite images with different resolutions , 2016 .
[55] F. Javier García-Haro,et al. A comparison of STARFM and an unmixing-based algorithm for Landsat and MODIS data fusion , 2015 .
[56] Xiaoling Chen,et al. Four decades of winter wetland changes in Poyang Lake based on Landsat observations between 1973 and 2013 , 2015 .
[57] Nick Davidson,et al. Biodiversity impacts of large dams , 2001 .
[58] Philip A. Townsend,et al. Mapping Seasonal Flooding in Forested Wetlands Using Multi-Temporal Radarsat SAR , 2001 .