Object-based analysis and change detection of major wetland cover types and their classification uncertainty during the low water period at Poyang Lake, China
暂无分享,去创建一个
[1] Eric P. Crist,et al. A Physically-Based Transformation of Thematic Mapper Data---The TM Tasseled Cap , 1984, IEEE Transactions on Geoscience and Remote Sensing.
[2] Kyle Kwaiser. Accounting for observation uncertainty in species-habitat models: A case study using bird survey data from Poyang Lake, China , 2009 .
[3] Robert J. Nicholls,et al. Increasing flood risk and wetland losses due to global sea-level rise: regional and global analyses , 1999 .
[4] M. Perrow,et al. Interactions Between Grazing Birds and Macrophytes , 1998 .
[5] R. Wetzel. Limnology: Lake and River Ecosystems , 1975 .
[6] Wei Li,et al. Landscape-scale variation in the seed banks of floodplain wetlands with contrasting hydrology in China , 2006 .
[7] Hélène Laurent,et al. Unsupervised Performance Evaluation of Image Segmentation , 2006, EURASIP J. Adv. Signal Process..
[8] R. Fujii,et al. Plant community, primary productivity, and environmental conditions following wetland re-establishment in the Sacramento-San Joaquin Delta, California , 2010, Wetlands Ecology and Management.
[9] C. Wright,et al. Improved wetland remote sensing in Yellowstone National Park using classification trees to combine TM imagery and ancillary environmental data , 2007 .
[10] Yves-Louis Desnos,et al. Poyang Hu (Jiangxi Province, P. R. of China) Area Variations between January 2004 and June 2006 Using ENVISAT Low and Medium Resolution Time Series , 2007, Ann. GIS.
[11] Zucong Cai,et al. Plant species effects on methane emissions from freshwater marshes , 2005 .
[12] Liu Jiyuan,et al. Wetland vegetation biomass estimation and mapping from Landsat ETM data: a case study of poyang lake , 2002 .
[13] R. Lawrence,et al. Mapping wetlands and riparian areas using Landsat ETM+ imagery and decision-tree-based models , 2006, Wetlands.
[14] James W. Burnham,et al. Strategic assessment of the magnitude and impacts of sand mining in Poyang Lake, China , 2010 .
[15] Xiaobo Su,et al. Carex Dynamics as an Environmental Indicator in the Poyang Lake Wetland Area: Remote Sensing Mapping and GIS Analysis , 2007, Ann. GIS.
[16] P. Mayaux,et al. An object-based method for mapping and change analysis in mangrove ecosystems , 2008 .
[17] K. Bergen,et al. Inundation Extent and Flood Frequency Mapping Using LANDSAT Imagery and Digital Elevation Models , 2009 .
[18] C. Woodcock,et al. Theory and methods for accuracy assessment of thematic maps using fuzzy sets , 1994 .
[19] Sergios Theodoridis,et al. A Novel Efficient Cluster-Based MLSE Equalizer for Satellite Communication Channels with-QAM Signaling , 2006, EURASIP J. Adv. Signal Process..
[20] Xiaoling Chen,et al. Monitoring Temporal Evolution of the Presence Intermediate Host of the Schistosomiasis and its Risk Transmission Based on Dragon Times Series in Poyang Lake Area Jiangxi Province, P.R. China , 2010 .
[21] R. Naiman,et al. Freshwater biodiversity: importance, threats, status and conservation challenges , 2006, Biological reviews of the Cambridge Philosophical Society.
[22] C. Scott Findlay,et al. The effects of adjacent land use on wetland species richness and community composition , 2006, Wetlands.
[23] A. C. Seijmonsbergen,et al. Improved landsat-based forest mapping in steep mountainous terrain , 2003 .
[24] Bing Xu,et al. Analysis on the Waterbirds Community Survey of Poyang Lake in Winter , 2007, Ann. GIS.
[25] Li Jiao,et al. China. Scientists line up against dam that would alter protected wetlands. , 2009, Science.
[26] Peng Gong,et al. Geographical characteristics of China’s wetlands derived from remotely sensed data , 2009 .
[27] Erik Jeppesen,et al. The Structuring Role of Submerged Macrophytes in Lakes , 1998, Ecological Studies.
[28] F. Baret,et al. Potentials and limits of vegetation indices for LAI and APAR assessment , 1991 .
[29] Benjamin Smith,et al. Properties of ecotones: Evidence from five ecotones objectively determined from a coastal vegetation gradient , 2003 .
[30] W. Mitsch,et al. The value of wetlands: importance of scale and landscape setting. , 2000 .
[31] Jie Song,et al. Flood frequency in China's Poyang Lake region: trends and teleconnections , 2006 .
[32] Tong Jiang,et al. Interactions of the Yangtze river flow and hydrologic processes of the Poyang Lake, China , 2007 .
[33] S. Franklin,et al. OBJECT-BASED ANALYSIS OF IKONOS-2 IMAGERY FOR EXTRACTION OF FOREST INVENTORY PARAMETERS , 2006 .
[34] M. Barson,et al. Remote sensing of Australian wetlands: An evaluation of Landsat TM data for inventory and classification , 1993 .
[35] N. Coops,et al. Application of high spatial resolution satellite imagery for riparian and forest ecosystem classification , 2007 .
[36] T. Balser,et al. Methane dynamics across wetland plant species. , 2010 .
[37] Richard A. Fournier,et al. An object-based method to map wetland using RADARSAT-1 and Landsat ETM images: test case on two sites in Quebec, Canada , 2007 .
[38] U. Benz,et al. Multi-resolution, object-oriented fuzzy analysis of remote sensing data for GIS-ready information , 2004 .
[39] Luguang Jiang,et al. Land-cover change and vulnerability to flooding near Poyang Lake, Jiangxi Province, China , 2008 .
[40] Joy B. Zedler,et al. Causes and Consequences of Invasive Plants in Wetlands: Opportunities, Opportunists, and Outcomes , 2004 .
[41] Patrick Bogaert,et al. Forest change detection by statistical object-based method , 2006 .
[42] Philippe C. Baveye,et al. Use of textural measurements to map invasive wetland plants in the Hudson River National Estuarine Research Reserve with IKONOS satellite imagery , 2010 .
[43] P. Gong,et al. Mapping Ecological Land Systems and Classification Uncertainties from Digital Elevation and Forest-Cover Data Using Neural Networks , 1996 .
[44] A. Rango,et al. Object-oriented image analysis for mapping shrub encroachment from 1937 to 2003 in southern New Mexico , 2004 .
[45] S. Ustin,et al. Application of multiple endmember spectral mixture analysis (MESMA) to AVIRIS imagery for coastal salt marsh mapping: a case study in China Camp, CA, USA , 2005 .
[46] Xiaoming Cao,et al. Analyzing the 2007 drought of Poyang Lake Watershed with MODIS-derived normalized difference water deviation index , 2008, Optical Engineering + Applications.
[47] Paola Campadelli,et al. Quantitative evaluation of color image segmentation results , 1998, Pattern Recognit. Lett..
[48] Y. Hervé,et al. FLOOD EXTENT PREDICTION FROM LAKE HEIGHTS AND WATER LEVEL ESTIMATION FROM FLOOD EXTENTS USING RIVER GAUGES, ELEVATION MODELS AND ENVISAT DATA , 2007 .
[49] Huadong Guo,et al. Object oriented method for detection of inundation extent using multi-polarized synthetic aperture radar image , 2008 .
[50] S. K. McFeeters. The use of the Normalized Difference Water Index (NDWI) in the delineation of open water features , 1996 .
[51] P. Gong,et al. Accuracy Assessment Measures for Object-based Image Segmentation Goodness , 2010 .
[52] Stephen J. Walsh,et al. Remote sensing of forested wetlands: application of multitemporal and multispectral satellite imagery to determine plant community composition and structure in southeastern USA , 2001, Plant Ecology.
[53] Peng Gong,et al. Modelling spatial‐temporal change of Poyang Lake using multitemporal Landsat imagery , 2008 .
[54] J. Gibbs. Wetland Loss and Biodiversity Conservation , 2000 .
[55] P. Gong,et al. Object-based Detailed Vegetation Classification with Airborne High Spatial Resolution Remote Sensing Imagery , 2006 .
[56] S. Pezeshki,et al. Wetland plant responses to soil flooding , 2001 .
[57] D. Civco,et al. Integrating multi-temporal spectral and structural information to map wetland vegetation in a lower Connecticut River tidal marsh , 2008 .
[58] E. Davidson,et al. Temperature sensitivity of soil carbon decomposition and feedbacks to climate change , 2006, Nature.
[59] D. Lodge. Herbivory on freshwater macrophytes , 1991 .
[60] Lin Wang,et al. Aquatic plant functional type spectral characteristics analysis and comparison using multi-temporal and multi-sensor remote sensing over the Poyang Lake wetland, China , 2010, 2010 18th International Conference on Geoinformatics.
[61] M. Kelly,et al. Individual Object Change Detection for Monitoring the Impact of a Forest Pathogen on a Hardwood Forest , 2009 .
[62] Lin Yuan,et al. Analyzing the habitat suitability for migratory birds at the Chongming Dongtan Nature Reserve in Shanghai, China , 2008 .
[64] Nikos Koutsias,et al. Object-based classification using Quickbird imagery for delineating forest vegetation polygons in a Mediterranean test site , 2008 .
[65] Roman Arbiol,et al. Advanced Classification Techniques: A Review , 2007 .
[66] Yang Zhenzhong,et al. China's wetland change (1990-2000) determined by remote sensing , 2010 .
[67] J. Strobl,et al. Object-Oriented Image Processing in an Integrated GIS/Remote Sensing Environment and Perspectives for Environmental Applications , 2000 .
[68] Yong Q. Tian,et al. Factors Affecting Spatial Variation of Classification Uncertainty in an Image Object-Based Vegetation Mapping , 2008 .
[69] R. Lucas,et al. The delineation of tree crowns in Australian mixed species forests using hyperspectral Compact Airborne Spectrographic Imager (CASI) data , 2006 .
[70] Martin D. Levine,et al. Dynamic Measurement of Computer Generated Image Segmentations , 1985, IEEE Transactions on Pattern Analysis and Machine Intelligence.