Advances in Remote Sensing

Advances in Remote Sensing

ISSN Print: 2169-267X
ISSN Online: 2169-2688
www.scirp.org/journal/ars
E-mail: ars@scirp.org
"A Review on Extraction of Lakes from Remotely Sensed Optical Satellite Data with a Special Focus on Cryospheric Lakes"
written by Shridhar D. Jawak, Kamana Kulkarni, Alvarinho J. Luis,
published by Advances in Remote Sensing, Vol.4 No.3, 2015
has been cited by the following article(s):
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[2] Model based change detection of water body using Landsat imagery: A case study of Rajshahi Bangladesh
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[3] Merjenje nadmorske višine gladine jezer iz optičnih satelitskih slik
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[4] Comparative Evaluation of Spectral Indices and Sensors for Mapping of Urban Surface Water Bodies in Jodhpur Area: Smart & Sustainable Growth
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[6] Particle Swarm Optimization based Water Index (PSOWI) for Mapping the Water extents from Satellite Images
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[9] Factors that control the seasonal dynamics of the shallow lakes in the Pampean region, Buenos Aires, Argentina
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[10] Time Series Analysis of Water Feature Extraction using Water Index Techniques from Landsat Remote Sensing Images
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[11] Assessment of Water Level in Dadin Kowa Dam Reservoir in Gombe State Nigeria Using Geospatial Techniques
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[12] Identification of a Threshold Minimum Area for Reflectance Retrieval from Thermokarst Lakes and Ponds Using Full-Pixel Data from Sentinel-2
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[13] 基于 3S 技术方法的中国冰湖编目
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[14] Method for delineating open water bodies based on the deeply clear waterbody delineation index
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[15] Knowledge-Based Identification and Damage Detection of Bridges Spanning Water via High-Spatial-Resolution Optical Remotely Sensed Imagery
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[16] Variations in the lake area, water level, and water volume of Hongjiannao Lake during 1986–2018 based on Landsat and ASTER GDEM data
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[17] An Object-Based River Extraction Method via Optimized Transductive Support Vector Machine for Multi-Spectral Remote-Sensing Images
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[18] 基于 SAR 影像的贡巴冰川末端冰湖年际变化监测及溃决规律分析
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[19] Water Body Extraction Using Images From Two Different Satellites Over Chilika Lake
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[20] Spatial evolution of the December 2013 Metaponto plain (Basilicata, Italy) flood event using multi-source and high-resolution remotely sensed data
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[21] EXTRACTION OF OPEN SURFACE WATER BODIES IN INDIA USING REMOTE SENSING AND GIS TECHNIQUES: A REVIEW
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[22] Lake Sibayi variations in response to climate variability in northern KwaZulu-Natal, South Africa
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[23] An automated mathematical morphology driven algorithm for water body extraction from remotely sensed images
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[25] Using the modified two-mode method to identify surface water in Gaofen-1 images
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[26] Selection and Fusion of Spectral Indices to Improve Water Body Discrimination
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[27] Mapping the spatial distribution of small reservoirs in the White Volta Sub-basin of Ghana
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[28] Icy lakes extraction and water-ice classification using Landsat 8 OLI multispectral data
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[29] Global water cycle and remote sensing big data: overview, challenge, and opportunities
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[30] Avaliação de novas plataformas de deteção remota para monitorização de lagoas termocársicas (subártico canadiano)
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[33] Comparing of Landsat 8 and Sentinel 2A using Water Extraction Indexes over Volta River
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[34] An ANN supported mathematical morphology based algorithm for lakes extraction from satellite images
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[35] Object-Based Detection of Lakes Prone to Seasonal Ice Cover on the Tibetan Plateau
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[36] An enhanced water index in extracting water bodies from Landsat TM imagery
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[37] Changes of glacier lakes using multi-temporal remote sensing data: A case study from India
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[38] Semi-automatic extraction of supra-glacial features using fuzzy logic approach for object oriented classification on WorldView-2 imagery
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[39] High-resolution multispectral satellite imagery for extracting bathymetric information of Antarctic shallow lakes
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[40] Geospatial mapping of vegetation in the Antarctic environment using very high-resolution WorldView-2 imagery
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[41] Application of high-resolution multispectral data for mapping blue ice areas in the Antarctic environment
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[42] Multisource classification and pattern recognition methods for polar geospatial information extraction using WorldView-2 data
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[43] Geospatial mapping of Antarctic coastal oasis using geographic object-based image analysis and high resolution satellite imagery
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[44] Exploratory normalized difference water indices for semi-automated extraction of Antarctic lake features
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[45] Object-oriented feature extraction approach for mapping supraglacial debris in Schirmacher Oasis using very high-resolution satellite data
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[46] Inland waterbody mapping: towards improving discrimination and extraction of inland surface water features
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[47] Mapping lakes on the Tibetan Plateau with landsat imagery and object-based image analyis
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[48] Assessment of Ethiopian lakes level change and identification of endangered lakes for the last four decades using Landsat satellite image
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[49] A Spaceborne Multisensory, Multitemporal Approach to Monitor Water Level and Storage Variations of Lakes
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[50] College of Natural and Computational Sciences School of Earth Sciences
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[51] College Natural and Computational Sciences School of Earth Sciences
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[52] Object-oriented feature extraction approach for mapping supraglacial debris in Schirmacher Oasis using very high resolution satellite data
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[53] Adaptive hydrological flow field modeling based on water body extraction and surface information
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[54] A comprehensive review on geospatial applications to life sciences
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