Water Quality and Optical Properties of Swedish Lakes and Coastal Waters in Relation to Remote Sensing
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[1] R. Maffione,et al. Instruments and methods for measuring the backward-scattering coefficient of ocean waters. , 1997, Applied optics.
[2] Stelvio Tassan,et al. An alternative approach to absorption measurements of aquatic particles retained on filters , 1995 .
[3] O. Steinvall,et al. Mapping of coastal-water turbidity using LANDSAT imagery , 1985 .
[4] André Morel,et al. In-water and remote measurements of ocean color , 1980 .
[5] Timothy J. Malthus,et al. Quantitative modeling of inland water quality for high-resolution MSS systems , 1991, IEEE Trans. Geosci. Remote. Sens..
[6] R. Preisendorfer,et al. Hydrologic optics. Volume 1: Introduction , 1976 .
[7] L. Prieur,et al. An optical classification of coastal and oceanic waters based on the specific spectral absorption curves of phytoplankton pigments, dissolved organic matter, and other particulate materials1 , 1981 .
[8] R. Davies‐Colley,et al. Absorption of light by yellow substance in freshwater lakes , 1987 .
[9] R. Bukata,et al. Determination of inherent optical properties of Lake Ontario coastal waters. , 1979, Applied optics.
[10] James W. Brown,et al. A semianalytic radiance model of ocean color , 1988 .
[11] C. Yentsch. MEASUREMENT OF VISIBLE LIGHT ABSORPTION BY PARTICULATE MATTER IN THE OCEAN1 , 1962 .
[12] D. Pierson,et al. Mapping of the water quality of Lake Erken, Sweden, from imaging spectrometry and Landsat Thematic Mapper. , 2001, The Science of the total environment.
[13] K. Baker,et al. Optical properties of the clearest natural waters (200-800 nm). , 1981, Applied optics.
[14] P. A. Keller,et al. COMBINED HYPERSPECTRAL DATA ANALYSIS OF AN ALPINE LAKE USING CASI AND DAIS 7915 IMAGERY , 1998 .
[15] L. Prieur,et al. A three-component model of ocean colour and its application to remote sensing of phytoplankton pigments in coastal waters , 1989 .
[16] D. Pierson,et al. A modelling approach to evaluate preliminary remote sensing algorithms: Use of water quality data from Swedish great lakes , 2000 .
[17] Donald C. Pierson,et al. Remote sensing algorithms for lakes Vattern and Vanern, Sweden, based on the SeaWiFS and MERIS bands , 2000, SPIE Remote Sensing.
[18] Graham P. Harris,et al. Detection, identification and mapping of cyanobacteria — Using remote sensing to measure the optical quality of turbid inland waters , 1994 .
[19] H. Gordon,et al. Computed relationships between the inherent and apparent optical properties of a flat homogeneous ocean. , 1975, Applied optics.
[20] B. Osborne,et al. Light and Photosynthesis in Aquatic Ecosystems. , 1985 .
[21] T. Lindell,et al. A further development of the chromaticity technique for satellite mapping of suspended sediment load , 1986 .
[22] A. Walsby,et al. Optical properties of Gas-vacuolate cells and colonies of Microcystis in relation to light Attenuation in a Turbid, Stratified Reservoir (Mount Bold Reservoir, South Australia) , 1989 .
[23] L. Prieur,et al. Absorption by dissolved organic matter of the sea (yellow substance) in the UV and visible domains1 , 1981 .
[24] E. Ann Gallie,et al. Specific absorption and backscattering spectra for suspended minerals and chlorophyll-a in chilko lake, British Columbia , 1992 .
[25] A. Weidemann,et al. Quantifying absorption by aquatic particles: A multiple scattering correction for glass-fiber filters , 1993 .
[26] 永田 進一,et al. 底泥のヒ素化合物の微生物分解速度に対する吸着の影響(Limnology and Oceanography,25,23,1980) , 1980 .
[27] Annick Bricaud,et al. In situ methods for measuring the inherent optical properties of ocean waters , 1995 .
[28] L. Prieur,et al. Analysis of variations in ocean color1 , 1977 .
[29] Shubha Sathyendranath,et al. Variations in the spectral values of specific absorption of phytoplankton , 1987 .
[30] B. G. Mitchell,et al. Algorithms for determining the absorption coefficient for aquatic particulates using the quantitative filter technique , 1990, Defense, Security, and Sensing.
[31] J. Kirk,et al. Monte Carlo study of the nature of the underwater light field in, and the relationships between optical properties of, turbid yellow waters , 1981 .
[32] D. Pierson,et al. The effects of variability in the inherent optical properties on estimations of chlorophyll a by remote sensing in Swedish freshwaters. , 2001, The Science of the total environment.
[33] J. Kirk,et al. Yellow substance (gelbstoff) and its contribution to the attenuation of photosynthetically active radiation in some inland and coastal south-eastern Australian waters , 1976 .
[34] T. J. Petzold. Volume Scattering Functions for Selected Ocean Waters , 1972 .
[35] C. Mobley. Light and Water: Radiative Transfer in Natural Waters , 1994 .
[36] Arnold G. Dekker,et al. Detection of optical water quality parameters for eutrophic waters by high resolution remote sensing , 1993 .