Edwards Schalles for her generous support, encouragement, and patience. This paper is
Contribution Number 949 from the University of Georgia Marine Institute.
14. References
Ackleson, S.G., and V. Klemas.1986. Two-flow simulation of the natural light field within a canopy of
submerged aquatic vegetation. Applied Optics, 25:1129-1136.
Aiken, J., G.F. Moore, C.C. Trees, S.B. Hooker, and D.K. Clark. 1995. The SeaWiFS CZCS-Type Pigment
Algorithm. SeaWiFS Technical Report Series , NASA Technical Memorandum 104566, Vol. 29.
Goddard Space Flight Center, Greenbelt, Maryland.
Albert, A., and C.D. Mobley. 2003. An analytical model for subsurface irradiance and remote sensing
reflectance in deep and shallow case-2 waters. Ocean Optics Express, 11: 2873-2890.
Alberts, J.J., and Z. Filip. 1994. Humic substances in rivers and estuaries of Georgia, USA. Trends in
Chemical Geology, 1:143-162.
Alberts, J.J., and C. Griffin. 1996. Formation of particulate organic carbon (POC) from dissolved organic
carbon (DOC) in salt marsh estuaries of the southeastern United States. Archives fur Hydrobiologie
Special Issues, Advances in Limnology, 47:401-409.
Alberts, J.J., M. Takacs, and J.F. Schalles. 2004. Ultraviolet-visible and fluorescence spectral evidence of
natural organic matter (NOM) changes along an estuarine salinity gradient. Estuaries, 27:297-311.
American Public Health Association. 1998. Standard Methods for the Examination of Water and Wastewater
(20th edition). Section 1200 - Chlorophyll. American Public Health Association.
Andre, J.-M. 1992. Ocean color remote-sensing and the subsurface vertical structure of phytoplankton
pigments. Deep Sea Research, 39:763-779.
Annenberg, P. 2000. Analysis of CASI data - a case study from the Archipelago of Stockholm, Sweden.
Proceedings of the Sixth International Conference on Remote Sensing for Marine and Coastal
Environments. University of Michigan Press., 2:149-156.
Antoine, D., J.-M. Andre, and A. Morel. 1996. Oceanic primary production 2. Estimation of global scale from
satellite (coastal zone color scanner) chlorophyll. Global Biogeochemical Cycles, 10:57-69.
Babin, M., A. Morel, and B. Gentili. 1996. Remote sensing of sea surface Sun-induced chlorophyll
fluorescence: consequences of natural variations in the optical characteristics of phytoplankton and the
quantum yield of chlorophyll a fluorescence. International Journal of Remote Sensing, 17:2417-2448.
Barnard, A.H., W.S. Pegau, and J.R.V. Zaneveld. 1998. Global relationships of the inherent optic properties
of the oceans. Journal of Geophysical Research, 103:24,955-24,968.
Bidigare, R.R., M.E. Ondrusek, J.H. Morrow, and D.A. Kiefer. 1990. In vivo absorption properties of algal
pigments. SPIE Ocean Optics X: 1302:290-302.
Blondeau-Patissier, D., G.H. Tilstone, V. Martinez-Vicente, and G.F. Moore. 2004. Comparison of biophysical marine products from SeaWiFS, MODIS, and a bio-optical model with in situ measurements
from Northern European waters. Journal of Optics A: Pure and Applied Optics, 6:875-889.
Boss, E., and J.R.V. Zaneveld. 2003. The effect of bottom substrate on inherent optical properties: Evidence
of biogeochemical processes. Limnology and Oceanography, 48:346-354.
Bowers, D.G., D. Evans, D.N. Thomas, K. Ellis, and P.J. le B. 2004. Williams. Interpreting the colour of an
estuary. Estuarine, Coastal, and Shelf Science, 59:13-20.
Brando, V.E., and A.G. Dekker. 2003. Satellite hyperspectral remote sensing for estimating estuarine and
coastal water quality. IEEE Transactions on Geosciences and Remote Sensing, 41:1378-1387.
Bricaud, A., A. Morel, and L. Prieur. 1981. Absorption by dissolved organic matter in the sea (yellow
substances) in the UV and visible domains. Limnology and Oceanography, 26:43-53.
Brown, C.W., and J.A. Yoder. 1994. Coccolithophorid blooms in the global ocean. Journal of Geophysical
Research, 99:7467-7482.
Bukata, R.P., J.H. Jerome, K.Y. Kondatyev, and D.V. Pozdnyakov. 1995. Optical Properties and Remote
Sensing of Inland and Coastal Waters. CRC Press, Boca Raton, 362 pp.
Butler, W.L. 1966. Spectral characteristics of chlorophyll in green plants. In: (L.P. Vernon and G.R. Seely,
editors) The Chlorophylls. Academic Press, pp. 343-380.
Carder, K.L., and R.G. Steward. 1985. A remote-sensing reflectance model of a red-tide dinoflagellate off
west Florida. Limnology and Oceanography, 30:286-298.
Carder, K.L., R.G. Steward, G.R. Harvey, and P.B. Ortner. 1989. Marine humic and fulvic acids: Their
effects on remote sensing of ocean chlorophyll. Limnology and Oceanography, 34:68-81.
Carder, K.L., F.R. Chen, Z.P. Lee, S.K. Hawes, and D. Kamykowski. 1999. Semianalytic ModerateResolution Imaging Spectrometer algorithms for chlorophyll a and absorption with bio-optical domains
based on nitrate-depletion temperatures. Journal of Geophysical Research, 104:5403-5421.
Carlough, L.A. 1994. Origins, structure, and trophic significance of amorphous seston in a blackwater river.
Freshwater Biology, 31:227-237.
75
Optical Remote Sensing Techniques
Contribution Number 949 from the University of Georgia Marine Institute.
14. References
Ackleson, S.G., and V. Klemas.1986. Two-flow simulation of the natural light field within a canopy of
submerged aquatic vegetation. Applied Optics, 25:1129-1136.
Aiken, J., G.F. Moore, C.C. Trees, S.B. Hooker, and D.K. Clark. 1995. The SeaWiFS CZCS-Type Pigment
Algorithm. SeaWiFS Technical Report Series , NASA Technical Memorandum 104566, Vol. 29.
Goddard Space Flight Center, Greenbelt, Maryland.
Albert, A., and C.D. Mobley. 2003. An analytical model for subsurface irradiance and remote sensing
reflectance in deep and shallow case-2 waters. Ocean Optics Express, 11: 2873-2890.
Alberts, J.J., and Z. Filip. 1994. Humic substances in rivers and estuaries of Georgia, USA. Trends in
Chemical Geology, 1:143-162.
Alberts, J.J., and C. Griffin. 1996. Formation of particulate organic carbon (POC) from dissolved organic
carbon (DOC) in salt marsh estuaries of the southeastern United States. Archives fur Hydrobiologie
Special Issues, Advances in Limnology, 47:401-409.
Alberts, J.J., M. Takacs, and J.F. Schalles. 2004. Ultraviolet-visible and fluorescence spectral evidence of
natural organic matter (NOM) changes along an estuarine salinity gradient. Estuaries, 27:297-311.
American Public Health Association. 1998. Standard Methods for the Examination of Water and Wastewater
(20th edition). Section 1200 - Chlorophyll. American Public Health Association.
Andre, J.-M. 1992. Ocean color remote-sensing and the subsurface vertical structure of phytoplankton
pigments. Deep Sea Research, 39:763-779.
Annenberg, P. 2000. Analysis of CASI data - a case study from the Archipelago of Stockholm, Sweden.
Proceedings of the Sixth International Conference on Remote Sensing for Marine and Coastal
Environments. University of Michigan Press., 2:149-156.
Antoine, D., J.-M. Andre, and A. Morel. 1996. Oceanic primary production 2. Estimation of global scale from
satellite (coastal zone color scanner) chlorophyll. Global Biogeochemical Cycles, 10:57-69.
Babin, M., A. Morel, and B. Gentili. 1996. Remote sensing of sea surface Sun-induced chlorophyll
fluorescence: consequences of natural variations in the optical characteristics of phytoplankton and the
quantum yield of chlorophyll a fluorescence. International Journal of Remote Sensing, 17:2417-2448.
Barnard, A.H., W.S. Pegau, and J.R.V. Zaneveld. 1998. Global relationships of the inherent optic properties
of the oceans. Journal of Geophysical Research, 103:24,955-24,968.
Bidigare, R.R., M.E. Ondrusek, J.H. Morrow, and D.A. Kiefer. 1990. In vivo absorption properties of algal
pigments. SPIE Ocean Optics X: 1302:290-302.
Blondeau-Patissier, D., G.H. Tilstone, V. Martinez-Vicente, and G.F. Moore. 2004. Comparison of biophysical marine products from SeaWiFS, MODIS, and a bio-optical model with in situ measurements
from Northern European waters. Journal of Optics A: Pure and Applied Optics, 6:875-889.
Boss, E., and J.R.V. Zaneveld. 2003. The effect of bottom substrate on inherent optical properties: Evidence
of biogeochemical processes. Limnology and Oceanography, 48:346-354.
Bowers, D.G., D. Evans, D.N. Thomas, K. Ellis, and P.J. le B. 2004. Williams. Interpreting the colour of an
estuary. Estuarine, Coastal, and Shelf Science, 59:13-20.
Brando, V.E., and A.G. Dekker. 2003. Satellite hyperspectral remote sensing for estimating estuarine and
coastal water quality. IEEE Transactions on Geosciences and Remote Sensing, 41:1378-1387.
Bricaud, A., A. Morel, and L. Prieur. 1981. Absorption by dissolved organic matter in the sea (yellow
substances) in the UV and visible domains. Limnology and Oceanography, 26:43-53.
Brown, C.W., and J.A. Yoder. 1994. Coccolithophorid blooms in the global ocean. Journal of Geophysical
Research, 99:7467-7482.
Bukata, R.P., J.H. Jerome, K.Y. Kondatyev, and D.V. Pozdnyakov. 1995. Optical Properties and Remote
Sensing of Inland and Coastal Waters. CRC Press, Boca Raton, 362 pp.
Butler, W.L. 1966. Spectral characteristics of chlorophyll in green plants. In: (L.P. Vernon and G.R. Seely,
editors) The Chlorophylls. Academic Press, pp. 343-380.
Carder, K.L., and R.G. Steward. 1985. A remote-sensing reflectance model of a red-tide dinoflagellate off
west Florida. Limnology and Oceanography, 30:286-298.
Carder, K.L., R.G. Steward, G.R. Harvey, and P.B. Ortner. 1989. Marine humic and fulvic acids: Their
effects on remote sensing of ocean chlorophyll. Limnology and Oceanography, 34:68-81.
Carder, K.L., F.R. Chen, Z.P. Lee, S.K. Hawes, and D. Kamykowski. 1999. Semianalytic ModerateResolution Imaging Spectrometer algorithms for chlorophyll a and absorption with bio-optical domains
based on nitrate-depletion temperatures. Journal of Geophysical Research, 104:5403-5421.
Carlough, L.A. 1994. Origins, structure, and trophic significance of amorphous seston in a blackwater river.
Freshwater Biology, 31:227-237.
75
Optical Remote Sensing Techniques
