Morel A (1988) Optical modeling of the upper ocean in relation to its biogenous matter content
(Case I Waters). J Geophys Res 49:177–202
Morel A, Ahn YH (1990) Optical efficiency factors of free-living marine bacteria: Influence of
bacterioplankton upon the optical properties and particulate organic carbon in oceanic waters.
J Mar Res 48:145–175
Morel A, Gentili B (1991) Diffuse reflectance of oceanic waters: its dependence on sun angle as
influenced by molecular scattering contribution. Appl Opt 30:4427–4438
Morel A, Maritorena S (2001) Bio-optical properties of oceanic waters: A reappraisal. J Geophys
Res 106:7163–7180
Mouw CB, Yoder JA (2010) Optical determination of phytoplankton size composition from
global SeaWiFS imagery. J Geophys Res 115:C12018. doi:10.1029/2010JC006337
Mukai S, Sano I, Okada Y (2000) Inverse problems in the atmosphere–ocean system: estimation
of aerosol characteristics and phytoplankton distribution. Appl Math Comput 116:93–101.
doi:10.1016/S0096-3003(99)00197-6
Nair A, Sathyendranath S, Platt T, Morales J, Stuart V, Forget M, Devred E, Bouman H (2008)
Remote sensing of phytoplankton functional types. Remote Sens Environ 112:3366–3375
National Aeronautics and Space Administration (2010) Responding to the challenge of climate
and environmental change: NASA’s plan for a climate-centric architecture for earth
observations and applications from space. p 48 (http://science.nasa.gov/earth-science/)
National Research Council (2004) Climate data records from environmental satellites: interim
report. committee on climate data records from NOAA operational satellites. ISBN: 0-30909168-3, p 150
National Research Council (2007) Earth science and applications from space: national
imperatives for the next decade and beyond. Committee on earth science and applications
from space: a community assessment and strategy for the future, National Research Council.
ISBN: 0-309-66714-3, p 456. (http://www.nap.edu/catalog/11820.html)
National Research Council (2008). Earth observations from space: the first 50 years of scientific
accomplishments. National Academies Press, Washington, D.C
Odriozola AL, Varela R, Hu C, Astor Y, Lorenzoni L, Muller-Karger FE (2007) On the
absorption of light in the Orinoco River plume. Cont Shelf Res 27:1447–1464
O’Reilly JE et al (2000) SeaWiFS Postlaunch Calibration and Validation Analyses, Part 3. NASA
Technical Memorandum 2000-206892, Hooker SB, Firestone ER, (eds.) (NASA Goddard
Space Flight Center), Vol 11, p 49
Pierson D, Sträombäack N (2000) A modeling approach to evaluate preliminary remote sensing
algorithms: use of water quality data from Swedish great lakes. Geophysical 36:177–202
Platt T, Fuentes-Yaco C, Frank KT (2003) Marine ecology: spring algal bloom and larval fish
survival. Nature 423:398–399
Polovina JJ, Howell EA, Kobayashi DR et al (2001) The transition zone chlorophyll front, a
dynamic global feature defining migration and forage habitat for marine resources. Prog
Oceanogr 49:469–483
Polovina JJ, Howell EA, Abecassis M (2008) Ocean’s least productive waters are expanding.
Geophys Rev Lett 35:L03618. doi:10.1029/2007GL031745
Pope R, Fry E (1997) Absorption spectrum (380–700 nm) of pure waters: II. Integrating cavity
measurements. Appl Opt 36:8710–8723
Prieur L (1976) Transfert radiatif dans les eaux de mer. Application a la determination de
parametres optiques caracteris ant leur teneur en substances dissoutes et leur contenu en
particules. D. Sci. Thesis, Univ. Pierre et Marie Curie, p 243
Preisendorfer RW (1976) Hydrologic optics, vol 1: Introduction. Springfield: National Technical
Information Service. Also available on CD, Office of Naval Research
Roesler CS, Perry MJ (1995) In situ phytoplankton absorption, fluorescence emission, and
particulate backscattering spectra determined from reflectance. J Geophys Res
100:13279–13294
Ruddick KG, Ovidio f, Rijkeboer M (2000) Atmospheric correction of SeaWiFS imagery for
turbid coastal and inland waters. Appl Opt 39:897–912
200
C. Hu and J. Campbell
(Case I Waters). J Geophys Res 49:177–202
Morel A, Ahn YH (1990) Optical efficiency factors of free-living marine bacteria: Influence of
bacterioplankton upon the optical properties and particulate organic carbon in oceanic waters.
J Mar Res 48:145–175
Morel A, Gentili B (1991) Diffuse reflectance of oceanic waters: its dependence on sun angle as
influenced by molecular scattering contribution. Appl Opt 30:4427–4438
Morel A, Maritorena S (2001) Bio-optical properties of oceanic waters: A reappraisal. J Geophys
Res 106:7163–7180
Mouw CB, Yoder JA (2010) Optical determination of phytoplankton size composition from
global SeaWiFS imagery. J Geophys Res 115:C12018. doi:10.1029/2010JC006337
Mukai S, Sano I, Okada Y (2000) Inverse problems in the atmosphere–ocean system: estimation
of aerosol characteristics and phytoplankton distribution. Appl Math Comput 116:93–101.
doi:10.1016/S0096-3003(99)00197-6
Nair A, Sathyendranath S, Platt T, Morales J, Stuart V, Forget M, Devred E, Bouman H (2008)
Remote sensing of phytoplankton functional types. Remote Sens Environ 112:3366–3375
National Aeronautics and Space Administration (2010) Responding to the challenge of climate
and environmental change: NASA’s plan for a climate-centric architecture for earth
observations and applications from space. p 48 (http://science.nasa.gov/earth-science/)
National Research Council (2004) Climate data records from environmental satellites: interim
report. committee on climate data records from NOAA operational satellites. ISBN: 0-30909168-3, p 150
National Research Council (2007) Earth science and applications from space: national
imperatives for the next decade and beyond. Committee on earth science and applications
from space: a community assessment and strategy for the future, National Research Council.
ISBN: 0-309-66714-3, p 456. (http://www.nap.edu/catalog/11820.html)
National Research Council (2008). Earth observations from space: the first 50 years of scientific
accomplishments. National Academies Press, Washington, D.C
Odriozola AL, Varela R, Hu C, Astor Y, Lorenzoni L, Muller-Karger FE (2007) On the
absorption of light in the Orinoco River plume. Cont Shelf Res 27:1447–1464
O’Reilly JE et al (2000) SeaWiFS Postlaunch Calibration and Validation Analyses, Part 3. NASA
Technical Memorandum 2000-206892, Hooker SB, Firestone ER, (eds.) (NASA Goddard
Space Flight Center), Vol 11, p 49
Pierson D, Sträombäack N (2000) A modeling approach to evaluate preliminary remote sensing
algorithms: use of water quality data from Swedish great lakes. Geophysical 36:177–202
Platt T, Fuentes-Yaco C, Frank KT (2003) Marine ecology: spring algal bloom and larval fish
survival. Nature 423:398–399
Polovina JJ, Howell EA, Kobayashi DR et al (2001) The transition zone chlorophyll front, a
dynamic global feature defining migration and forage habitat for marine resources. Prog
Oceanogr 49:469–483
Polovina JJ, Howell EA, Abecassis M (2008) Ocean’s least productive waters are expanding.
Geophys Rev Lett 35:L03618. doi:10.1029/2007GL031745
Pope R, Fry E (1997) Absorption spectrum (380–700 nm) of pure waters: II. Integrating cavity
measurements. Appl Opt 36:8710–8723
Prieur L (1976) Transfert radiatif dans les eaux de mer. Application a la determination de
parametres optiques caracteris ant leur teneur en substances dissoutes et leur contenu en
particules. D. Sci. Thesis, Univ. Pierre et Marie Curie, p 243
Preisendorfer RW (1976) Hydrologic optics, vol 1: Introduction. Springfield: National Technical
Information Service. Also available on CD, Office of Naval Research
Roesler CS, Perry MJ (1995) In situ phytoplankton absorption, fluorescence emission, and
particulate backscattering spectra determined from reflectance. J Geophys Res
100:13279–13294
Ruddick KG, Ovidio f, Rijkeboer M (2000) Atmospheric correction of SeaWiFS imagery for
turbid coastal and inland waters. Appl Opt 39:897–912
200
C. Hu and J. Campbell
