Bailey SW, McCLain CR, Werdell PJ, Schieber BD (2000) Normalized water-leaving radiance
and chlorophyll a match-up analyses. In: Hooker SB, Firestone ER (eds), NASA Technical
Memorandum 2000-206892SeaWiFS postlaunch calibration and validation analyses, NASA
Goddard Space Flight Centerm, Part 2, vol 10. Greenbelt, Maryland, pp 45–52
Bailey SW, Werdell PJ (2006) A multi-sensor approach for the on-orbit validation of ocean color
satellite data products. Remote Sens Environ 102:12–23
Bailey SW, Franz BA, Werdell PJ (2010) Estimation of near-infrared water-leaving reflectance
for satellite ocean color data processing. Opt Express 18:7521–7527
Behrenfeld MJ, Randerson JT, McClain CR et al (2001) Biospheric primary production during an
ENSO transition. Science 291:2594–2597
Behrenfeld MJ, Boss E, Siegel DA, Shea DM (2005) Global remote sensing of phytoplankton
physiology. Global Biogeochem Cycles 19:GB1006. doi:10.1029/2004GB002299
Behrenfeld MJ, Siegel DA, O’Malley RT (2008) Global ocean phytoplankton and productivity.
BAMS 89(7):S56–S61
Behrenfeld M, O’Malley R, Siegel DA, McClain CR, Sarmiento J, Feldman G, Falkowski P, Boss
E, Milligan A (2006) Climate-driven trends in contemporary ocean productivity. Nature
444:752–755
Behrenfeld MJ, Westberry TK, Boss ES, O’Malley RT, Siegel DA, Wiggert JD, Franz BA,
McClain CR, Feldman GC, Doney SC, Moore JK, Dall’Olmo G, Milligan AJ, Lima I,
Mahowald N (2009) Satellite-detected fluorescence reveals global physiology of ocean
phytoplankton. Biogeosciences 6:779–794
Beman JM, Arrigo KR, Matson PA (2005) Agricultural runoff fuels large phytoplankton blooms
in vulnerable areas of the ocean. Nature 434:211–214
Brando VE, Dekker AG (2003) Satellite hyperspectral remote sensing for estimating estuarine
and coastal water quality. IEEE Trans Geosci Remote Sens 41:1378–1387
Brewin RJW, Sathyendranath S, Mueller D et al (2013). The ocean colour climate change
initiative: a round-robin comparison on in-water bio-optical algorithms. Remote Sens Environ
(in press)
Bricaud A, Babin M, Morel A, Claustre H (1995) Variability in the chlorophyll-specific
absorption coefficients of natural phytoplankton: analysis and parameterization. J Geophys
Res 100:13321–13332
Bricaud A, Claustre H, Ras J, Oubelkheir K (2004) Natural variability of phytoplanktonic
absorption in oceanic waters: influence of the size structure of algal populations. J Geophys
Res 109:C11010
Brown O, Evans RH, Brown JW, Gordon HR, Smith RC et al (1985) Phytoplankton blooming of
the U.S. east coast: a satellite description. Science 229:163–167
Campbell JW, Esaias WE (1983) Basis for spectral curvature algorithms in remote sensing of
chlorophyll. Appl Opt 22:1084–1093
Campbell JW (1995) The lognormal distribution as a model for bio-optical variability in the sea.
J Geophys Rex 100(C7):13237–13254
Cannizzaro JP, Carder KL (2006) Estimating chlorophyll a concentrations from remote-sensing
reflectance data in optically shallow waters. Remote Sens Environ 101:13–24
Cannizzaro JP, Carder KL, Chen FR, Heil CA, Vargo GA (2008) A novel technique for detection
of the toxic dinoflagellate, Karenia brevis, in the Gulf of Mexico from remotely sensed ocean
color data. Cont Shelf Res 28:137–158
Cannizzaro JP, Hu C, Carder KL, Kelble CR, Melo N, Johns EM, Vargo GA, Heil CA (2013) On
the accuracy of SeaWiFS ocean color data products on the West Florida Shelf. J Coastal Res.
doi:10.2112/JCOASTRES-D-12-00223.1
Carder KL, Hawes SK, Baker KA, Smith RC, Steward RG, Mitchell BG (1991) Reflectance
model for quantifying chlorophyll a in the presence of productivity degradation products.
J Geophys Res 96:20599–20611
Carder KL, Chen FR, Lee ZP, Hawes SK, Kamykowski D (1999) Semianalytic moderateresolution imaging spectrometer algorithms for chlorophyll a and absorption with bio-optical
domains based on nitrate-depletion temperatures. J Geophys Res 104:5403–5421
7 Oceanic Chlorophyll-a Content
195
and chlorophyll a match-up analyses. In: Hooker SB, Firestone ER (eds), NASA Technical
Memorandum 2000-206892SeaWiFS postlaunch calibration and validation analyses, NASA
Goddard Space Flight Centerm, Part 2, vol 10. Greenbelt, Maryland, pp 45–52
Bailey SW, Werdell PJ (2006) A multi-sensor approach for the on-orbit validation of ocean color
satellite data products. Remote Sens Environ 102:12–23
Bailey SW, Franz BA, Werdell PJ (2010) Estimation of near-infrared water-leaving reflectance
for satellite ocean color data processing. Opt Express 18:7521–7527
Behrenfeld MJ, Randerson JT, McClain CR et al (2001) Biospheric primary production during an
ENSO transition. Science 291:2594–2597
Behrenfeld MJ, Boss E, Siegel DA, Shea DM (2005) Global remote sensing of phytoplankton
physiology. Global Biogeochem Cycles 19:GB1006. doi:10.1029/2004GB002299
Behrenfeld MJ, Siegel DA, O’Malley RT (2008) Global ocean phytoplankton and productivity.
BAMS 89(7):S56–S61
Behrenfeld M, O’Malley R, Siegel DA, McClain CR, Sarmiento J, Feldman G, Falkowski P, Boss
E, Milligan A (2006) Climate-driven trends in contemporary ocean productivity. Nature
444:752–755
Behrenfeld MJ, Westberry TK, Boss ES, O’Malley RT, Siegel DA, Wiggert JD, Franz BA,
McClain CR, Feldman GC, Doney SC, Moore JK, Dall’Olmo G, Milligan AJ, Lima I,
Mahowald N (2009) Satellite-detected fluorescence reveals global physiology of ocean
phytoplankton. Biogeosciences 6:779–794
Beman JM, Arrigo KR, Matson PA (2005) Agricultural runoff fuels large phytoplankton blooms
in vulnerable areas of the ocean. Nature 434:211–214
Brando VE, Dekker AG (2003) Satellite hyperspectral remote sensing for estimating estuarine
and coastal water quality. IEEE Trans Geosci Remote Sens 41:1378–1387
Brewin RJW, Sathyendranath S, Mueller D et al (2013). The ocean colour climate change
initiative: a round-robin comparison on in-water bio-optical algorithms. Remote Sens Environ
(in press)
Bricaud A, Babin M, Morel A, Claustre H (1995) Variability in the chlorophyll-specific
absorption coefficients of natural phytoplankton: analysis and parameterization. J Geophys
Res 100:13321–13332
Bricaud A, Claustre H, Ras J, Oubelkheir K (2004) Natural variability of phytoplanktonic
absorption in oceanic waters: influence of the size structure of algal populations. J Geophys
Res 109:C11010
Brown O, Evans RH, Brown JW, Gordon HR, Smith RC et al (1985) Phytoplankton blooming of
the U.S. east coast: a satellite description. Science 229:163–167
Campbell JW, Esaias WE (1983) Basis for spectral curvature algorithms in remote sensing of
chlorophyll. Appl Opt 22:1084–1093
Campbell JW (1995) The lognormal distribution as a model for bio-optical variability in the sea.
J Geophys Rex 100(C7):13237–13254
Cannizzaro JP, Carder KL (2006) Estimating chlorophyll a concentrations from remote-sensing
reflectance data in optically shallow waters. Remote Sens Environ 101:13–24
Cannizzaro JP, Carder KL, Chen FR, Heil CA, Vargo GA (2008) A novel technique for detection
of the toxic dinoflagellate, Karenia brevis, in the Gulf of Mexico from remotely sensed ocean
color data. Cont Shelf Res 28:137–158
Cannizzaro JP, Hu C, Carder KL, Kelble CR, Melo N, Johns EM, Vargo GA, Heil CA (2013) On
the accuracy of SeaWiFS ocean color data products on the West Florida Shelf. J Coastal Res.
doi:10.2112/JCOASTRES-D-12-00223.1
Carder KL, Hawes SK, Baker KA, Smith RC, Steward RG, Mitchell BG (1991) Reflectance
model for quantifying chlorophyll a in the presence of productivity degradation products.
J Geophys Res 96:20599–20611
Carder KL, Chen FR, Lee ZP, Hawes SK, Kamykowski D (1999) Semianalytic moderateresolution imaging spectrometer algorithms for chlorophyll a and absorption with bio-optical
domains based on nitrate-depletion temperatures. J Geophys Res 104:5403–5421
7 Oceanic Chlorophyll-a Content
195
