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turbid coastal waters: a practical method. Remote Sens Environ 74:195–206
Hu C, Müller-Karger FE, Biggs DC, Carder KL, Nababan B, Nadeau D, Vanderbloemen J (2003)
Comparison of ship and satellite bio-optical measurements on the continental margin of the
NE Gulf of Mexico. Int J Remote Sens 24:2597–2612
Hu C, Müller-Karger FE, Taylor C, Carder KL, Kelble C, Johns E, Heil CA (2005) Red tide
detection and tracing using MODIS fluorescence data: an example in SW Florida coastal
waters. Remote Sens Environ 97:311–321
Hu C, Lee Z, Muller-Karger FE, Carder KL, Walsh JJ (2006) Ocean color reveals phase shift
between marine plants and yellow substance. IEEE Geosci Remote Sens Lett 3:262–266
Hu C, Feng L, Lee Z, Davis CO, Mannino A, McClain CR, Franz BA (2012a) Dynamic range and
sensitivity requirements of satellite ocean color sensors: learning from the past. Appl Opt
51:6045–6062
Hu C, Lee Z, Franz B (2012b) Chlorophyll-a algorithms for oligotrophic oceans: a novel
approach based on three-band reflectance difference. J Geophys Res 117:C01011.
doi:10.1029/2011JC007395
IOCCG (2006) Remote sensing of inherent optical properties: fundamentals, tests of algorithms,
and applications. In: Lee Z-P (ed) Reports of the international ocean-colour coordinating
group, No. 5, Dartmouth, Canada
IOCCG (2008). Why Ocean Colour? The Societal Benefits of Ocean-Colour Technology. Platt T,
Hoepffner N, Stuart V, Brown C (eds) Reports of the International Ocean-Colour
Coordinating Group, No. 7, IOCCG, Dartmouth, Canada
IOCCG (2009).Remote Sensing in Fisheries and Aquaculture. Forget M-H, Stuart V, Platt T (eds)
Reports of the International Ocean-Colour Coordinating Group, No. 8, IOCCG, Dartmouth,
Canada
IOCCG (2010). Atmospheric Correction for Remotely-Sensed Ocean-Colour Products. Wang, M.
(ed) Reports of the International Ocean-Colour Coordinating Group, No. 10, IOCCG,
Dartmouth, Canada
Jiao HB, Zha Y, Gao J, Li YM, Wei YC, Huang JZ (2006) Estimation of chlorophyll-a
concentration in Lake Tai, China using in situ hyperspectral data. Int J Remote Sens
27:4267–4276
Kahru M, Mitchell BG (1999) Empirical chlorophyll algorithm and preliminary SeaWiFS
validation for the California Current. Int J Remote Sens 20(17):3423–3429
Kahru M, Mitchell BG (2008) Ocean color reveals increased blooms in various parts of the
World. EOS, Trans AGU 89(18):170
Keiner LE, Brown CW (1999) Estimating oceanic chlorophyll concentrations with neural
networks. Int J Remote Sens 20:189–194
Killworth PD (2004) Comment on Oceanic Rossby waves acting as a ‘Hay Rake’ for ecosystem
floating by-products. Science 304:390b
Killworth PD, Cipollini P, Uz BM, Blundell JR (2004) Physical and biological mechanisms for
planetary waves observed in satellite-derived chlorophyll. J Geophys Res 109:C07002.
doi:10.1029/2003JC001768
Kirk JTO (1984) Dependence of relationship between inherent and apparentoptical properties of
water on solar altitude. Limnol Oceanogr 29:350–356
Lavender SJ, Pinkerton MH, Moore GF, Aiken J, Blondeau-Patissier D (2005) Modification to
the atmospheric correction of SeaWiFS ocean colour images over turbid waters. Cont Shelf
Res 25:539–555
Le C, Li YM, Zha Y, Sun DY, Huang CC, Lu H (2009) A four-band semi-analytical model for
estimating chlorophyll a in highly turbid lakes: the case of Taihu Lake. China Remote Sens
Environ 113:1175–1182
Le C, Hu C, Cannizzaro J, English D, Muller-Karger F, Lee Z (2013) Evaluation of chlorophyll-a
remote sensing algorithms for an optically complex estuary. Remote Sens Environ 129:75–89
198
C. Hu and J. Campbell
description and initial imagery. Science 210:60–63
Hu C, Carder KL, Muller-Karger FE (2000) Atmospheric correction of SeaWiFS imagery over
turbid coastal waters: a practical method. Remote Sens Environ 74:195–206
Hu C, Müller-Karger FE, Biggs DC, Carder KL, Nababan B, Nadeau D, Vanderbloemen J (2003)
Comparison of ship and satellite bio-optical measurements on the continental margin of the
NE Gulf of Mexico. Int J Remote Sens 24:2597–2612
Hu C, Müller-Karger FE, Taylor C, Carder KL, Kelble C, Johns E, Heil CA (2005) Red tide
detection and tracing using MODIS fluorescence data: an example in SW Florida coastal
waters. Remote Sens Environ 97:311–321
Hu C, Lee Z, Muller-Karger FE, Carder KL, Walsh JJ (2006) Ocean color reveals phase shift
between marine plants and yellow substance. IEEE Geosci Remote Sens Lett 3:262–266
Hu C, Feng L, Lee Z, Davis CO, Mannino A, McClain CR, Franz BA (2012a) Dynamic range and
sensitivity requirements of satellite ocean color sensors: learning from the past. Appl Opt
51:6045–6062
Hu C, Lee Z, Franz B (2012b) Chlorophyll-a algorithms for oligotrophic oceans: a novel
approach based on three-band reflectance difference. J Geophys Res 117:C01011.
doi:10.1029/2011JC007395
IOCCG (2006) Remote sensing of inherent optical properties: fundamentals, tests of algorithms,
and applications. In: Lee Z-P (ed) Reports of the international ocean-colour coordinating
group, No. 5, Dartmouth, Canada
IOCCG (2008). Why Ocean Colour? The Societal Benefits of Ocean-Colour Technology. Platt T,
Hoepffner N, Stuart V, Brown C (eds) Reports of the International Ocean-Colour
Coordinating Group, No. 7, IOCCG, Dartmouth, Canada
IOCCG (2009).Remote Sensing in Fisheries and Aquaculture. Forget M-H, Stuart V, Platt T (eds)
Reports of the International Ocean-Colour Coordinating Group, No. 8, IOCCG, Dartmouth,
Canada
IOCCG (2010). Atmospheric Correction for Remotely-Sensed Ocean-Colour Products. Wang, M.
(ed) Reports of the International Ocean-Colour Coordinating Group, No. 10, IOCCG,
Dartmouth, Canada
Jiao HB, Zha Y, Gao J, Li YM, Wei YC, Huang JZ (2006) Estimation of chlorophyll-a
concentration in Lake Tai, China using in situ hyperspectral data. Int J Remote Sens
27:4267–4276
Kahru M, Mitchell BG (1999) Empirical chlorophyll algorithm and preliminary SeaWiFS
validation for the California Current. Int J Remote Sens 20(17):3423–3429
Kahru M, Mitchell BG (2008) Ocean color reveals increased blooms in various parts of the
World. EOS, Trans AGU 89(18):170
Keiner LE, Brown CW (1999) Estimating oceanic chlorophyll concentrations with neural
networks. Int J Remote Sens 20:189–194
Killworth PD (2004) Comment on Oceanic Rossby waves acting as a ‘Hay Rake’ for ecosystem
floating by-products. Science 304:390b
Killworth PD, Cipollini P, Uz BM, Blundell JR (2004) Physical and biological mechanisms for
planetary waves observed in satellite-derived chlorophyll. J Geophys Res 109:C07002.
doi:10.1029/2003JC001768
Kirk JTO (1984) Dependence of relationship between inherent and apparentoptical properties of
water on solar altitude. Limnol Oceanogr 29:350–356
Lavender SJ, Pinkerton MH, Moore GF, Aiken J, Blondeau-Patissier D (2005) Modification to
the atmospheric correction of SeaWiFS ocean colour images over turbid waters. Cont Shelf
Res 25:539–555
Le C, Li YM, Zha Y, Sun DY, Huang CC, Lu H (2009) A four-band semi-analytical model for
estimating chlorophyll a in highly turbid lakes: the case of Taihu Lake. China Remote Sens
Environ 113:1175–1182
Le C, Hu C, Cannizzaro J, English D, Muller-Karger F, Lee Z (2013) Evaluation of chlorophyll-a
remote sensing algorithms for an optically complex estuary. Remote Sens Environ 129:75–89
198
C. Hu and J. Campbell
