169
Kiefer DA, RJ Olson and WH Wilson (1979) Reflectance spectroscopy of
marine phytoplankton. Part I. Optical properties as related to age
and growth rate. Limnol.Oceanogr. 24:664-672.
-and JB SooHoo (1982) Spectral absorption by marine particles of
coastal waters of Baja California. Limnol.Oceanogr. 27:492-499.
-and BG Mitchell (1983) A simple, steady-state description of phytoplankton growth based on absorption cross section and quantum efficiency. Limno1.0ceanogr. 28:770-776.
Krinsky NI (1968) The protective function of carotenoid pigments.
In:
AC Giese (ed.) Photophysio1ogy, vol. III. Academic Press, New
York. pp. 123-195.
Me1huish WH (1962) Calibration of spectrof1uorometers for measuring corrected emission spectra. J.Opt.Soc.Am. 52:1256-1258.
M.itche11 BG and DA Kiefer (1983) Phytoplankton photosynthetic quantum
efficiency and spectral fluorescence excitation efficiency response
to light limitation. Eos 63:961.
M.ore1 A (1978) Available, usable and stored radiant energy in relation
to marine photosynthesis. Deep-Sea Res. 25:673-688.
Neori A, BG Mitchell, J SooHoo, DA Kiefer and 0 Holm-Hansen (1982) Increased efficiency of energy transfer from accessory pigments to
chlorophyll ~ in phytoplankton with depth: An adaptation to changing
light conditions or reaction to environmental stress. Eos 63:96.
Rodhe W (1965) Standard correlations between pelagic photosynthesis and
light.
In: CR Goldman (ed.) Primary productivity in aquatic environments. Mem.lst~Ita1.Idrobio1. 18(Supp1):365-381.
Shibata K (1958) Spectrophotometry of intact biological materials. Absolute and relative measurements of their transmission, reflection
and absorp~ion spectra. J.Biochem. 45:599-623.
Smith RC, KS Baker, 0 Holm-Hansen and R Olson (1980) Photoinhibition
of photosynthesis in natural waters. Photochem.Photobiol. 31:585592.
Stavn RH (1981) Light attenuation in natural waters: Gershun's law,
Lambert-Beer law, and the mean light path. App1.0ptics 20:2326-2327.
Taylor DJ and IN Demas (1979) Light intensity measurements I: Large
area bolometers with microwatt sensitivities and absolute calibration of the rhodamine-B quantum counter. Ana1.Chem. 51:712-717.
Tyler JE (1975) The in situ quantum efficiency of natural phytoplankton
populations. Limno1.0ceanogr. 20:976-980.
Yentsch CS (1957i A non-extractive method for the quantitative estimation of chlorophyll in algal cultures. Nature 179:1302-1304.
-(1962) Measurement of visible light absorption by particulate
matter in the ocean. Limno1.0ceanogr. 7:207-217.
-and CM Yentsch (1979) Fluorescence spectral signatures: The
characterization of phytoplankton populations by use of excitation
and emission spectra. J.Mar.Res. 37:471-483.
Acknowledgements
This work was supported by grants 04-7-158-44123 from the
National Oceanic and Atmospheric Administration and n00014-81-K-0388
from the Office of Naval Research.
Kiefer DA, RJ Olson and WH Wilson (1979) Reflectance spectroscopy of
marine phytoplankton. Part I. Optical properties as related to age
and growth rate. Limnol.Oceanogr. 24:664-672.
-and JB SooHoo (1982) Spectral absorption by marine particles of
coastal waters of Baja California. Limnol.Oceanogr. 27:492-499.
-and BG Mitchell (1983) A simple, steady-state description of phytoplankton growth based on absorption cross section and quantum efficiency. Limno1.0ceanogr. 28:770-776.
Krinsky NI (1968) The protective function of carotenoid pigments.
In:
AC Giese (ed.) Photophysio1ogy, vol. III. Academic Press, New
York. pp. 123-195.
Me1huish WH (1962) Calibration of spectrof1uorometers for measuring corrected emission spectra. J.Opt.Soc.Am. 52:1256-1258.
M.itche11 BG and DA Kiefer (1983) Phytoplankton photosynthetic quantum
efficiency and spectral fluorescence excitation efficiency response
to light limitation. Eos 63:961.
M.ore1 A (1978) Available, usable and stored radiant energy in relation
to marine photosynthesis. Deep-Sea Res. 25:673-688.
Neori A, BG Mitchell, J SooHoo, DA Kiefer and 0 Holm-Hansen (1982) Increased efficiency of energy transfer from accessory pigments to
chlorophyll ~ in phytoplankton with depth: An adaptation to changing
light conditions or reaction to environmental stress. Eos 63:96.
Rodhe W (1965) Standard correlations between pelagic photosynthesis and
light.
In: CR Goldman (ed.) Primary productivity in aquatic environments. Mem.lst~Ita1.Idrobio1. 18(Supp1):365-381.
Shibata K (1958) Spectrophotometry of intact biological materials. Absolute and relative measurements of their transmission, reflection
and absorp~ion spectra. J.Biochem. 45:599-623.
Smith RC, KS Baker, 0 Holm-Hansen and R Olson (1980) Photoinhibition
of photosynthesis in natural waters. Photochem.Photobiol. 31:585592.
Stavn RH (1981) Light attenuation in natural waters: Gershun's law,
Lambert-Beer law, and the mean light path. App1.0ptics 20:2326-2327.
Taylor DJ and IN Demas (1979) Light intensity measurements I: Large
area bolometers with microwatt sensitivities and absolute calibration of the rhodamine-B quantum counter. Ana1.Chem. 51:712-717.
Tyler JE (1975) The in situ quantum efficiency of natural phytoplankton
populations. Limno1.0ceanogr. 20:976-980.
Yentsch CS (1957i A non-extractive method for the quantitative estimation of chlorophyll in algal cultures. Nature 179:1302-1304.
-(1962) Measurement of visible light absorption by particulate
matter in the ocean. Limno1.0ceanogr. 7:207-217.
-and CM Yentsch (1979) Fluorescence spectral signatures: The
characterization of phytoplankton populations by use of excitation
and emission spectra. J.Mar.Res. 37:471-483.
Acknowledgements
This work was supported by grants 04-7-158-44123 from the
National Oceanic and Atmospheric Administration and n00014-81-K-0388
from the Office of Naval Research.
