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References
Balch WM, Gordon HR, Bowler BC, Drapeau DT, Booth ES (2005) Calcium carbonate
measurements in the surface global ocean based on Moderate-Resolution Imaging Spectrora-
diometer data. J Geophys Res 110. doi: 10.1029/2004JC002560
Barcelos e Ramos J, Muller MN, Riebesell U (2010) Short-term response of the coccolithophore
Emiliania huxleyi to an abrupt change in seawater carbon dioxide concentrations.
Biogeosciences 7:177-186
Broerse ATC, Tyrrell T, Young JR, Poulton AJ, Merico A, Balch WM, Miller PI (2003) The cause
of bright waters in the Bering Sea in winter. Cont Shelf Res 23:1579-1596. doi: 10.1016/
j.csr.2003.07.001
Brown CW, Yoder JA (1994) Coccolithophorid blooms in the global ocean. J Geophys Res
99:7467-7482
Carton JA, Giese BS (2008) A reanalysis of ocean climate using simple ocean data assimilation
(SODA). Mon Wea Rev 136:2999-3017
Charalampopoulou A, Tyrrell T, Poulton A, Lucas M (2010) Investigating the response of
coccolithophores to variable carbonate chemistry between UK and Svalbard, AGU 2010
Ocean Science Meeting, Portland, OR. BO15A-07
Delworth TL, Dixon KW (2000) Implications of the recent trend in the Arctic/North Atlantic
Oscillation for the North Atlantic thermohaline circulation. J Climate 13:3721-3727
Doney SC, Fabry VJ, Feely RA, Kleypas JA (2009) Ocean acidification: the other CO2 problem.
Ann Rev Mar Sci 1:169-192. doi: 10.1146/annurev.marine.010908.163834
Draper NR, Smith H (1981) Applied regression analysis. Wiley, New York
Hays GC, Richardson AJ, Robinson C (2005) Climate change and marine plankton. Trends Ecol
Evol 20:337-344
Heidinger AK, Cao C, Sullivan JT (2002) Using Moderate Resolution Imaging Spectrometer
(MODIS)
to calibrate advanced very high resolution radiometer
reflectance channels.
J Geophys Res 107. doi: 10.1029/2001JD002035
Holligan PM, Viollier M, Harbour DS, Camus P, Champagne-Philippe M (1983) Satellite and ship
studies of coccolithophore production along a continental shelf edge. Nature 304:339-342
Hughes L (2000) Biological consequences of global warming: is the signal already apparent?
Trends Ecol Evol 15:56-61
Hurrell JW (1995) Decadal trends in the North Atlantic Oscillation regional temperatures and
precipitation. Science 269:676-679
Hurrell JW, Deser C (2009) North Atlantic climate variability: the role of the North Atlantic
Oscillation. J Mar Syst 78(1):28-41. doi: 10.1016/j.jmarsys.2008.11.026
Iglesias-Rodriguez MD, Brown CW, Doney SC, Kleypas J, Kolber D, Kolber Z, Hayes PK,
Falkowski PG (2002) Representing key phytoplankton functional groups in ocean carbon
cycle models: coccolithophorids. Global Biogeochem Cycles 16(4):1100. doi: 10.1029/
2001GB001454
Iglesias-Rodriguez MD, Halloran PR, Rickaby REM, Hall IR, Colmenero-Hidalgo E, Gittins JR,
Green DRH, Tyrrell T, Gibbs SJ, von Dassow P, Rehm E, Armbrust EV, Boessenkool KP
(2008) Phytoplankton calcification in a high-CO2 world. Science 320:336-340. doi: 10.112/
science.1154122
Mantua NJ, Hare SR, Zhang Y, Wallace JM, Francis RC (1997) A Pacific interdecadal oscillation
with impacts on salmon production. Bull Am Meteor Soc 78:1069-1079
Merico A, Tyrrell T, Brown CW, Groom SB, Miller PI (2003) Analysis of satellite imagery for
Emiliania huxleyi blooms in the Bering Sea before 1997. Geophys Res Lett 30(6):1337.
doi: 10.1029/2002GL016648
Napp JM, Hunt GL (2001) Anomalous conditions in the south-eastern Bering Sea 1997: linkages
among climate, weather, ocean, and biology. Fish Oceanogr 10(1):61-68
Platt T, Sathyendranath S (2008) Ecological indicators for the pelagic zone of the ocean from
remote sensing. Remote Sens Environ 112(8):3426-3436
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