Geoscience Reference
In-Depth Information
Hemisphere, Mar. Micropaleontol. , 68 , 84-114, doi:10.1016/
j.marmicro.2008.01.012.
Reeh, N. (2004), Holocene climate and fjord glaciations in north-
east Greenland: Implications for IRD deposition in the North
Atlantic, Sediment. Geol. , 165 , 333-342.
Renssen, H., H. Goosse, T. Fichefet, V. Brovkin, E. Driesschaert,
and F. Wolk (2005), Simulating the Holocene climate evolution
at northern high latitudes using a coupled atmosphere-sea ice-
ocean-vegetation model, Clim. Dyn. , 24 , 23-43.
Rochon, A., A. de Vernal, J. l. Turon, J. Matthiessen, and M. J.
Head (1999), Distribution of Dinoflagellate Cyst Assemblages in
Surface Sediments From the North Atlantic Ocean and Adjacent
Basins and Quantitative Reconstruction of Sea-Surface Param-
eters , AASP Found. Contrib. Ser ., vol. 35, 146 pp., Am. Assoc.
of Stratigr. Palynol., College Station, Tex.
Rosell-Melé, A., and E. L. McClymont (2007), Biomarkers as pale-
oceanographic proxies, in Proxies in Late Cenozoic Paleocea-
nography , edited by C. Hillaire-Marcel and A. de Vernal, pp.
459-509, Elsevier, New York.
Sancetta, C. (1981), Oceanographic and ecologic significance of
diatoms in surface sediments of the Bering and Okhotsk seas,
Deep Sea Res. , Part A , 2 8, 789-817.
Sancetta, C. (1983), effect of Pleistocene glaciation upon oceano-
graphic characteristics of the North Pacific Ocean and Bering
Sea, Deep Sea Res. , Part A , 30 , 851-869.
Sarnthein, M., S. Van Kreveld, H. Erlenkeuser, P. M. Grootes,
M. Kucera, U. Pflaumann, and M. Schulz (2002), Centennial-
to-millennial-scale periodicities of Holocene climate and sedi-
ment injections off the western Barents shelf, 75°N, Boreas , 32 ,
447-461.
Schmidt, G. A. (1999), Forward modeling of carbonate proxy data
from planktic foraminifera using oxygen isotope tracers in a glo-
bal ocean model, Paleoceanography 14 , 482-497.
Simard, A., and A. de Vernal (1998), distribution des kystes de
Alexandrium excavatum dans les sédiments récents et postgla-
ciaires des marges est-canadiennes, Geogr. Phys. Quaternaire ,
52 , 361-371.
Simstich, J., M. Sarnthein, and H. Erlenkeuser (2003), Paired δ 18 O
signals of Neogloboquadrina pachyderma (s) and Turborotalita
quinqueloba show thermal stratification structure in Nordic Seas,
Mar. Micropaleontol. , 48 , 107-125.
Smith, l. M., G. H. Miller, B. Otto-Bliesner, and S.-I. Shin (2003),
Sensitivity of the Northern Hemisphere climate system to ex-
treme changes in Holocene Arctic sea ice, Quat. Sci. Rev. , 22 ,
645-658.
Solignac, S., A. de Vernal, and C. Hillaire-Marcel (2004), Holocene
sea-surface conditions in the North Atlantic—Contrasted trends
and regimes between the eastern and western sectors (labrador
Sea vs. Iceland Basin), Quat. Sci. Rev. , 23 , 319-334.
Solignac, S., J. Giraudeau, and A. de Vernal (2006), Holocene
sea surface conditions in the western North Atlantic: Spatial
and temporal heterogeneities, Paleoceanography, 21 , PA2004,
doi:10.1029/2005PA001175.
Stein, R., et al. (2004), Arctic (palaeo) river discharge and environ-
mental change: Evidence from the Holocene Kara Sea sedimen-
tary record, Quat. Sci. Rev. , 23 , 1485-1511.
Stroeve, J., M. M. Holland, W. Meier, T. Scambos, and M. Serreze
(2007), Arctic sea ice decline: Faster than forecast, Geophys.
Res. Lett. , 34 , l09501, doi:10.1029/2007Gl029703.
Tan, F. C., and P. M. Strain (1980), The distribution of sea ice melt-
water in the eastern Canadian Arctic, J. Geophys. Res. , 85 (C4),
1925-1932.
ter Braak, C. J. F., and P. Smilauer (1998), Canoco Reference
Manual and User's Guide to Canoco for Windows , Software for
Canonical Community Ordination (Version 4) , 351 pp., Cent. for
Biometry, Wageningen, Netherlands.
Vavrus, S., and S. P. Harrison (2003), The impact of sea ice dy-
namics on the Arctic climate system, Clim. Dyn. , 20 , 741-757.
Volkmann, R., and M. Mensch (2001), Stable isotope composition
18 O, δ 13 C) of living planktic foraminifers in the outer Laptev
Sea and the Fram Strait, Mar. Micropaleontol. , 42 , 163-188.
Voronina, E., L. Polyak, A. de Vernal, and O. Peyron (2001),
Holocene variations of sea-surface conditions in the southeast-
ern Barents Sea, reconstructed from dinoflagellate cyst assem-
blages, J. Quat. Sci., 16 , 717-727.
Walsh, J. e. (1983), Role of sea ice in climate variability: Theories
and evidence, Atmos. Ocean , 21 , 229-242.
Walsh, J. e., and W. l. Chapman (2001), Twentieth-century sea-ice
variations from observational data, Ann. Glaciol. , 33 , 444-448.
Watanabe, e., J. Wang, A. Sumi, and H. Hasumi (2006), Arctic di-
pole anomaly and its contribution to sea ice export from the Arc-
tic Ocean in the 20th century, Geophys. Res. Lett. , 33 , l23703,
doi:10.1029/2006Gl028112.
Wu, B., J. Wang, and J. e. Walsh (2006), Dipole anomaly in the
winter Arctic atmosphere and its association with sea ice motion,
J. Clim. , 19 , 210-225, doi:10.1175/JClI3619.1
Yi, D., L. A. Mysak, and S. A. Venegas (1999), Decadal-to-inter-
decadal fluctuations of Arctic sea-ice cover and the atmospheric
circulation during 1954-1994, Atmos. Ocean , 37 , 389-415.
Zonneveld, K. A. F., G. Versteegh, and M. Kodrans-Nsiah (2008),
Preservation and organic chemistry of late Cenozoic organic-
walled dinoflagellate cysts: A review, Mar. Micropaleontol. , 68 ,
179-197, doi:10.1016/j.marmicro.2008.01.015.
A. de Vernal, C. Hillaire-Marcel, T. Radi, and S. Solignac, Ge-
OTOP, Université du Québec à Montréal, CP 8888, succ. Centre-
Ville, Montréal, Québec H3C 3P8, Canada. (devernal.anne@
uqam.ca)
A. Rochon, GeOTOP and ISMeR, Université du Québec à
Rimouski, Rimouski, Quebec G5L 3A1, Canada.
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