Modern and Holocene hydrographic characteristics of the shallow Kara Sea shelf (Siberia) as reflected by stable isotopes of bivalves and benthic foraminifera
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Robert F Spielhagen | I. Harms | R. Spielhagen | H. Erlenkeuser | Helmut Erlenkeuser | Ingo H. Harms | Vladimir Stanovoy | J. Simstich | Johannes Simstich | V. Stanovoy
[1] T. Straume,et al. Model simulations of the M2 and the K1 tide in the Nordic Seas and the Arctic Ocean , 1989 .
[2] Martin Jakobsson,et al. Late quaternary ice sheet history of northern Eurasia , 2004 .
[3] J. Mangerud,et al. Apparent Radiocarbon Ages of recent marine shells from Norway, Spitsbergen, and Arctic Canada , 1975, Quaternary Research.
[4] Douglas S. Jones,et al. Using Stable Isotopic Data to Resolve Rate and Duration of Growth throughout Ontogeny: An Example from the Surf Clam, Spisula solidissima , 2003 .
[5] L. Timokhov,et al. Hydrometeorological Regime of the Kara, Laptev, and East-Siberian Seas. , 1996 .
[6] P. Reimer,et al. Extended 14C Data Base and Revised CALIB 3.0 14C Age Calibration Program , 1993, Radiocarbon: An International Journal of Cosmogenic Isotope Research.
[7] Stephanie Pfirman,et al. Hydrographic structure and variability of the Kara Sea: Implications for pollutant distribution , 1995 .
[8] H. Erlenkeuser,et al. Holocene hydrographical changes of the eastern Laptev Sea (Siberian Arctic) recorded in δ18O profiles of bivalve shells , 2004, Quaternary Research.
[9] L. Polyak,et al. Stable isotopes in benthic foraminiferal calcite from a river-influenced Arctic marine environment, Kara and Pechora Seas , 2003 .
[10] Jan O. Backhaus,et al. A three-dimensional model for the simulation of shelf sea dynamics , 1985 .
[11] H. Urey,et al. CARBONATE-WATER ISOTOPIC TEMPERATURE SCALE , 1951 .
[12] Frank Kauker,et al. Arctic warming: Evolution and spreading of the 1990s warm event in the Nordic seas and the Arctic Ocean , 2003 .
[13] P. Roopnarine,et al. The use of oxygen isotope variation in shells of estuarine mollusks as a quantitative record of seasonal and annual Colorado River discharge , 2004 .
[14] J. Grebmeier,et al. Seasonal discharge of estuarine freshwater to the western Chukchi Sea shelf identified in stable isotope profiles of mollusk shells , 2003 .
[15] J. Brigham‐Grette,et al. Stable isotope profiles of Last Interglacial (Pelukian Transgression) mollusks and paleoclimate implications in the Bering Strait Region , 2001 .
[16] H. Erlenkeuser,et al. Seasonal and interannual variability of Siberian river discharge in the Laptev Sea inferred from stable isotopes in modern bivalves , 2003 .
[17] S. Forman,et al. Freshwater and Atlantic water inflows to the deep northern Barents and Kara seas since ca 13 14 C ka: . foraminifera and stable isotopes , 2001 .
[18] G. Wefer,et al. Isotope paleontology: growth and composition of extant calcareous species , 1991 .
[19] H. Urey,et al. MEASUREMENT OF PALEOTEMPERATURES AND TEMPERATURES OF THE UPPER CRETACEOUS OF ENGLAND, DENMARK, AND THE SOUTHEASTERN UNITED STATES , 1951 .
[20] Robert F Spielhagen,et al. Holocene variability of bottom water hydrography on the Kara Sea shelf (Siberia) depicted in multiple single-valve analyses of stable isotopes in ostracods , 2004 .
[21] R. Macdonald. Arctic Estuaries and Ice: A Positive—Negative Estuarine Couple , 2000 .
[22] B. Buchardt,et al. Strontium and oxygen isotopic composition of East Greenland rivers and surface waters: implication for palaeoenvironmental interpretation , 1999 .
[23] T. Straume,et al. Model simulations of the M2and the K1tide in the Nordic Seas and the Arctic Ocean , 1989 .
[24] R. Fairbanks. A 17,000-year glacio-eustatic sea level record: influence of glacial melting rates on the Younger Dryas event and deep-ocean circulation , 1989, Nature.
[25] J. Matthiessen,et al. Arctic (palaeo) river discharge and environmental change: evidence from the Holocene Kara Sea sedimentary record , 2004 .
[26] C. Weidman,et al. The long‐lived mollusc Arctica islandica: A new paleoceanographic tool for the reconstruction of bottom temperatures for the continental shelves of the northern North Atlantic Ocean , 1994 .
[27] Michael Karcher,et al. Modelling Siberian river runoff — implications for contaminant transport in the Arctic Ocean , 2000 .
[28] D. Dettman,et al. Resolution and Fidelity of Oxygen Isotopes as Paleotemperature Proxies in Bivalve Mollusk Shells: Models and Observations , 2003 .
[29] Samuel Epstein,et al. REVISED CARBONATE-WATER ISOTOPIC TEMPERATURE SCALE , 1953 .
[30] H. Hubberten,et al. The oxygen and carbon isotope composition of Quaternary bivalve shells as a water mass indicator Last interglazial and Holocene, East Greenland , 1994 .
[31] A. Proshutinsky,et al. Diurnal tides in the Arctic Ocean , 1993 .
[32] M. Karcher,et al. Modeling the seasonal variability of hydrography and circulation in the Kara Sea , 1999 .
[33] Douglas S. Jones,et al. Seasonal temperature-salinity changes and thermocline development in the mid-Atlantic Bight as recorded by the isotopic composition of bivalves , 1983 .
[34] Douglas S. Jones,et al. Ecological and paleoenvironmental information using stable isotope profiles from living and fossil molluscs , 1987 .
[35] D. McCorkle,et al. Vertical distributions and stable isotopic compositions of live (stained) benthic foraminifera from the North Carolina and California continental margins , 1997 .
[36] M. Karcher,et al. Recent freshening in the Kara sea (Siberia) recorded by stable isotopes in Arctic bivalve shells , 2005 .
[37] R. Harrington. Aspects of growth deceleration in bivalves: Clues to understanding the seasonal δ18O and δ13C record —A comment on Krantz et al. (1987) , 1989 .