Ostracoda in surface sediments of the Arctic Ocean


Autoria(s): Cronin, Thomas M; Holtz, Thomas R; Whatley, Robin C
Cobertura

MEDIAN LATITUDE: 79.465740 * MEDIAN LONGITUDE: 11.484162 * SOUTH-BOUND LATITUDE: 52.780000 * WEST-BOUND LONGITUDE: -168.446000 * NORTH-BOUND LATITUDE: 89.983333 * EAST-BOUND LONGITUDE: 159.167500 * DATE/TIME START: 1991-08-06T00:00:00 * DATE/TIME END: 1991-10-02T00:00:00

Data(s)

15/10/1994

Resumo

Ostracodes were studied from deep Arctic Ocean cores obtained during the Arctic 91 expedition of the Polarstern to the Nansen, Amundsen and Makarov Basins, the Lomonosov Ridge, Morris Jesup Rise and Yermak Plateau, in order to investigate their distribution in Arctic Ocean deep water (AODW) and apply these data to paleoceanographic reconstruction of bottom water masses during the Quaternary. Analyses of coretop assemblages from Arctic 91 boxcores indicate the following: ostracodes are common at all depths between 1000 and 4500 m, and species distribution is strongly influenced by water mass characteristics and bathymetry; quantitative analyses comparing Eurasian and Canada Basin assemblages indicate that distinct assemblages inhabit regions east and west of the Lomonosov Ridge, a barrier especially important to species living in lower AODW; deep Eurasian Basin assemblages are more similar to those living in Greenland Sea deep water (GSDW) than those in Canada Basin deep water; two upper AODW assemblages were recognized throughout the Arctic Ocean, one living between 1000 and 1500 m, and the other, having high species diversity, at 1500-3000 m. Downcore quantitative analyses of species' abundances and the squared chord distance coefficient of similarity reveals a distinct series of abundance peaks in key indicator taxa interpreted to signify the following late Quaternary deep water history of the Eurasian Basin. During the Last Glacial Maximum (LGM), a GSDW/AODW assemblage, characteristic of cold, well oxygenated deep water > 3000 m today, inhabited the Lomonosov Ridge to depths as shallow as 1000 m, perhaps indicating the influence of GSDW at mid-depths in the central Arctic Ocean. During Termination 1, a period of high organic productivity associated with a strong inflowing warm North Atlantic layer occurred. During the mid-Holocene, several key faunal events indicate a period of warming and/or enhanced flow between the Canada and Eurasian Basins. A long-term record of ostracode assemblages from kastenlot core PS2200-5 (1073 m water depth) from the Morris Jesup Rise indicates a quasi-cyclic pattern of water mass changes during the last 300 kyr. Interglacial ostracode assemblages corresponding to oxygen isotope stages 1, 5, and 7 indicate rapid changes in dissolved oxygen and productivity during glacial-interglacial transitions.

Formato

application/zip, 3 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.728604

doi:10.1594/PANGAEA.728604

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Cronin, Thomas M; Holtz, Thomas R; Whatley, Robin C (1994): Quaternary paleoceanography of the deep Arctic Ocean based on quantitative analysis of Ostracoda. Marine Geology, 119(3-4), 305-332, doi:10.1016/0025-3227(94)90188-0

Palavras-Chave #80PB50; 81-APB-13; A. arcticum; A. conoidea; AC-71-36; AC-71-38; AC-71-48; Acetabulastoma arcticum; Amundsen Basin; Area; Area/locality; Argilloecia conoidea; ARK-VIII/3; Atlantic includes: Cluthia cluthae, Cytheropteron arcuatum, Cytheropteron biconvexa, Cytheropteron sedovi, Cyteropteron simplex, Eucythere sp., Heinia sp., Heterocyprideis sorbyana, Muellerina abyssicola, Propontocypris sp., Sarsicytheridea punctillata, Semicytherura complanata, Thaerocythere crenulata; AW-2375; AW-2839; AW-2904; AW-2905; AW-3101A; AW-3143; AW-3154; AW-3161; AW-57-328-46; AW-62-160-10; AW-62-160-7; AW-62-160-8; AW-62-160-9; AWI_Paleo; AW-IH25; AW-NN; AW-V6-33-78-21; B. scaberrima; Barnes26-80; Barnes27-80; Barnes56-80; Bart.30; Bart.46; Bart.49; Bart.55; Bart.LT23Hazel3; Bart.LT26Hazel2; Bart.LT30; Bart.LT35Hazel5; Bart.N.Omenolu; Beaufort Sea; Bythoceratina scaberrima; Bythocythere sp.; C. alatum; C. bronwynae; C. carolinae; C. hamatum; C. inflatum; C. medistriatum; C. testudo; Canadian Beaufort; Cape Martineau; Chest.Inlet1; Chest.Inlet2; Chest.Inlet5; Chest.Inlet8; Chest.Inlet9; Chikchi Sea; Counting >150 µm fraction; Cytheropteron alatum; Cytheropteron bronwynae; Cytheropteron carolinae; Cytheropteron hamatum; Cytheropteron inflatum; Cytheropteron medistriatum; Cytheropteron testudo; DC1-79-EG-1; DC2-80-EG-186; DC2-80-EG-73; Depth; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Depth bot; Depth top; E. complexa; EGAL-75-KC-53; E Greenland; Eucytherura complexa; Event; Gakkel Ridge, Arctic Ocean; genus questionable; Giant box corer; GKG; Gulf of Alaska; GV8202745; GV82027-67; GV83033#44; GV83033#45; H. asperrima; Henryhowella asperrima; HU69-050.830; HU69-050.836; HU85-027-76; Hudson Bay; Hudson Strait; Hurd Channel; Ikerssauk15; Ikerssauk2; Ikerssauk4; Ikerssauk5; KAL; Kara Sea; Kasten corer; Krithe sp.; Labrador; Lomonosov Ridge, Arctic Ocean; Makarov Basin; Melville Penin.; Morris Jesup Rise; Nansen Basin; Northwind5; Northwind65#106; Northwind65#112; Northwind65#115; Northwind65#41; Norton Sound; N Star Bay, Greenl.; Ostrac; Ostrac indet; Ostracoda; Ostracoda, other; Ostracoda indeterminata; Ostrac oth; P. caudata; P. chukchiensis; P. minuta; P. neofluitans; Paleoenvironmental Reconstructions from Marine Sediments @ AWI; Paracytherois chukchiensis; Parakrithella minuta; Pedicythere neofluitans; Penney274101; PenneyIkerss.#1; Polarstern; Polycope sp.; PRZO70-22-130; PRZO72-44; PS19/150; PS19/151; PS19/152; PS19/155; PS19/157; PS19/158; PS19/159; PS19/160; PS19/161; PS19/164; PS19/165; PS19/166; PS19/167; PS19/171; PS19/172; PS19/173; PS19/175; PS19/176; PS19/178; PS19/181; PS19/182; PS19/183; PS19/184; PS19/185; PS19/186; PS19/189; PS19/190; PS19/192; PS19/194; PS19/198; PS19/200; PS19/204; PS19/206; PS19/210; PS19/214; PS19/218; PS19/239; PS19/241; PS19/245; PS19/246; PS19/249; PS19/252; PS19 ARCTIC91; PS2157-4; PS2158-1; PS2159-4; PS2162-1; PS2163-2; PS2164-4; PS2165-3; PS2166-2; PS2167-2; PS2168-1; PS2170-1; PS2171-1; PS2172-1; PS2174-4; PS2175-3; PS2176-4; PS2177-1; PS2178-2; PS2179-1; PS2180-1; PS2181-3; PS2182-1; PS2183-1; PS2184-1; PS2185-3; PS2186-5; PS2187-1; PS2189-1; PS2190-3; PS2192-1; PS2193-2; PS2194-1; PS2195-4; PS2196-2; PS2198-1; PS2200-2; PS2200-5; PS2209-1; PS2210-1; PS2212-5; PS2213-1; PS2214-1; PS2215-2; Pseudocythere caudata; Quaternary Environment of the Eurasian North; QUEEN; S5-77-BS-17; SEA5-125A; SEA-5-76-174; Svalbard; SW Greenland; Ungava Bay; W Greenland; WhiteBearHazel18; Yermak Plateau
Tipo

Dataset