High-latitude Cretaceous–Paleogene transition: New paleoenvironmental and paleoclimatic insights from Seymour Island, Antarctica
Tài liệu tham khảo
Açıkalın, 2015, Geochemical and palaeontological characterization of a new K-Pg Boundary locality from the Northern branch of the Neo-Tethys: Mudurnu-Göynük Basin, NW Turkey, Cretac. Res., 52, 251, 10.1016/j.cretres.2014.07.011
Alvarez, 1980, Extraterrestrial cause for the Cretaceous-Tertiary extinction, Science, 208, 1095, 10.1126/science.208.4448.1095
Askin, 1988, The palynological record across the Cretaceous/Tertiary transition on Seymour Island, Antarctica, Geol. Soc. Am. Mem., 169, 155
Askin, 1990, Campanian to Paleocene spore and pollen assemblages of Seymour Island, Antarctica, Rev. Palaeobot. Palynol., 65, 105, 10.1016/0034-6667(90)90061-M
Askin, 1990, Cryptogam spores from the upper Campanian and Maastrichtian of Seymour Island, Antarctica, Micropaleontology, 141, 10.2307/1485498
Askin, 1994, Monosulcate angiosperm pollen from the López de Bertodano formation (upper Campanian-Maastrichtian-Danian) of Seymour island, Antarctica, Rev. Palaeobot. Palynol., 81, 151, 10.1016/0034-6667(94)90105-8
Badaró, 2019, Miocene and Plio-Pleistocene foraminiferal assemblages from Seymour Island, Antarctica, Antarct. Sci., 31, 254, 10.1017/S0954102019000294
Barnosky, 2011, Has the earth’s sixth mass extinction already arrived?, Nature, 471, 51, 10.1038/nature09678
Bowman, 2014, Latest Cretaceous–earliest Paleogene vegetation and climate change at the high southern latitudes: palynological evidence from Seymour Island, Antarctic Peninsula, Palaeogeogr. Palaeoclimatol. Palaeoecol., 408, 26, 10.1016/j.palaeo.2014.04.018
Bowman, 2016, The Paleocene of Antarctica: Dinoflagellate cyst biostratigraphy, chronostratigraphy and implications for the palaeo-Pacific margin of Gondwana, Gondwana Res., 38, 132, 10.1016/j.gr.2015.10.018
Bowman, 2013, Late Cretaceous winter sea ice in Antarctica?, Geology, 41, 1227, 10.1130/G34891.1
Bowman, 2012, A latest Cretaceous to earliest Paleogene dinoflagellate cyst zonation from Antarctica, and implications for phytoprovincialism in the high southern latitudes, Rev. Palaeobot. Palynol., 171, 40, 10.1016/j.revpalbo.2011.11.004
Bowman, 2013, The taxonomy and palaeobiogeography of small chorate dinoflagellate cysts from the late cretaceous to quaternary of antarctica, Palynology, 37, 151, 10.1080/01916122.2012.750898
Chen, 2013, The Ti/Al molar ratio as a new proxy for tracing sediment transportation processes and its application in aeolian events and sea level change in East Asia, J. Asian Earth Sci., 73, 31, 10.1016/j.jseaes.2013.04.017
Cione, 2018, Before and after the K/Pg extinction in West Antarctica: new marine fish records from Marambio (Seymour) Island, Cretac. Res., 85, 250, 10.1016/j.cretres.2018.01.004
Concheyro, 1991, Nanofósiles calcáreos del Cretácico Superior de la Isla Marambio, Antartica, VI Congreso Geológico Chileno Resúmenes expandidos, 825
Courtillot, 1988, Deccan flood basalts and the Cretaceous/Tertiary boundary, Nature, 333, 843, 10.1038/333843a0
Crowley, 1988, Abrupt climate change and extinction events in Earth history, Science, 240, 996, 10.1126/science.240.4855.996
Daners, G., Amenabar, C., Guerstein, G., Veroslavsky, G., 2022, in press. Palynostratigraphical analysis of the late Maastrichtian–early Danian in the Gaviotín Formation, Punta del Este Basin, Uruguay. Marine and Petroleum Geology.
Del Valle, 1992, Sedimentary basins on the east flank of the Antarctic Peninsula: proposed nomenclature, Antarct. Sci., 4, 477, 10.1017/S0954102092000695
Del Valle, 1993, Structural features of the northeastern sector of the Antarctic Peninsula, Jornadas de Comunicaciones sobre Investigaciones Antárticas, 2, 261
Del Valle, 1991
Dettmann, 1987, Cretaceous palynomorphs from the James Ross Island area, Antarctica - a pilot study, Br. Antarct. Surv. Bull., 77, 13
Dutra, 2004, Paleofloras da Antártica e sua relação com os eventos tectônicos e paleoclimáticos nas altas latitudes do sul, Revista Brasileira de Geociências, 34, 401, 10.25249/0375-7536.2004343401410
Eisenack, 1971, Katalog der fossilen dinoflagellaten, hystrichosphären und-verwandten mikrofossilien, Schweizerbart’sche Verlagsbuchhandlung
Elliot, 1994, Iridium and dinocysts at the Cretaceous-Tertiary boundary on Seymour Island, Antarctica: implications for the KT event, Geology, 22, 675, 10.1130/0091-7613(1994)022<0675:IADATC>2.3.CO;2
Elliot, 1982, 287
Fensome, R., Williams, G., MacRae, R., 2019. The Lentin and Williams Index of Fossil Dinoflagellates 2019 edn. AASP Contribution Series Number 50.
González Estebenet, 2021, Late Maastrichtian to Danian organic-walled dinoflagellate cysts and calcareous nannofossils from eastern Austral Basin, Patagonia, Argentina, Rev. Palaeobot. Palynol., 285, 10.1016/j.revpalbo.2020.104342
Govin, 2012, Distribution of major elements in Atlantic surface sediments (36 N–49 S): Imprint of terrigenous input and continental weathering, Geochem. Geophys. Geosyst., 13, 10.1029/2011GC003785
Greenhalgh, 2003
Habib, 2007, The Manumiella seelandica global spike: Cooling during regression at the close of the Maastrichtian, Palaeogeogr. Palaeoclimatol. Palaeoecol., 255, 87, 10.1016/j.palaeo.2007.02.043
Hathway, 2000, Continental rift to back-arc basin: Jurassic-Cretaceous stratigraphical and structural evolution of the Larsen Basin, Antarctic Peninsula, J. Geol. Soc., 157, 417, 10.1144/jgs.157.2.417
Hoem, 2021, Late Eocene–early Miocene evolution of the southern Australian subtropical front: a marine palynological approach, J. Micropalaeontol., 40, 175, 10.5194/jm-40-175-2021
Hull, 2011, Diverse patterns of ocean export productivity change across the Cretaceous-Paleogene boundary: New insights from biogenic barium, Paleoceanography, 26, 10.1029/2010PA002082
Ineson, 1986, Lithostratigraphy of the Cretaceous strata of west James Ross Island, Antarctica, Cretac. Res., 7, 141, 10.1016/0195-6671(86)90014-5
Ivany, L., Cooper, A., Raymond, C., 2007. Contributions to the Eocene climate record of the Antarctic Peninsula. In Antarctica: A keystone in a changing world—Online Proceedings of the 10th International Symposium on Antarctic Earth Sciences: US Geological Survey Open-File Report 1047.
Jablonski, 2001, Lessons from the past: evolutionary impacts of mass extinctions, Proc. Nat. Acad. Sci., 98, 5393, 10.1073/pnas.101092598
Jaramillo, C., Rueda, M., 2021. A morphological electronic database of Cretaceous-Tertiary and extant pollen and spores from Northern South America, v. 2019.
Krahl, 2020, Environmental changes occurred during the Early Danian at the Rio Grande Rise, South Atlantic Ocean, Global Planet. Change, 191, 10.1016/j.gloplacha.2020.103197
Macdonald, 1988, A preliminary assessment of the hydrocarbon potential of the Larsen Basin, Antarctica, Mar. Pet. Geol., 5, 34, 10.1016/0264-8172(88)90038-4
Macellari, 1984
Macellari, 1986, Late Campanian-Maastrichtian ammonite fauna from Seymour Island (Antarctic Peninsula), Memoir (The Paleontological Society), 1
Macellari, 1988, Stratigraphy, sedimentology, and paleoecology of Upper Cretaceous/Paleocene shelf-deltaic sediments of Seymour Island, Geol. Soc. Am. Mem., 169, 25
Marenssi, 1995
Martin, 1997, The Use of Ecological Tolerances for the Reconstruction of Tertiary Palaeoclimates, Aust. J. Bot., 45, 475, 10.1071/BT96037
MedCalc Software Ltd., 2022. Comparison of proportions calculator. Version 20.112, accessed July 15, 2022.https://www.yale.edu/about-yale/yale-factsmedcalc.org/calc/comparison_of_proportions.php.
Miller, 2005, Visions of ice sheets in a greenhouse world, Mar. Geol., 217, 215, 10.1016/j.margeo.2005.02.007
Montes, 2019, Late Maastrichtian-Paleocene chronostratigraphy from Seymour Island (James Ross Basin, Antarctic Peninsula). Eustatic controls of sedimentation. Advances, Polar Sci., 30
Montes, M., Nozal, F., Santillana, S., 2013. Mapa Geológico de la isla de Marambio (Seymour); escala 1:20.000. 1edición. Serie Cartográfica Geocientífica Antártica. Con texto complementario.
M’Hamdi, 2014, Dinoflagellate cysts, palynofacies and organic geochemistry of the Cretaceous-Palaeogene (K–Pg) boundary transition at the Ellès section, northeastern Tunisia, Ann. Soc. Geol. Pol., 235
M’Hamdi, 2013, Biostratigraphie des kystes de dinoflagellés de la limite Crétacé-Paléogène à Ellès, Tunisie, Revue de micropaléontologie, 56, 27, 10.1016/j.revmic.2012.12.001
Olivero, 2017, Discovery of fossiliferous breccias at the K-Pg boundary and upper López de Bertodano Formation, Antarctica: paleoenvironmental interpretation, Palaeogeogr. Palaeoclimatol. Palaeoecol., 628
Rinaldi, 1982, The Upper Cretaceous in the James Ross Island Group, 331
Rinaldi, 1978, Geologia de la Isla Vicecomodoro Marambio, Contribución del Instituto Antártico Argentino, 217, 1
Scasso, 2020, A high-resolution record of environmental changes from a Cretaceous-Paleogene section of Seymour Island, Antarctica, Palaeogeogr. Palaeoclimatol. Palaeoecol., 555, 10.1016/j.palaeo.2020.109844
Schoene, 2019, U-Pb constraints on pulsed eruption of the Deccan Traps across the end-Cretaceous mass extinction, Science, 363, 862, 10.1126/science.aau2422
Schulte, 2010, The Chicxulub asteroid impact and mass extinction at the Cretaceous-Paleogene boundary, Science, 327, 1214, 10.1126/science.1177265
Scotese, C., 2016. PALEOMAP PaleoAtlas for GPlates and the PaleoData Plotter Program, PALEOMAP Project.http://www.earthbyte.org/paleomap-paleoatlas-for-gplates/.
Slimani, 2010, Dinoflagellate cysts from the Cretaceous-Paleogene boundary at Ouled Haddou, southeastern Rif, Morocco: biostratigraphy, paleoenvironments and paleobiogeography, Palynology, 34, 90, 10.1080/01916121003629933
Slimani, 2013, A Cretaceous-Palaeogene boundary geological site, revealed by planktic foraminifera and dinoflagellate cysts, at Ouled Haddou, eastern external Rif Chain, Morocco, J. Afr. Earth Sc., 88, 38, 10.1016/j.jafrearsci.2013.08.008
Sprain, 2019, The eruptive tempo of Deccan volcanism in relation to the Cretaceous-Paleogene boundary, Science, 363, 866, 10.1126/science.aav1446
Steeman, 2019, Campanian to Danian dinoflagellate cyst assemblages from the southwestern Tethyan margin (Tattofte section, western External Rif, Morocco): Biostratigraphic and paleobiogeographic interpretations, Palynology, 44, 280, 10.1080/01916122.2019.1575091
Thorn, 2009, The late cretaceous dinoflagellate cyst manumiella—biostratigraphy, systematics, and palaeoecological signals in antarctica, Rev. Palaeobot. Palynol., 156, 436, 10.1016/j.revpalbo.2009.04.009
Van Helmond, 2014, Freshwater discharge controlled deposition of Cenomanian-Turonian black shales on the NW European epicontinental shelf (Wunstorf, North Germany), Clim. Past Discuss, 10, 3755
Versteegh, 1994, Recognition of cyclic and non-cyclic environmental changes in the Mediterranean Pliocene: a palynological approach, Mar. Micropaleontol., 23, 147, 10.1016/0377-8398(94)90005-1
Whittle, 2019, Nature and timing of biotic recovery in Antarctic benthic marine ecosystems following the Cretaceous-Palaeogene mass extinction, Palaeontology, 62, 919, 10.1111/pala.12434
Willumsen, 2012, Three new species of dinoflagellate cyst from Cretaceous-Paleogene (K-Pg) boundary sections at mid-Waipara River and Fairfield Quarry, South Island, New Zealand, Palynology, 36, 48, 10.1080/01916122.2011.642260
Witts, 2018, The impact of the Cretaceous-Paleogene (K–Pg) mass extinction event on the global sulfur cycle: Evidence from Seymour Island, Antarctica, Geochim. Cosmochim. Acta, 230, 17, 10.1016/j.gca.2018.02.037
Wood, 1996, Palynological techniques-processing and microscopy, vol. 1, 29
Yi, 2005, Provenance of recycled palynomorph assemblages recovered from surficial glaciomarine sediments in Bransfield Strait, offshore Antarctic Peninsula, Cretac. Res., 26, 906, 10.1016/j.cretres.2005.06.004