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Abstract:

The global evolution of calcareous nannofossils during the Campanian-Maastrichtian interval is not fully understood, and nannofossil zonations for the central and South Atlantic Ocean are yet to be constructed. Here, we test the applicability of previous calcareous nannofossil zonations developed for other ocean basins, for biostratigraphy in the South Atlantic Ocean, and refine Campanian-Maastrichtian biostratigraphy in the region. We document calcareous nannofossil distributions at Deep Sea Drilling Project (DSDP) and Ocean Drilling Program (ODP) sites from the high, mid and low latitudes in the South Atlantic Ocean (DSDP Sites 354, 356, 511, 525A, and 530A, and ODP Sites 690C; 700B; 661A, and 1258A). Combining nannofossil occurrences with magnetostratigraphic schemes previously constructed for some of the sites, we propose three new zonations tied to the global magnetostratigraphic chrons, with distinct bio-horizons selected at different latitudinal regions. In this study we present detailed definitions of new South Atlantic Ocean Low-latitude (SAL), South Atlantic Mid-latitude (SAM) and South Atlantic High-latitude (SAH) zonations. We identified significant diachronism of some species between latitudes throughout the Campanian and Maastrichtian. These species diachronism, mainly between zonal markers from low and mid latitudes during the late Maastrichtian, was probably related to migration patterns due to fundamental paleoceanographic changes. © 2016 Elsevier B.V.

Registro:

Documento: Artículo
Título:New latitude-based nannofossil zonations for the Campanian-Maastrichtian of the South Atlantic Ocean and their paleoceanographic implications
Autor:do Monte Guerra, R.; Concheyro, A.; Wise, S.W., Jr.; Kender, S.; Fauth, G.
Filiación:itt Fossil, Instituto Tecnológico de Micropaleontologia, Universidade do Vale do Rio dos Sinos (UNISINOS), Av. UNISINOS, 950 B. Cristo Rei, São Leopoldo RS, CEP: 93.022-000, Brazil
Instituto Antártico Argentino (IAA), Buenos Aires, Argentina
IDEAN-CONICET, Departamento de Ciências Geológicas, Universidad de Buenos Aires, Pabellón II, Ciudad Universitaria, Buenos Aires, 1428, Argentina
Department of Earth, Ocean and Atmospheric Sciences, Florida State University, Tallahassee, FL 32306-4100, United States
Department of Geography, Centre for Environmental Geochemistry, University of Nottingham, University Park, Nottingham, NG7 2RD, United Kingdom
British Geological Survey, Keyworth, Nottingham, NG12 5GG, United Kingdom
Palabras clave:Atlantic Ocean; Biostratigraphy; Calcareous nannofossils; Late Cretaceous; Paleoceanography; biostratigraphy; Campanian; Cretaceous; Deep Sea Drilling Project; Maastrichtian; magnetostratigraphy; nanofossil; paleoceanography; Atlantic Ocean; Atlantic Ocean (South)
Año:2016
Volumen:452
Página de inicio:55
Página de fin:67
DOI: http://dx.doi.org/10.1016/j.palaeo.2016.04.010
Título revista:Palaeogeography, Palaeoclimatology, Palaeoecology
Título revista abreviado:Palaeogeogr. Palaeoclimatol. Palaeoecol.
ISSN:00310182
CODEN:PPPYA
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00310182_v452_n_p55_doMonteGuerra

Referencias:

  • Antunes, R.L., Bioestratigrafia dos nanofósseis calcários Meso e Neocretáceo da porção emersa da Bacia do Espírito Santos (1987) Bol. Geociênc. Petrobras, 1 (1), pp. 2-11
  • Antunes, R.L., (1998) Nanofósseis calcários e sua bioestratigrafia no Cretáceo da Margem Continental Brasileira - Bacias do Ceará e Potiguar, p. 193. , (Ph.D. thesis), Universidade Federal do Rio de Janeiro
  • Barrera, E., Savin, S.M., Evolution of late Campanian-Maastrichtian marine climates and oceans (1999) Geological Society of America, Special Paper, 332, pp. 245-282. , E. Barrera, C.C. Johnson (Eds.) Evolution of the Cretaceous Ocean System
  • Bown, P.R., Young, J.R., Techniques (1998) British Micropalaeontological Society Series, pp. 16-28. , Chapman and Hall/Kluwer Academic Publishers, London, P.R. Bown (Ed.) Calcareous Nannofossil Biostratigraphy
  • Bown, P.R., Burnett, J.A., Gallagher, L.T., Critical events in the evolutionary history of calcareous nannoplankton (1991) Hist. Biol., 5, pp. 279-290
  • Burnett, J.A., Gallagher, L.T., Hampton, M.J., Upper Cretaceous (1998) Calcareous Nannofossil Biostratigraphy, pp. 132-199. , British Micropalentological Society Series, London, P.R. Bown (Ed.)
  • Campbell, R.J., Howe, R.W., Rexilius, J.P., Middle Campanian-lowermost Maastrichtian nannofossil and foraminiferal biostratigraphy of the northwestern Australian margin (2004) Cretac. Res., 25, pp. 827-864
  • Clarke, L.J., Jenkyns, H.C., New oxygen isotope evidence for long-term Cretaceous climatic change in the Southern Hemisphere (1999) Geology, 27 (8), pp. 699-702
  • Concheyro, A., Mesozoic calcareous nannofossils from Larsen Basin, Southern Antarctic Peninsula (2004) Extended Abstracts, pp. 255-257. , Geosur International Symposium, Buenos Aires
  • Concheyro, A., Olivera, A., Santillana, S., Marenssi, S., Rinaldi, C., Nanofósiles calcáreos del Cretácico Superior de Isla Marambio, Antártida (1991) Resúmenes Expandidos, pp. 825-828. , Congreso Geologico Chileno
  • Concheyro, A., Robles Hurtado, G.M., Olivero, E.B., Micropaleontologia del Nunatak Sanctuary Cliffs, Isla Snow Hill y de Cabo Hamilton, Isla James Ross, Antartida (1994) Resúmenes, pp. 17-23. , Terceras Jornadas de Comunicaciones sobre investigaciones Antárticas, Buenos Aires
  • Crux, J.A., Calcareous nannofossils recovered by Leg 114 in the Subantarctic South Atlantic Ocean (1991) Scientific Results, 114, pp. 155-177. , P.F. Ciesielski, Y. Kristoffersen (Eds.) Proceedings of the Ocean Drilling Program
  • Erba, E., Middle Cretaceous calcareous nannofossils from the western Pacific (LEG 129): evidence for paleoequatorial crossings (1992) Scientific Results, 129, pp. 189-201. , R.L. Larson, Y. Lancelot (Eds.) Proceedings of the Ocean Drilling Program
  • Erba, E., Calcareous nannofossils and Mesozoic oceanic anoxic events (2004) Mar. Micropaleontol., 52, pp. 85-106
  • Erbacher, J., Mosher, D.C., Malone, M.J., Berti, D., Bice, K.L., Bostock, H., Brumsack, H.-J., Wise, S.W., Site 1258 (2004) Initial Reports, 207, p. 117. , J. Erbacher, D.C. Mosher, M.J. Malone (Eds.) Proceedings of the Ocean Drilling Program
  • Forster, A., Schouten, S., Baas, M., Damsté, J.S.S., Mid-Cretaceous (Albian-Santonian) sea surface temperature record of the tropical Atlantic Ocean (2007) Geology, 35, pp. 919-922
  • Freitas, L.C.S., (1984) Nanofósseis calcários e sua distribuição (Aptiano-Mioceno) na Bacia Sergipe-Alagoas, p. 247. , (Master dissertation), Universidade Federal do Rio de Janeiro
  • Friedrich, O., Herrle, J.O., Wilson, P.A., Cooper, M.J., Erbacher, J., Hemleben, C., The early Maastrichtian carbone cycle perturbation and cooling event: implications from the South Atlantic Ocean (2009) Paleoceanography, 24
  • Friedrich, O., Norris, R.D., Erbacher, J., Evolution of middle to Late Cretaceous oceans - a 55 m.y. record of Earth's temperature and carbon cycle (2012) Geology, 40, pp. 107-110
  • Gardin, S., Galbrun, B., Thibault, N., Coccioni, R., Premoli-Silva, I., Bio-magnetocronology for the upper Campanian-Maastrichtian from the Gubbio area, Italy: new results from the Contessa Highway and Bottaccione sections (2012) Newsl. Stratigr., 45 (1), pp. 75-103
  • Gomide, J., Bacia de Pelotas: Biocronoestratigrafia baseada em nanofósseis calcários (1989) Congresso brasileiro de Paleontologia, 11, pp. 338-351. , SBP, Anais, Curitiba
  • Gradstein, F.M., Ogg, J.G., Schmitz, M.D., Ogg, G.M., (2012) The Geologic Time Scale 2012, , Elsevier, Amsterdam, (2 vols.)
  • Guerra, R.M., Tokutake, L.R., Fauth, G., Upper Campanian calcareous nannofossils from a core of well 2-RSS-1, Pelotas Basin, Brazil (2010) Rev. Bras. Paleontol., 13 (3), pp. 181-188
  • Guerra, R.M., Concheyro, A., Lees, J., Fauth, G., Carvalho, M.A., Ramos, R.R.C., Calcareous nannofossils from the Santa Marta Formation (Upper Cretaceous), northern James Ross Island, Antarctic Peninsula (2015) Cretac. Res., 56, pp. 550-562
  • Guerra, R.M., Tokutake, L.R., Fauth, G., Cretaceous calcareous nannofossils from Pelotas Basin, Brazil: biostratigraphic and paleoecological inferences (2012) J. S. Am. Earth Sci., 36, pp. 55-71
  • Hailwood, E.A., Clement, B.M., Magnetostratigraphy of Sites 699 and 700, East Georgia Basin (1991) Scientific Results, 114, pp. 337-358. , P.F. Ciesielski, Y. Kristoffersen (Eds.) Proceedings of the Ocean Drilling Program
  • Hamilton, N., Mesozoic magnetostratigraphy of Maud Rise, Antarctica (1990) Scientific Results, 113, pp. 255-260. , P.F. Barker, J.P. Kennett (Eds.) Proceedings of the Ocean Drilling Program
  • Hardas, P., Mutterlose, J., Friedrich, O., Erbacher, J., The Middle Cenomanian Event in the equatorial Atlantic: the calcareous nannofossil and benthic foraminiferal response (2012) Mar. Micropaleontol., 96-97, pp. 66-74
  • Howe, R.W., Campbell, R.J., Rexilius, J.P., Integrated uppermost Campanian-Maastrichtian calcareous nannofossil and foraminiferal biostratigraphic zonation of the northwestern margin of Australia (2003) J. Micropalaeontol., 22, pp. 29-62
  • Huber, B.T., Watkins, D.K., Biogeography of Campanian-Maastrichtian calcareous plankton in the region of the Southern Ocean: paleogeographic and paleoclimatic implications (1992) Am. Geophy. Union, Antarctic Research Series, 56, pp. 31-60
  • Huber, B.T., Hodell, D.A., Hamilton, C.P., Middle-Late Cretaceous climate of the southern high latitudes: stable isotopic evidence for minimal equator-to-pole thermal gradients (1995) Bull. Geol. Soc. Am., 107, pp. 1164-1191
  • Huber, B.T., Norris, R.D., MacLeod, K.G., Deep-sea paleotemperature record of extreme warmth during the Cretaceous (2002) Geology, 30 (2), pp. 123-126
  • Jenkyns, H.C., Gale, A.S., Corfield, R.M., Carbon- and oxygen-isotope stratigraphy of the English Chalk and Italian Scaglia and its palaeoclimatic significance (1994) Geol. Mag., 131, pp. 1-34
  • Keating, B.H., Herrero-Bervera, E., Magnetostratigraphy of Cretaceous and Early Cenozoic sediments of Deep Sea Drilling Project Site 530, Angola Basin (1985) Initial Reports of the DSDP, 75, pp. 1211-1218. , W.W. Hay, J.C. Sibuet (Eds.)
  • Lees, J.A., Calcareous nannofossil biogeography illustrates palaeoclimate change in the Late Cretaceous Indian Ocean (2002) Cretac. Res., 23, pp. 537-634
  • Lees, J.A., Bown, P.R., Upper Cretaceous calcareous nannofossil biostratigraphy, ODP Leg 198 (Shatsky Rise, Northwest Pacific Ocean) (2005) Scientific Results, 198, pp. 1-60. , T.J. Bralower, I. Premoli Silva, M.J. Malone (Eds.) Proceedings of the Ocean Drilling Program
  • Lees, J.A., Bown, P.R., Mattioli, E., Problem with proxies? Cautionary tales of calcareous nannofossil paleoenvironmental indicators (2005) Micropaleontology, 51 (4), pp. 333-343
  • Li, L., Keller, G., Abrupt deep-sea warming at the end ofthe Cretaceous (1998) Geology, 26, pp. 995-998
  • Linnert, C., Mutterlose, J., Boreal early Turonian calcareous nannofossils from nearshore settings - implications for Paleoecology (2015) PALAIOS, 30, pp. 728-742
  • Linnert, C., Robinson, S.A., Lees, J.A., Bown, P.R., Pérez-Rodríguez, I., Petrizzo, M.R., Falzoni, F., Russell, E.E., Evidence for global cooling in the Late Cretaceous (2014) Nat. Commun., 5 (4194), pp. 1-7
  • Manivit, H., Paleogene and Upper Cretaceous calcareous nannofossils from Deep Sea Drilling Project Leg 74 (1984) Initial Reports of the DSDP, 74, pp. 475-499. , T.C. Moore, P.D. Rabinowitz (Eds.)
  • Manivit, H., Calcareous nannofossil biostratigraphy of Leg 108 sediments (1989) Scientific Results, 108, pp. 35-69. , W. Ruddiman, M. Sarnthein (Eds.) Proceedings of the Ocean Drilling Program
  • Manivit, H., Feinberg, H., Correlation of magnetostratigraphy and nannofossil biostratigraphy in Upper Cretaceous and Lower Paleocene sediments of the Walvis Ridge area (1984) Initial Reports of the DSDP, 74, pp. 469-474. , T.C. Moore, P.D. Rabinowitz (Eds.)
  • Mutterlose, J., Bornemann, A., Herrle, J.O., Mesozoic calcareous nannofossils - state of the art (2005) Paläontol. Z., 79, pp. 113-133
  • Nifuku, K., Kodama, K., Shigeta, Y., Naruse, H., Faunal turnover at the end of the Cretaceous in the North Pacific region: implications from combined magnetostratigraphy and biostratigraphy of the Maastrichtian Senpohshi Formation in the eastern Hokkaido Island, northern Japan (2008) Palaeogeogr. Palaeoclimatol. Palaeoecol., 271, pp. 84-95
  • Oliveira, L.C.V., (1997) Arcabouço estratigráfico Albo-Maastrichtiano da Bacia de Campos: um estudo com base em nanofósseis calcários e suas correlações com marcos elétricos e a estratigrafia química, , (Master dissertation), Universidade Federal do Rio Grande do Sul, (180 pp.)
  • Oliveira, L.C.V., Costa, S.O., Proposal of new biostratigraphic units based on calcareous nannofossils for the Maastrichtian of the Santos Basin (Brazil) (1997) An. Acad. Bras. Cienc., 69 (1), pp. 37-58
  • Perch-Nielsen, K., Albian to Pleistocene calcareous nannofossils from the Western South Atlantic, DSDP Leg 39 (1977) Initial Reports of the DSDP, 39, pp. 699-823. , P.R. Supko, K. Perch-Nielsen (Eds.)
  • Perch-Nielsen, K., Mesozoic calcareous nannofossils (1985) Plankton Stratigraphy, 1, pp. 329-426. , Cambridge University Press, Cambridge, H.M. Bolli, J.B. Saunders, K. Perch-Nielsen (Eds.)
  • Pérez-Rodríguez, I., Lees, J.A., Larrasoaña, J.C., Arz, J.A., Arenillas, I., Planktonic foraminiferal and calcareous nannofossil biostratigraphy and magnetostratigraphy of the uppermost Campanian and Maastrichtian at Zumaia, northern Spain (2012) Cretac. Res., 37, pp. 100-126
  • Pospichal, J.J., Wise, S.W., Maestrichtian calcareous nannofossil biostratigraphy of Maud Rise, ODP Leg 113 Sites 689 and 690, Weddell Sea (1990) Scientific Results, 113, pp. 465-487. , P.F. Barker, J.P. Kennett (Eds.) Proceedings of the Ocean Drilling Program
  • Roth, P.H., Jurassic and Lower Cretaceous calcareous nannofossils in the Western North Atlantic (Site 534): biostratigraphy, preservation, and some observations on biogeography and paleoceanography (1983) Initial Reports of the DSDP, 76, pp. 587-621. , R.E. Sheridan, F.M. Gradstein (Eds.)
  • Roth, P.H., Krumbach, K.R., Middle Cretaceous calcareous nannofossil biogeography and preservation in the Atlantic and Indian Oceans: implications for palaeoceanography (1986) Mar. Micropaleontol., 10, pp. 235-266
  • Roth, P.H., Thierstein, H., Calcareous nannoplankton: Leg 14 of the Deep Sea Drilling Project (1972) Initial Reports of the DSDP, 14, pp. 421-485. , D.E. Hayes, A.C. Pimm (Eds.)
  • Scotese, C.R., Atlas of Late Cretaceous Maps (2014) PALEOMAP Atlas for ArcGis, Volume 2, the Cretaceous, Maps 16-22, Mollweide Projection, , PALEOMAP Project, Evanston, IL
  • Self-Trail, J.M., Biostratigraphic subdivision and correlation of upper Maastrichtian sediments from the Atlantic Coastal Plain and Blake Nose, western Atlantic (2001) Geological Society, London, Special Publications, 183, pp. 93-110. , D. Kroon, R.D. Norris, A. Klaus (Eds.) Western North Atlantic Palaeogene and Cretaceous Palaeoceanography
  • Shafik, S., Late Cretaceous nannofossil biostratigraphy and biogeography of the Australian western margin (1990) Bur. Mineral. Resour. Geol. Geophys. Rep., 295, pp. 1-164
  • Sheldon, E., Upper Campanian-Maastrichtian calcareous nannofossil biostratigraphy of the Stevns-1 borehole, Denmark (2008) J. Nannoplankton Res., 30 (1), pp. 39-49
  • Sheldon, E., Ineson, J., Bown, P.R., Late Maastrichtian warming in the Boreal Realm: Calcareous nannofossil evidence from Denmark (2010) Palaeogeogr. Palaeoclimatol. Palaeoecol., 295, pp. 55-75
  • Stradner, H., Steinmetz, J., Cretaceous calcareous nannofossils from the Angola Basin, Deep Sea Drilling Project Site 530 (1984) Initial Reports of the DSDP, 75, pp. 565-649. , W.W. Hay, J.-C. Sibuet (Eds.)
  • Švábenická, L., Vodrážka, R., Nývlt, D., Calcareous nannofossils from the Upper Cretaceous of northern James Ross Island, Antarctica: a pilot study (2012) Geol. Q., 56 (4), pp. 765-772
  • Tantawy, A.A.A.M., Calcareous nannofossil biostratigraphy and paleoecology of the Cretaceous-Tertiary transition in the central eastern desert of Egypt (2003) Mar. Micropaleontol., 47, pp. 323-356
  • Thibault, N., Gardin, S., Maastrichtian calcareous nannofossil biostratigraphy and paleoecology in the Equatorial Atlantic (Demerara Rise, ODP Leg 207 Hole 1258A) (2006) Rev. Micropaleontol., 49, pp. 199-214
  • Thibault, N., Gardin, S., The Late Maastrichtian nannofossil record of climate change in the South Atlantic DSDP Hole 525 A (2007) Mar. Micropaleontol., 65, pp. 163-184
  • Thibault, N., Husson, D., Climatic fluctuations and sea surface water circulation patterns at the end of the Cretaceous era: calcareous nannofossil evidence (2016) Palaeogeogr. Palaeoclimatol. Palaeoecol., 441 (1), pp. 152-164
  • Thibault, N., Gardin, S., Galbrun, B., Latitudinal migration of calcareous nannofossil Micula murus in the Maastrichtian: implications for global climate change (2010) Geology, 38 (3), pp. 203-206
  • Thibault, N., Husson, D., Harlou, R., Gardin, S., Galbrun, B., Huret, E., Minoletti, F., Astronomical calibration of upper Campanian-Maastrichtian carbon isotope events and calcareous plankton biostratigraphy in the Indian Ocean (ODP Hole 762C): implication for the age of the Campanian-Maastrichtian boundary (2012) Palaeogeogr. Palaeoclimatol. Palaeoecol., 337-338, pp. 52-71
  • Thierstein, H.R., Late Cretaceous nannoplankton and the change at the Cretaceous-Tertiary boundary (1981) SEPM Spec. Publ., 32, pp. 355-394
  • Troelsen, J.C., Quadros, L.P., Distribuição bioestratigráfica dos nanofósseis em sedimentos marinhos (Aptiano-Mioceno) do Brasil (1971) An. Acad. Bras. Geociênc., 43, pp. 577-609
  • Watkins, D.K., Nannoplankton productivity fluctuations and rhythmically bedded pelagic carbonates of the Greenhorn Limestone (Upper Cretaceous) (1989) Palaeogeogr. Palaeoclimatol. Palaeoecol., 74, pp. 75-86
  • Watkins, D.K., Self-Trail, J.M., Calcareous nannofossil evidence for the existence of the Gulf Stream during the Maastrichtian (2005) Paleoceanography, 20, p. PA3006
  • Watkins, D.K., Wise, S.W., Pospichal, J.J., Crux, J., Upper Cretaceous calcareous nannofossil biostratigraphy and paleoceanography of the Southern Ocean (1996) Microfossils and Oceanic Environments, pp. 355-381. , University of Wales, Aberystwyth Press, A. Moguilevsky, R. Whatley (Eds.)
  • Wind, F.H., Maestrichtian-Campanian nannofloral provinces of the southern Atlantic and Indian oceans (1979) Deep Sea Drilling Results in the Atlantic Ocean: Continental Margins and Paleoenvironment, pp. 123-137. , M. Talwani, W. Hay, W.B.F. Ryan (Eds.)
  • Wind, F.H., Wise, S.W., Correlation of Upper Campanian-Lower Maastrichtian calcareous nannofossil assemblages in drill and piston cores from the Falkland Plateau, Southwest Atlantic Ocean (1983) Initial Reports of the DSDP, 71, pp. 551-563. , W.J. Ludwig, V.A. Krasheninnikov (Eds.)
  • Winter, A., Jordan, R., Roth, P.H., Biogeography of living coccolithophores in ocean waters (1994) Coccolithophores, pp. 161-177. , Cambridge University Press, Cambridge, A. Winter, W.G. Siesser (Eds.)
  • Wise, S.W., Mesozoic and Cenozoic calcareous nannofossils recovered by Deep Sea Drilling Project Leg 71 in the Falkland Plateau Region, Southwest Atlantic Ocean (1983) Initial Reports of the DSDP, 71, pp. 481-550. , W.J. Ludwig, V.A. Krasheninnikov (Eds.)
  • Wise, S.W., Mesozoic-Cenozoic history of calcareous nannofossils in the region of the Southern Ocean (1988) Palaeogeogr. Palaeoclimatol. Palaeoecol., 67, pp. 157-179
  • Wise, S.W., Wind, F.H., Mesozoic and Cenozoic calcareous nannofossils recovered by DSDP Leg 36 Drilling on the Falkland Plateau, Southwest Atlantic Sector of the Southern Ocean (1977) Initial Reports of the DSDP, 36, pp. 269-491. , P.F. Barker, I.W.D. Dalziel (Eds.)
  • Young, J.R., Bown, P.R., Lees, J.A., http://ina.tmsoc.org/Nannotax3, (Eds.) Nannotax3 Website. International Nannoplankton Association; Ziveri, P., Baumann, K.-H., Bökel, B., Bollmann, J., Young, J.R., Biogeography of selected Holocene coccoliths in the Atlantic Ocean (2004) Coccolithophores: From Molecular Process to Global Impact, pp. 403-428. , Springer Verlag, Berlin, Germany, T. H.R., J.R. Young (Eds.)

Citas:

---------- APA ----------
do Monte Guerra, R., Concheyro, A., Wise, S.W., Jr., Kender, S. & Fauth, G. (2016) . New latitude-based nannofossil zonations for the Campanian-Maastrichtian of the South Atlantic Ocean and their paleoceanographic implications. Palaeogeography, Palaeoclimatology, Palaeoecology, 452, 55-67.
http://dx.doi.org/10.1016/j.palaeo.2016.04.010
---------- CHICAGO ----------
do Monte Guerra, R., Concheyro, A., Wise, S.W., Jr., Kender, S., Fauth, G. "New latitude-based nannofossil zonations for the Campanian-Maastrichtian of the South Atlantic Ocean and their paleoceanographic implications" . Palaeogeography, Palaeoclimatology, Palaeoecology 452 (2016) : 55-67.
http://dx.doi.org/10.1016/j.palaeo.2016.04.010
---------- MLA ----------
do Monte Guerra, R., Concheyro, A., Wise, S.W., Jr., Kender, S., Fauth, G. "New latitude-based nannofossil zonations for the Campanian-Maastrichtian of the South Atlantic Ocean and their paleoceanographic implications" . Palaeogeography, Palaeoclimatology, Palaeoecology, vol. 452, 2016, pp. 55-67.
http://dx.doi.org/10.1016/j.palaeo.2016.04.010
---------- VANCOUVER ----------
do Monte Guerra, R., Concheyro, A., Wise, S.W., Jr., Kender, S., Fauth, G. New latitude-based nannofossil zonations for the Campanian-Maastrichtian of the South Atlantic Ocean and their paleoceanographic implications. Palaeogeogr. Palaeoclimatol. Palaeoecol. 2016;452:55-67.
http://dx.doi.org/10.1016/j.palaeo.2016.04.010