Carbon and strontium isotope stratigraphy of the Upper Cretaceous (Cenomanian-Campanian) shallow-water carbonates of southern Italy: Chronostratigraphic calibration of larger foraminifera biostratigraphy
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Al-Aasm, 1986, Diagenetic stabilization of aragonite and low-Mg calcite. I. Trace elements in rudists, Journal of Sedimentary Petrology, 56, 763, 10.2110/jsr.56.763
Albrich, 2014, The evolution of the earliest representative of the genus Orbitoides: Implication for Upper Cretaceous biostratigraphy, Cretaceous Research, 51, 22, 10.1016/j.cretres.2014.04.013
Allan, 1982, Isotope signature associated with early meteoric diagenesis, Sedimentology, 29, 797, 10.1111/j.1365-3091.1982.tb00085.x
Amodio, 2008, Carbon-isotope stratigraphy and cyclostratigraphy of shallow-marine carbonates: the case of San Lorenzello, Lower Cretaceous of southern Italy, Cretaceous Research, 29, 803, 10.1016/j.cretres.2008.05.022
Arnaud, 1998, Répartition stratigraphique des orbitolinidés de la plate-forme urgonienne subalpine et jurassiene (SE de la France), Géologie Alpine, 74, 3
Arnaud, 2005, The South-East France Basin (SFB) and its Mesozoic evolution, 7, 5
Arriaga, M.E., Frijia, G., Parente, M., Caus, E. Benthic foraminifera in the aftermath of the Cenomanian-Turonian boundary extinction event in the carbonate platform facies of the southern Apennines (Italy). Journal of Foraminiferl Research (Accepted).
Banner, 1995, Application of the trace element and isotope geochemistry of strontium to studies of carbonate diagenesis, Sedimentology, 42, 805, 10.1111/j.1365-3091.1995.tb00410.x
Boix, 2011, Larger foraminifera distribution and strontium isotope stratigraphy of the La Cova limestones (Coniacian – Santonian, Serra del Montsec, Pyrenees, NE Spain), Cretaceous Research, 32, 806, 10.1016/j.cretres.2011.05.009
Bonardi, 1988
Bornemann, 2008, Isotopic Evidence for Glaciation during the Cretaceous Supergreenhouse, Science, 319, 189, 10.1126/science.1148777
Bosellini, 2002, Dinosaurs “re-write” the geodynamics of the eastern Mediterranean and the paleogeography of the Apulia Platform, Earth-Science Reviews, 59, 211, 10.1016/S0012-8252(02)00075-2
Brand, 1980, Chemical diagenesis of a multicomponent carbonate system: 1. Trace elements, Journal of Sedimentary Petrology, 50, 1219
Brand, 2012, Diagenetic evaluation of a Pennsylvanian carbonate succession (Bird Spring Formation, Arrow Canyon, Nevada, U.S.A.)- 1: Brachiopod and whole rock comparison, Chemical Geology, 308–309, 26, 10.1016/j.chemgeo.2012.03.017
Brand, 2011, What is the ideal proxy of Paleozoic seawater chemistry?, Memoirs of the Association of Australasian Palaeontologists, 41, 9
Burla, 2008, Changes in sedimentary patterns of coastal and deep sea successions from the North Atlantic (Portugal) linked to Early Cretaceous environmental change, Palaeogeography, Palaeoclimatology, Palaeoecology, 257, 38, 10.1016/j.palaeo.2007.09.010
Caffau, 2000, Il Santoniano-Campaniano del carso triestino: l' orizzonte a Keramosphaerina tergestina (Stache), Studi Trentini di Scienze Naturali, 77, 73
Carannante, 1997, Upper Cretaceous temperate-type open shelves from northern (Sardinia) and southern (Apennines-Apulia) Mesozoic Tethyan margins, 56, 309
Carannante, 1998, Lower Senonian rudist limestones in the Sorrento Peninsula sequences (southern Italy), Geobios, 22, 47, 10.1016/S0016-6995(98)80064-8
Carannante, 1999, Depositional system and response to sea-level oscillation of the Senonian foramol-shelves. Examples from central Mediterranean areas, Facies, 40, 1, 10.1007/BF02537467
Carannante, 2000, Upper Cretaceous ramp limestones from the Sorrento Peninsula (southern Apennines, Italy): micro- and macrofossil associations and their significance in the depositional sequences, Sedimentary Geology, 132, 89, 10.1016/S0037-0738(00)00004-X
Carpenter, 1992, Sr/Mg ratios of modern marine calcite: empirical indicators of ocean chemistry and precipitation rate, Geochimica Cosmochimica Acta, 56, 1837, 10.1016/0016-7037(92)90314-9
Caus, 1996, Biostratigraphic utility of the species of the genus Orbitoides, Journal of Foraminiferal Research, 26, 124, 10.2113/gsjfr.26.2.124
Caus, 2013, Broeckina gassoensis sp. nov., a larger foraminiferal index fossil for the middle Coniacian shallow-water deposits of the Pyrenean Basin (NE Spain), Cretaceous Research, 45, 76, 10.1016/j.cretres.2013.08.002
Cestari, 2004, Coniacian-Santonian rudist facies in Cilento (southern Italy), CFS Courier Forschungsinstitut Senckenberg, 247, 175
Cestari, 2002, Strontium isotope signature of the main Upper Cretaceous rudist events in the Periadriatic Domain, 16
Channell, 1979, Adria, the African Promontory, in Mesozoic Mediterranean palaeogeography, Earth-Science Reviews, 15, 213, 10.1016/0012-8252(79)90083-7
Cherchi, 1990, Keramosphaerina sarda n. sp. Larger foraminifer (Miliolacea) from the Coniacian of Sardinia, Comptes rendus de l'Académie des sciences. Série 2, Mècanique, Physique, Chimie, Sciences de l'univers, Sciences de la Terre, 310, 1567
Chiocchini, 1977, Microbiostratigrafia del Mesozoico in facies di piattaforma carbonatica dei Monti Aurunci (Lazio meridionale), Studi Geologici Camerti, 3, 109
Chiocchini, 2008, Microbiostratigrafia del Triassico superiore, Giurassico e Cretacico in facies di piattaforma carbonatica del Lazio centro- meridionale e Abruzzo: revisione finale, 84, 5
Chiocchini, 1994, Biostratigrafia a foraminiferi, dasicladali e calpionelle delle successioni carbonatiche mesozoiche dell’Appennino centrale (Italia), 9
Clavel, 2009, Nouvelles données sur la répartition biostratigraphique des orbitolinidés à l'Hauterivien supérieur, au Barrémien et à l'Aptien inférieur dans le Sud-Est de la France et le Jura franco-suisse, Archives des Sciences, 62, 125
Clavel, 2010, Répartitionbiostratigraphique des orbitolinidés dans la biozonation à ammonites (plate-forme urgonienne du Sud-Est de la France) Partie 1: Hauterivien supérieure Barrémien basal, Carnets de Géologie/Notebooks on Geology, 6, 1
Colombie, 2011, Carbon- and oxygen isotope records of palaeoenvironmental and carbonate production changes in shallow-marine carbonates (Kimmeridgian, Swiss Jura), Geological Magazine, 148, 133, 10.1017/S0016756810000518
Cvetko, 1997, Reticulinella fleuryi n.sp. (Foraminiferida) from the Upper Cretaceous (Upper Santonian–Middle Campanian) of the Island of Brač, Croatia, Revue de Micropaléontologie, 40, 131, 10.1016/S0035-1598(97)90530-4
D'Argenio, 1980, Stratigraphic evidence for crustal thickness changes on the southern Tethyan margin during the Alpine cycle, GSA Bullettin, 91, 681, 10.1130/0016-7606(1980)91<681:SEFCTC>2.0.CO;2
D'Argenio, 2004, A multidisciplinary approach to global correlation and geochronology: the Cretaceous shallow-water carbonates of southern Apennines, Italy, 81, 103
D'Argenio, 1973, Schema geologico dell' Appennino meridionale (Campania e Lucania), Quaderni Accademia Nazionale dei Lincei, 183, 383
Davey, 1999, Carbon-isotope stratigraphy of shallow-water limestones and implications for the timing of Late Cretaceous sea-level rise and anoxic events (Cenomanian-Turonian of the peri-Adriatic carbonate platform, Croatia), Eclogae Geologicae Helvetiae, 92, 163
De Castro, 1983, Cisalveolina fraasi (Gümbel) Reichel, Foraminiferida: diffusion geografica e problem stratigrafici, Bollettino Societa dei Naturalisti in Napoli, 90, 99
De Castro, 1991, Mesozoic, 21
DePaolo, 1985, High resolution stratigraphy with strontium isotopes, Science, 277, 938, 10.1126/science.227.4689.938
Dercourt, 1986, Geological evolution of the Tethys belt from the Atlantic to the Pamirs since the Lias, Tectonophysics, 123, 241, 10.1016/0040-1951(86)90199-X
Di Lucia, 2012, Bio-chemostratigraphy of the Barremian – Aptian shallow-water carbonates of the southern Apennines (Italy): pinpointing the OAE1a in a Tethyan carbonate platform, Solid Earth, 3, 1, 10.5194/se-3-1-2012
Di Stefano, 2011, Verso uno schema litostratigrafico dell’Appennino meridionale, Rendiconti online della Società Geologica Italiana, 12, 59
Dickson, 1980, Changes in carbon and oxygen isotope composition during limestone diagenesis, Sedimentology, 27, 107, 10.1111/j.1365-3091.1980.tb01161.x
Elrick, 2008, C–isotope stratigraphy and paleoenvironmental changes across OAE 2 (mid Cretaceous) from shallow-water platform carbonates of southern Mexico, Earth Planetary Science Letters, 277, 295, 10.1016/j.epsl.2008.10.020
Ferreri, 1997, Carbon-isotope stratigraphy: a tool for basin to carbonate platform correlation, Terra Nova, 9, 57, 10.1111/j.1365-3121.1997.tb00002.x
Fleury, 1980, L, 1
Föllmi, 2013, Palaeoceanography of Lower Cretaceous Alpine platform carbonates, Sedimentology, 60, 131, 10.1111/sed.12004
Frijia, 2008, Reticulinella kaeveri Cherchi, Radoičic and Schroeder: a marker for the middle upper Turonian in the shallow-water carbonate facies of the peri-adriatic area, Bollettino della Società Geologica Italiana, 127, 275
Frijia, 2008, Strontium isotope stratigraphy in the upper Cenomanian shallow-water carbonates of the southern Apennines: short-term perturbations of marine 87Sr/86Sr during the oceanic anoxic event 2, Palaeogeography, Palaeoclimatology, Palaeoecology, 261, 15, 10.1016/j.palaeo.2008.01.003
Frijia, 2005, Thermal maturity of the southern apenninic platform unit (southern Italy): constraints from rock-eval pyrolysis Tmax data, Atti Ticinensi di Scienze della Terra, 10, 95
Galeotti, 2009, Sea-level control on facies architecture in the Cenomanian–Coniacian Apulian margin (Western Tethys): a record of glacio-eustatic fluctuations during the Cretaceous greenhouse?, Palaeogeography, Palaeoclimatology, Palaeoecology, 276, 196, 10.1016/j.palaeo.2009.03.011
Golubic, 2006, Decastronema kotori gen. nov., comb. nov.: a mat-forming cyanobacterium on Cretaceous carbonate platforms and its modern counterparts, Carnets de Geologie, CG2006, A02
van Gorsel, 1978, Late Cretaceous Orbitoidal foraminifera, 3, 1
Gradstein, 2004
Grötsch, 1998, Carbon-isotope stratigraphy in shallow-water carbonates: implication for Cretaceous black-shale deposition, Sedimentology, 45, 623, 10.1046/j.1365-3091.1998.00158.x
Haq, 2014, Cretaceous eustasy revisited, Global and Planetary Change, 113, 44, 10.1016/j.gloplacha.2013.12.007
Hardenbol, 1998, Cretaceous biochronostratigraphy, 60
Huck, 2011, Strontium and carbon-isotope chronostratigraphy of Barremian-Aptian shoal-water carbonates: Northern Tethyan platform drowning predates OAE 1a, Earth Planetary Science Letters, 304, 547, 10.1016/j.epsl.2011.02.031
Huck, 2013, Carbon-isotope stratigraphy of Early Cretaceous (Urgonian) shoal-water deposits: diachronous changes in carbonate-platform production in the north-western Tethys, Sedimentary Geology, 290, 157, 10.1016/j.sedgeo.2013.03.016
Huck, 2010, Latitudinally different responses of Tethyan shoal-water carbonate systems to the Early Aptian oceanic anoxic event (OAE 1a), Sedimentology, 57, 1585, 10.1111/j.1365-3091.2010.01157.x
Husinec, 2012, Sequence development influenced by intermittent cooling events in the Cretaceous Aptian greenhouse, Adriatic platform, Croatia, AAPG Bulletin, 96, 2215, 10.1306/05161211175
Immenhauser, 2005, Microbial–foraminiferal episodes in the Early Aptian of the southern Tethyan margin: ecological significance and possible relation to oceanic anoxic event 1a, Sedimentology, 52, 77, 10.1111/j.1365-3091.2004.00683.x
Immenhauser, 2008, Interpreting the Carbon-Isotope Record of Ancient Shallow Epeiric Seas: Lessons from the Recent, 48, 135
Jarvis, 2002, Late Cretaceous (Campanian) carbon isotope events, sea-level change and correlation of the Tethyan and Boreal realms, Palaeogeography, Palaeoclimatology, Palaeoecology, 188, 215, 10.1016/S0031-0182(02)00578-3
Jarvis, 2006, Secular variation in Late Cretaceous carbon isotopes and sea-level change: evidence from a new δ13C carbonate reference curve for the Cenomanian−Campanian (99.6–70.6 Ma), Geological Magazine, 143, 561, 10.1017/S0016756806002421
Jenkyns, 1995, Carbon-isotope stratigraphy and paleoceanographic significance of the Lower Cretaceous shallow-water carbonates of Resolution Guyot, mid-Pacific Mountains, 99
Kiessling, 2003, Patterns of Phanerozoic carbonate platform sedimentation, Lethaia, 36, 195, 10.1080/00241160310004648
Korbar, 2012, Response of a carbonate platform to the Cenomanian–Turonian drowning and OAE2: a case study from the Adriatic Platform (Dalmatia, Croatia), Journal Sedimentary Research, 82, 163, 10.2110/jsr.2012/17
Lirer, 2005, Calcareous plankton biostratigraphy and age of the Middle Miocene deposits of Longano Formation (eastern Matese Mountains, southern Apennines), Rivista Italiana di Paleontologia e Stratigrafia, 111, 91
Lohmann, 1988, Geochemical patterns of meteoric diagenetic systems and their application to studies of paleokarst, 58
Luperto-Sinni, 1978, Studio micropaleontologico-stratigrafico di una successione carbonatica del Cretaceo superiore rilevata nel sottosuolo delle Murge sud-orientali, Rivista Italiana di Paleontologia, 84, 561
MacLeod, 2013, A stable and hot Turonian without glacial δ18O excursions is indicated by exquisitely preserved Tanzanian foraminifera, Geology, 41, 1083, 10.1130/G34510.1
Maritan, 2003, A multidisciplinary approach to the characterization of roman gravestones from Aquileia (Udine, Italy), Archaeometry, 45, 363, 10.1111/1475-4754.00114
Marshall, 1992, Climatic and oceanographic isotopic signals from the carbonate rock record and their preservation, Geological Magazine, 129, 143, 10.1017/S0016756800008244
Masse, 2007, Strontium isotope stratigraphy of Lower Cretaceous rudist bivalves, 87, 159
McArthur, 2004, Strontium isotope stratigraphy, 96
McArthur, 2001, Strontium isotope stratigraphy: lowess version 3. Best-fit to the marine Sr-isotope curve for 0 to 509 Ma and accompanying look-up table for deriving numerical age, Journal of Geology, 109, 155, 10.1086/319243
McArthur, 2004, Belemnites of Valanginian, Hauterivian and Barremian age: Srisotope stratigraphy, composition (87Sr/86Sr, δ13C, δ18O, Na, Sr, Mg), and palaeo-oceanography, Palaeogeography, Palaeoclimatology, Palaeoecology, 202, 253, 10.1016/S0031-0182(03)00638-2
McArthur, 1993, Strontium isotope stratigraphy in the Late Cretaceous: numerical calibration of the Sr isotope curve and intercontinental correlation for the Campanian, Paleoceanography, 8, 859, 10.1029/93PA02324
McArthur, 1994, Strontium isotope stratigraphy for the Late Cretaceous: direct numerical calibration of the Sr-isotope curve for the U.S. Western Interior Seaway, Palaeogeography, Palaeoclimatology, Palaeoecology, 108, 95, 10.1016/0031-0182(94)90024-8
McArthur, 2006, A revised Pliocene record formarine 87Sr/86Sr used to date an interglacial event recorded in the Cockburn Island Formation, Antarctic Peninsula, Palaeogeography, Palaeoclimatology, Palaeoecology, 242, 126, 10.1016/j.palaeo.2006.06.004
McArthur, 2012, Strontium isotope stratigraphy
McArthur, 1994, Recent trends in strontium isotope stratigraphy, Terra Nova, 6, 331, 10.1111/j.1365-3121.1994.tb00507.x
Menardi Noguera, 2000, Deep structure of the Campanian–Lucanian Arc (Southern Apennine, Italy), Tectonophysics, 324, 239, 10.1016/S0040-1951(00)00137-2
Millán, 2009, Impact of Early Aptian carbon cycle perturbations on evolution of a marine shelf system in the Basque-Cantabrian Basin (Aralar, N Spain), Earth Planetary Science Letters, 287, 392, 10.1016/j.epsl.2009.08.023
Millan, 2011, The Madotz Urgonian platform (Aralar, northern Spain): paleoecological changes in response to Early Aptian global environmental events, Palaeogeography, Palaeoclimatology, Palaeoecology, 312, 167, 10.1016/j.palaeo.2011.10.005
Miller, 2004, Upper Cretaceous sequences and sea-level history, New Jersey Coastal Plain, GSA Bullettin, 116, 368, 10.1130/B25279.1
Mostardini, 1986, Appennino Centro-Meridionale: sezioni geologiche e proposta di modello strutturale, Memorie della Società Geologica Italiana, 35, 177
Mutti, 2006, Chemostratigraphy in Miocene heterozoan carbonate settings; applications, limitations and perspectives, Geological Society of London Special Publications, 255, 307, 10.1144/GSL.SP.2006.255.01.18
Najarro, 2011, High-resolution chemo- and biostratigraphic records of the Early Aptian oceanic anoxic event in Cantabria (N Spain): Palaeoceanographic and palaeoclimatic implications, Palaeogeography, Palaeoclimatology, Palaeoecology, 299, 137, 10.1016/j.palaeo.2010.10.042
Ogg, 2008
Papp, 2013, Carbon and oxygen-isotope stratigraphy of the Early Cretaceous carbonate platform of Pădurea Craiului (Apuseni Mountains, Romania): A chemostratigraphic correlation and paleoenvironmental tool, Applied Geochemistry, 32, 3, 10.1016/j.apgeochem.2012.09.005
Parente, 2007, Carbon-isotope stratigraphy of Cenomanian–Turonian platform carbonates from southern Apennines (Italy): a chemostratigraphic approach to the problem of correlation between shallow-water and deep-water successions, Journal of the Geological Society of London, 164, 609, 10.1144/0016-76492006-010
Parente, 2008, Stepwise extinction of larger foraminifera at the Cenomanian-Turonian boundary: a shallow-water perspective on nutrient fluctuations during Oceanic Anoxic Event 2 (Bonarelli Event), Geology, 36, 715, 10.1130/G24893A.1
Parente, 2010, Palaeogeography, Palaeoclimatology, Palaeoecology, 293, 255, 10.1016/j.palaeo.2009.11.035
Patacca, 2007, Geology of the Southern Apennines, 7, 75
Patterson, 1994, Depletion of 13C in seawater ƩCO2 on modern carbonate platforms: significance for the carbon isotopic record of carbonates, Geology, 22, 885, 10.1130/0091-7613(1994)022<0885:DOCISC>2.3.CO;2
Philip, 2003, Peri-Tethyan neritic carbonate areas: distribution through time and driving factors, Palaeogeography, Palaeoclimatology, Palaeoecology, 196, 19, 10.1016/S0031-0182(03)00311-0
Prokoph, 2008, Compilation and timeseries analysis of a marine carbonate δ18O, δ 13C, 87Sr/86Sr and δ 34S database through Earth history, Earth-Science Reviews, 87, 113, 10.1016/j.earscirev.2007.12.003
Ruberti, 2002, Microstratigraphy And Taphonomy Of Rudist Shell Concentrations In Upper Cretaceous Limestones, Cilento Area (Southern Italy), Geobios, 24, 228, 10.1016/S0016-6995(02)00062-1
Ruberti, 2006, Rudist lithosomes related to current pathways in Upper Cretaceous temperate-type, inner shelves: a case study from the Cilento area, southern Italy, 255, 179
Ruberti, 2007, Sedimentary processes and biofacies of Late Cretaceous low-energy carbonate ramp systems (southern Italy), 87, 57
Sartoni, 1962, Ricerche biostratigrafiche nel Mesozoico dell'Appennino meridionale, Giornale di Geologia, 29, 161
Schettino, 2011, Tectonic history of the western Tethys since the Late Triassic, GSA Bullettin, 123, 89, 10.1130/B30064.1
Schlager, 2000, Sedimentation rates and growth potential of tropical, cool-water and mud-mound carbonate systems, 178, 217
Schlagintweit, 2014, Siphodinarella costata n. gen., n. sp., a new benthic foraminifer from the Coniacian of the Adriatic Carbonate Platform (Slovenia, Croatia), Facies, 60, 133, 10.1007/s10347-013-0365-1
Schlagintweit, 2008, Tetrataxiella? floriforma n. sp. and other benthic foraminifera from the Gosau Group of the Northern Calcareous Alps, Austria, Austrian Journal Earth Sciences, 101, 17
Schlüter, 2008, Chronostratigraphy of Campanian- Maastrichtian platform carbonates and rudist associations of Salento (Apulia, Italy), Cretaceous Research, 29, 100, 10.1016/j.cretres.2007.04.005
Scholle, 1980, Carbon-isotope fluctuations in Cretaceous pelagic limestones: potential stratigraphic and petroleum exploration tool, AAPG Bulletin, 64, 67
Schroeder, 2010, Revised orbitolinid biostratigraphic zonation for the Barremian – Aptian of the eastern Arabian Plate and implications for regional stratigraphic correlations, GeoArabia Special Publication, 4, 49
Selli, 1957, Sulla trasgressione del Miocene nell'Italia meridionale, Giornale di Geologia, 2, 1
Selli, 1962, Il Paleogene nel quadro della Geologia dell'Italia Centro-Meridionale, Memorie della Società Geologica Italiana, 3, 737
Servizio Geologico d'Italia, 2010
Sgrosso, 1988, Nuovi elementi per un più articolato modello paleogeografico nell'Appennino meridionale, Memorie della Società Geologica Italiana, 41, 203
Simone, 2003, Development of rudist lithosomes in the Coniacian– Lower Campanian carbonate shelves of central–southern Italy: high-energy vs low-energy settings, Palaeogeography, Palaeoclimatology, Palaeoecology, 200, 5, 10.1016/S0031-0182(03)00442-5
Skelton, 2003, Changing Climate and biota – the marine record, 163
Stampfli, 1999, The making and becoming of Apulia, Memorie Scienze Geologiche, 51, 141
Stein, 2012, Paleoenvironmental and paleoecological change on the northern Tethyan carbonate platform during the late Barremian –earliest Aptian, Sedimentology, 59, 939, 10.1111/j.1365-3091.2011.01286.x
Steuber, 1999, Isotopic and chemical intra-shell variations in low-Mg calcite of rudist bivalves (Mollusca: Hippuritacea) e disequilibrium fractionations and Late Cretaceous seasonality, International Journal Earth Sciences, 88, 551, 10.1007/s005310050284
Steuber, 2001, Strontium isotope stratigraphy of Turonian–Campanian Gosau-type rudist formations in the Northern Calcareous and Central Alps (Austria and Germany), Cretaceous Research, 22, 429, 10.1006/cres.2001.0268
Steuber, 2003, Strontium isotope chemostratigraphy of rudist bivalves and cretaceous carbonate platforms, 28, 229
Steuber, 2012, Strontium-isotope stratigraphy of Upper Cretaceous rudist bivalves: biozones, evolutionary patterns and sea-level change calibrated to numerical ages, Earth-Science Reviews, 114, 42, 10.1016/j.earscirev.2012.04.004
Steuber, 2005, Strontium isotope stratigraphy of Upper Cretaceous platform carbonates of the island of Brac (Adriatic Sea, Croatia): implications for global correlation of platform evolution and biostratigraphy, Cretaceous Research, 26, 741, 10.1016/j.cretres.2005.04.004
Steuber, 2002, Catastrophic extintion of Caribbean rudist bivalves at the Cretaceous-Tertiary boundary, Geology, 30, 999, 10.1130/0091-7613(2002)030<0999:CEOCRB>2.0.CO;2
Steuber, 2007, Latest Maastrichtian species-rich rudist associations of the Apulian Margin of Salento ( S Italy) and the Ionian Islands (Greece), 87, 151
Stoll, 2000, High resolution stable isotope records from the Upper Cretaceous rocks of Italy and Spain: glacial episodes in a greenhouse planet?, GSA Bulletin, 112, 308, 10.1130/0016-7606(2000)112<308:HSIRFT>2.0.CO;2
Strohmenger, 2010, Sedimentology and chemostratigraphy of the Hawar and Shu’aiba depositional sequences, Abu Dhabi, United Arab Emirates, GeoArabia Special Publication, 4, 341
Swart, 2011
Tesovic, 2011, Integrated biostratigraphy and carbon isotope stratigraphy of the Lower Cretaceous (Barremian to Albian) Adriatic-Dinaridic carbonate platform deposits in Istria, Croatia, Cretaceous Research, 32, 301, 10.1016/j.cretres.2010.12.011
Vahrenkamp, 1996, Carbon isotope stratigraphy of the Upper Kharaib and Shuaiba Formations: implications for the Early Cretaceous evolution of the Arabian Gulf Region, AAPG Bulletin, 80, 647
Vahrenkamp, 2010, Chemostratigraphy of the Lower Cretaceous Shu’aiba Formation: A δ 13C reference profile for the Aptian Stage from the southern Neo-Tethys Ocean, GeoArabia Special Publication, 4-1, 107
Velic, 2007, Stratigraphy and palaeobiogeography of Mesozoic benthic foraminifera of the Karst Dinarides (SE Europa), Geologia Croatica, 60, 1, 10.4154/GC.2007.01a
Venturini, 2005, Lévento a Keramosphaerina tergestina: considerazioni bio-cronostratigrafiche, Natura Nascosta, 31, 15
Vicedo, 2011, The late Cretaceous genera Cuvillierinella, Cyclopseudedomia and Rhapydionina (Rhapydioninidae, Foraminiferida) in shallow water carbonates of Pylos (Peloponnese, Greece), Journal of Foraminiferal Research, 41, 41, 10.2113/gsjfr.41.1.41
Vicedo, 2013, Late Cretaceous alveolinaceans (Larger foraminifera) of the Caribbean palaeobioprovince and their stratigraphic distribution, Journal of Systematic Palaeontology, 11, 1, 10.1080/14772019.2011.637517
Wagner, 1990, Geochemical stratigraphy and porosity controls in Cretaceous carbonates near the Oman Mountains, 49, 127
Weber, 1969, Factors affecting the carbon and oxygen isotopic composition of marine carbonate sediments-II. Heron Island, Great Barrier Reef, Australia, Geochimica Cosmochimica Acta, 33, 19, 10.1016/0016-7037(69)90090-8
Weissert, 2008, Chemostratigraphy, Newsletters in Stratigraphy, 42, 145, 10.1127/0078-0421/2008/0042-0145
Wendler, 2013, A critical evaluation of carbon isotope stratigraphy and biostratigraphicimplications for Late Cretaceous global correlation, Earth-Science Reviews, 126, 116, 10.1016/j.earscirev.2013.08.003
Wissler, 2003, Response of Early Cretaceous carbonate platforms to changes in atmospheric carbon dioxide levels, Palaeogeography, Palaeoclimatology, Palaeoecology, 200, 187, 10.1016/S0031-0182(03)00450-4
Wissler, 2004, Calibration of the Early Cretaceous time scale: a combined chemostratigraphic and cyclostratigraphic approach to the Barremian-Aptian interval Campania Apennines and southern Alps (Italy), 81, 123