Cooper, W. & Shaffer, B. (1976). Nannofossil biostratigraphy of the Bossier Shale and the Jurassic-Cretaceous boundary. Transactions of the Gulf-Coast Association of Geological Societies. 26: 178-184. gs :: V :: O ::
Cooper, W. W. (1976). Differentiation of Shale Types by Allochthonous and Autochthonous Nannofossils of Middle Miocene of South Louisiana1. Bulletin of the American Association of Petroleum Geologists. 60(11): 2044-2048. gs :: :: :: doi:10.1306/C1EA3A2D-16C9-11D7-8645000102C1865D
Cope, J. C. W. (1993). The Bolonian Stage: an old answer to an old problem. Newsletters on Stratigraphy. 28: 151-156. gs :: :: ::
Corbett, M. J. & Watkins, D. K. (2013). Calcareous nannofossil paleoecology of the mid-Cretaceous Western Interior Seaway and evidence of oligotrophic surface waters during OAE2. Palaeogeography Palaeoclimatology Palaeoecology. 392: 510-523. gs :: :: :: doi:10.1016/j.palaeo.2013.10.007
Corbett, M. J. & Watkins, D. K. (2014a). Cenomanian through basal Coniacian Calcareous Nannofossil biostratigraphy of the Mancos Shale reference section, Mesa Verde National Park, CO. Stratigraphy. 11(1): 97-108. gs :: :: ::
Corbett, M. J. & Watkins, D. K. (2014b). Transitional forms in the Eprolithus-Lithastrinus lineage: a taxonomic revision of Turonian through Santonian species. Micropaleontology. 60(2): 175-193. gs :: :: :: doi:10.47894/mpal.60.2.02
Corbett, M. J., Watkins, D. K. & Pospichal, J. J. (2014). A quantitative analysis of calcareous nannofossil bioevents of the Late Cretaceous (Late Cenomanian–Coniacian) Western Interior Seaway and their reliability in established zonation schemes. Marine Micropaleontology. 109: 30-45. gs :: :: :: doi:10.1016/j.marmicro.2014.04.002
Coric, S. & Gross, M. (2004a). Erste Mitteilung Über kalkiges Nannoplankton aus dem Unter-Pannonium des Oststeirischen Beckens (Österreich). Berichte des Institutes für Geologie und Paläontologie der Karl-Franzens-Universität Graz. 9: 105-106. gs :: V :: O ::
Coric, S. & Gross, M. (2004b). Kalkiges Nannoplankton aus dem Unter-Pannonium des Oststeirischen Beckens (Österreich) [Calcareous nannoplankton from the Lower Pannonian of the Eastern Styrian Basin (Austria)]. Joannea - Geologie und Paläontologie. 9-18. gs :: :: ::
Corselli, C., Principato, M. S., Maffioli, P. & Crudeli, D. (2002). Changes in planktonic assemblages during sapropel S5 deposition: Evidence from Urania Basin area, eastern Mediterranean. Paleoceanography. 17(3): 1-30. gs :: :: :: doi:10.1029/2000PA000536
Corstjens, P. L. A. M., van der Kooij, A., Linschooten, C., Brouwers, G. -J., Westbroek, P. & de Vrind-de Jong, E. W. (1998). GPA, a calcium-binding protein in the coccolithophorid Emiliania huxleyi (Prymnesiophyceae). Journal of Phycology. 34: 622-630. gs :: :: :: doi:10.1046/j.1529-8817.1998.340622.x
Cortés, M. Y. (1998). Coccolithophores at the time-series station ALOHA, Hawaii: Population dynamics and ecology. PhD thesis, ETHZ Zurich. 1-176. gs :: V :: O ::
Cortés, M. Y. (2000). Further evidence for the heterococcolith-holococcolith combination Calcidiscus leptoporus-Crystallolithus rigidus. In, Young, J. R., Thierstein, H. R. & Winter, A. (eds) Nannoplankton ecology and palaeocology, Proceedings of the INA7 conference, Puerto Rico, February 1998. Marine Micropaleontology . 39(1-4): 35-37. gs :: :: :: doi:10.1016/S0377-8398(00)00011-6
Cortés, M. Y. & Bollmann, J. (2002). A new combination coccosphere of the heterococcolith species Coronosphaera mediterranea and the holococcolith species Calyptrolithophora hasleana. European Journal of Phycology. 37: 145-146. gs :: V :: O :: doi:10.1017/S0967026201003523
Cortés, M. Y., Bollmann, J. & Thierstein, H. R. (2001). Coccolithophore ecology at the HOT station ALOHA Hawaii. Deep-Sea Research Part II: Topical Studies in Oceanography. 48: 1957-1981. gs :: :: :: doi:10.1016/S0967-0645(00)00165-X
Costa, K. B., Cabarcos, E., Santarosa, A. C. A., Battaglin, B. B. F. & Toledo, F. A. L. (2016). A multiproxy approach to the climate and marine productivity variations along MIS 5 in SE Brazil: A comparison between major components of calcareous nannofossil assemblages and geochemical records. Palaeogeography Palaeoclimatology Palaeoecology. 449: 275-288. gs :: :: :: doi:10.1016/j.palaeo.2016.02.032
Costa, S. de O. & Antunes, R. L. , (1994). Optical microscope revision of the morphostructural features of nannoliths Incertae Sedis present on Paleocene/middle Eocene section of the Espirito Santo Basin. Boletim de Geociencias da Petrobras. 8(2-4): 381-400. gs :: :: ::
Couapel, M. J. J., Beaufort, L., Jones, B. G. & Chivas, A. R. (2007). Late Quaternary marginal marine palaeoenvironments of northern Australia as inferred from cluster analysis of coccolith assemblages. Marine Micropaleontology. 65: 213-231. gs :: :: :: doi:10.1016/j.marmicro.2007.07.006
Couapel, M. J. J., Beaufort, L. & Young, J. R. (2009). A new Helicosphaera - Syracolithus combination coccosphere (Haptophyta) from the Western Mediterranean sea. Journal of Phycology. 45(4): 914-916. gs :: :: :: doi:10.1111/j.1529-8817.2009.00703.x
Couapel, M. J. J. & Young, J. R. (2009). Coccolithophore biogeography. In, M. , W. (ed.) AMT18 Cruise Report. Plymouth Marine Laboratory, Plymouth 76-84. gs :: :: ::
Courtinat, B., Pittet, B., Mattioli, E. & Rio, M. (2007). Marine microplankton and calcareous nannofossil palaeoecology of the Toarcian stratotype. Geobios. 40(6): 785-800. gs :: :: :: doi:10.1016/j.geobios.2007.01.005
Covington, J. M. (1985a). Morphologic Information on Cretaceous Nannofossils from Niobrara Formation: ABSTRACT. Bulletin of the American Association of Petroleum Geologists. 69(2): 246-247. gs :: :: :: doi:10.1306/AD461DE5-16F7-11D7-8645000102C1865D
Covington, J. M. (1985b). New morphologic information on Cretaceous nannofossils from the Niobrara Formation (Upper Cretaceous) of Kansas. Geology. 13(10): 683-686. gs :: :: :: doi:10.1130/0091-7613(1985)13<683:NMIOCN>2.0.CO;2
Covington, J. M. (1986). Nannofossils of the Niobrara Formation (Upper Cretaceous): biostratigraphy and new taxa. In, SEPM Annual Midyear Meeting, Abstracts. 3: 25-26. gs :: :: ::
Covington, J. M. & Wise, S. W. (1987). Calcareous nannofossil biostratigraphy of a Lower Cretaceous deep-sea fan complex: Deep Sea Drilling Project Leg 93 Site 603, lower continental rise off Cape Hatteras. Initial Reports of the Deep Sea Drilling Project. 93: 617-660. gs :: :: O :: doi:10.2973/dsdp.proc.93.116.1987
Covington, M. (1994). New taxa from the Niobrara Formation (Upper Cretaceous) of Kansas, USA. Journal of Nannoplankton Research. 16(3): 121-131. gs :: V :: O ::
Cowen, J. P., DeCarlo, E. H. & McGee, D. L. (1993). Calcareous nannofossil biostratigraphic dating of a ferromanganese crust from Schumann Seamount. Marine Geology. 115: 289-306. gs :: :: :: doi:10.1016/0025-3227(93)90057-3
Cox, J. M. & Faure, G. (1974). Isotope Composition of Strontium in Carbonate Phase of Two Cores from Black Sea. American Association of Petroleum Geologists, Memoirs. 20: 566-569. gs :: :: ::
Crenshaw, M. A. (1964). Coccolith formation by two marine coccolithophorids, C. huxleyi and Hymenomonas sp. PhD thesis, Duke Univ., Durham, N.C.. 1-74. gs :: :: ::
Criscione, J., Bord, D., Godfery, L. & Aubry, M. -P. (2017). Inferred pseudo-cryptic speciation in the coccolithophore species Braarudosphaera bigelowii (Gran and Braarud) during the Early Paleocene (Danian). Marine Micropaleontology. 137: 1-15. gs :: :: :: doi:10.1016/j.marmicro.2017.09.002
Cros, L. (1994). Planktonic coccolithophores of the NW Mediterranean. PhD thesis, Universitat de Barcelona.. -. gs :: :: ::
Cros, L. (1995). Calcareous nannoplankton in surface sediments of the Calano-Balearic Sea. (Northwestern Mediterranean ). In, Flores, J. A. & Sierro, F. J. (eds) Proceedings of the 5th INA Conference, Salamanca 1993. Universidad de Salamanca, Salamanca 47-59. gs :: :: ::
Cros, L. (2000). Variety of exothecal coccoliths of Syracosphaera. Journal of Nannoplankton Research. 22(1): 41-51. gs :: V :: O ::
Cros, L. (2002). Planktic coccolithophores of the NW Mediterranean. PhD thesis, Universitat de Barcelona. 1-181. gs :: :: O ::
Cros, L. & Estrada, M. (2004). Picarola margalefii, gen. et sp. nov., a new planktonic coccolithophore from NW Mediterranean waters. Scientia Marina. 68(Suppl 1): 243-248. gs :: V :: O :: doi:10.3989/scimar.2004.68s1243
Cros, L. & Estrada, M. (2013). Holo-heterococcolithophore life cycles: ecological implications. Marine Ecology Progress Series. 492: 57-68. gs :: :: :: doi:10.3354/meps10473
Cros, L. & Fortuño, J. -M. (2002). Atlas of northwestern Mediterranean coccolithophores. Scientia Marina. 66: 1-186. gs :: V :: O :: doi:10.3989/scimar.2002.66s11
Cros, L., Fortuno, J. -M. & Estrada, M. (2013). Elemental composition of coccoliths: Mg/Ca relationships. Scientia Marina. 77(S1): 63-67. gs :: V :: O :: doi:10.3989/scimar.03727.27E
Cros, L., Geisen, M. & Young, J. R. (2003). On Mediterranean Papposphaeraceae Jordan et Young. Gaia. 11: 37-38. gs :: :: ::
Cros, L., Kleijne, A. & Young, J. R. (2000a). Coccolithophorid diversity in the genus Polycrater and possible relationships with other genera. Journal of Nannoplankton Research. 22(2): 92-92. gs :: V :: O ::
Cros, L., Kleijne, A., Zeltner, A., Billard, C. & Young, J. R. (2000b). New examples of holococcolith-heterococcolith combination coccospheres and their implications for coccolithophorid biology. In, Young, J. R., Thierstein, H. R. & Winter, A. (eds) Nannoplankton ecology and palaeocology, Proceedings of the INA7 conference, Puerto Rico, February 1998. Marine Micropaleontology . 39(1-4): 1-34. gs :: :: :: doi:10.1016/S0377-8398(00)00010-4
Cros, L. & McGrane, P. B. (2014). Anthosphaera origami sp. nov., a planktonic coccolithophore with characteristic paper-boat-shaped structures. Journal of Nannoplankton Research. Coccolithophores 2014 abstracts 34(S): 23-25. gs :: V :: O ::
Crouch, E. M. et al. (2003). The Apectodinium acme and terrestrial discharge during the Paleocene-Eocene thermal maximum: new palynological, geochemical and calcareous nannoplankton observations at Tawanui, New Zealand. Palaeogeography Palaeoclimatology Palaeoecology. 194(4): 387-403. gs :: :: :: doi:10.1016/S0031-0182(03)00334-1
Crouch, J. K. & Bukry, D. (1979). Comparison of Miocene provincial foraminiferal stages to coccolith zones in the California Continental Borderland. Geology. 7(4): 211-215. gs :: :: :: doi:10.1130/0091-7613(1979)7<211:COMPFS>2.0.CO;2
Crouch, J. K. & Bukry, D. (1980). Comment and Reply on ‘Comparison of Miocene provincial foraminiferal stages to coccolith zones in the California Continental Borderland’: REPLY. Geology. 8(1): 5-20. gs :: :: :: doi:10.1130/0091-7613(1980)8<4:CAROCO>2.0.CO;2
Crudeli, D. & Kinkel, H. (2004). Reticulofenestra calicis n. sp., an unusual small reticulofenestrid coccolith from the Lower Pliocene of the South Caribbean Sea. Micropaleontology. 50(4): 369-379. gs :: :: :: doi:10.2113/50.4.369
Crudeli, D., Kinkel, H., Steph, S. & Young, J. R. (2004a). Oceanic distribution of the biodiversity of very small reticulofenestrids (Lower Pliocene). Journal of Nannoplankton Research. 26(2): 27-28. gs :: :: ::
Crudeli, D. & Young, J. R. (2003). SEM-LM study of holococcoliths preserved in Eastern Mediterranean sediments (Holocene/Late Pleistocene). Journal of Nannoplankton Research. 25(1): 39-50. gs :: V :: O ::
Crudeli, D. et al. (2004b). Abnormal carbonate diagenesis in Holocene-Late Pleistocene sapropel-associated sediments from the Eastern Mediterranean; evidence from Emiliania huxleyi coccolith morphology. In, Villa, G., Lees, J. A. & Bown, P. R. (eds) Calcareous Nannofossil Palaeoecology and Palaeocenographic Reconstructions, Proceedings of the INA9 conference, Parma 2002. Marine Micropaleontology . 52(1-4): 217-240. gs :: :: :: doi:10.1016/j.marmicro.2004.04.010
Crudeli, D. et al. (2006). Fossil record of holococcoliths and selected hetero-holococcolith associations from the Mediterranean (Holocene-late Pleistocene): evaluation of carbonate diagenesis, palaeoecological, and palaeoceanographic implications. Palaeogeography Palaeoclimatology Palaeoecology. 237: 191-212. gs :: :: :: doi:10.1016/j.palaeo.2005.11.022
Crux, J. A. (1980). A biostratigraphical study of Upper Cretaceous nannofossils from South-east England and North France. PhD thesis, University College London. -. gs :: :: ::
Crux, J. A. (1981). New calcareous nannofossil taxa from the Cretaceous of South East England. Neues Jahrbuch für Geologie und Paläontologie, Monatshefte. 1981: 633-640. gs :: V :: O :: doi:10.1127/njgpm/1981/1981/633
Crux, J. A. (1982). Upper Cretaceous (Cenomanian to Campanian) calcareous nannofossils. In, Lord, A. R. (ed.) A Stratigraphical Index of Calcareous Nannofossils. British Micropalaeontological Society Series, Ellis Horwood, Chichester 81-135. gs :: :: O ::
Crux, J. A. (1984). Biostratigraphy of Early Jurassic calcareous nannofossils from southwest Germany. Neues Jahrbuch für Geologie und Paläontologie, Abhandlungen. 169: 160-186. gs :: :: O ::
Crux, J. A. (1985). Crepidolithus pliensbachensis nomen novum pro Crepidolithus ocellatus Crux 1984 non (Bramlette and Sullivan) Nöel 1965. INA Newsletter. 7(1): 31-31. gs :: V :: O ::
Crux, J. A. (1986). Tegulalithus, a new genus of Early Cretaceous calcareous nannofossils. INA Newsletter. 8(2): 88-90. gs :: V :: O ::
Crux, J. A. (1987a). Concerning dimorphism in Early Jurassic coccoliths and the origin of the genus Discorhabdus Noël 1965. Abhandlungen der Geologischen Bundesanstalt. 39: 51-55. gs :: V :: O ::
Crux, J. A. (1987b). Early Jurassic calcareous nannofossil biostratigraphic events. Newsletters on Stratigraphy. 17: 79-100. gs :: V :: O :: doi:10.1127/nos/17/1987/79
Crux, J. A. (1987c). Six new species of calcareous nannofossils from the Lower Cretaceous strata of England and Germany. INA Newsletter. 9(1): 30-35. gs :: V :: O ::
Crux, J. A. (1989). Biostratigraphy and palaeogeographical applications of Lower Cretaceous nannofossils from north-western Europe. In, Crux, J. A. & van Heck, S. E. (eds) Nannofossils and their applications: Proceedings of the 2nd INA Conference, London 1987. British Micropalaeontological Society Publication Series . 143-211. gs :: V :: O ::
Crux, J. A. (1991a). Albian calcareous nannofossils from the Gault Clay of Munday’s Hill (Bedfordshire, England). Journal of Micropalaeontology. 10(203-221): -. gs :: V :: O :: doi:10.1144/jm.10.2.203
Crux, J. A. (1991b). Calcareous nannofossils recovered by Leg 114 in the Subantarctic South Atlantic Ocean. Proceedings of the Ocean Drilling Program, Scientific Results. 114: 155-177. gs :: V :: O :: doi:10.2973/odp.proc.sr.114.123.1991
Crux, J. A., Hamilton, G. B., Lord, A. R. & Taylor, R. J. (1982). Tortolithus gen. nov. Crux and new combinations of Mesozoic calcareous nannofossils from England. INA Newsletter. 4: 98-101. gs :: V :: O ::
Cruz, J., Wise, S. W., Jr, Parker, W. & Young, J. R. (2019). Distribution of NE Gulf of Mexico nannoplankton assemblages following the Macondo Well blowout: August–November 2011–2013. Journal of Nannoplankton Research. S4: 39-54. gs :: :: O ::
Cruz, J., Wise, S. W. & Young, J. R. (2014). First observation of Navilithus altivelum in the Gulf of Mexico. Journal of Nannoplankton Research. Coccolithophores 2014 abstracts 34(S): 27-29. gs :: V :: O ::
Cruz, J. W., Wise, S. W. Jr. & Parker, W. C. (2021). Miocene to Recent calcareous nannofossil biostratigraphy in the eastern Bengal Fan (Indian Ocean): Linking turbidites to tectonic activity during the evolution of the Himalayas. Journal of Nannoplankton Research. 39(1): 15-28. gs :: :: O ::
Cubillos, J. C., Henderiks, J., Beaufort, L., Howard, W. R. & Hallegraeff, G. M. (2012). Reconstructing calcification in ancient coccolithophores: Individual coccolith weight and morphology of Coccolithus pelagicus (sensu lato). Marine Micropaleontology. 92-3: 29-39. gs :: :: :: doi:10.1016/j.marmicro.2012.04.005
Cubillos, J. C. et al. (2007). Calcification morphotypes of the coccolithophorid Emiliania huxleyi in the Southern Ocean: changes in 2001 to 2006 compared to historical data. Marine Ecology Progress Series. 348(1): 47-54. gs :: :: :: doi:10.3354/meps07058
Culver, S. J. & Rawson, P. F. (2000). Biotic Response to Global Change: The Last 145 Million Years. Cambridge University Press. 1-517. gs :: :: :: doi:10.1017/CBO9780511535505.002
Curry, D. (1958). Lexique stratigraphique international. Fascicule 3a XII. Paléogène (d'Angleterre). CNRS, Paris. -. gs :: :: ::
Curry, D. (1981a). Bartonian. Paris. 23-36. gs :: :: ::
Curry, D. (1981b). Thanetian. In, Pomerol, C. (ed.) Stratotypes of Palaeogene Stages. Bulletin d'Information des Géologiques du Bassin de Paris . 2: 255-265. gs :: :: ::
Curry, D. et al. (1978). A correlation of Tertiary rocks in the British Isles. Geological Society of London, Special Report. 12: 1-72. gs :: :: ::
D'Onofrio, R. et al. (2016). Environmental perturbations at the early Eocene ETM2, H2, and I1 events as inferred by Tethyan calcareous plankton (Terche section, northeastern Italy). Paleoceanography. 31(9): 1225-1247. gs :: :: :: doi:10.1002/2016PA002940
D. Stefano, E., Capraro, L., Incarbona, A., Massari, F., Sprovieri, R. & Bonomo, S. (2011). Calcareous Nannofossil and Planktonic Foraminifera Biostratigraphy of selected Piacenzian-Gelasian Laminites from Southern Italy. Italian Journal of Geosciences. 130(3): 343-351. gs :: :: :: doi:10.3301/IJG.2011.06
da Gama, R. O. B. P. (2016). Spearlithus, a new Pleistocene calcareous nannofossil genus from shallow marine settings of the Dominican Republic. Micropaleontology. 62(4): 273-291. gs :: :: :: doi:10.47894/mpal.62.4.01
da Gama, R. O. B. P., Bown, P. R. & Cabral, M. C. (2009). Calcareous nannofossil biostratigraphy of an outcrop section of Aptian sediments of west-central Portugal (Lusitanian Basin). Journal of Micropalaeontology. 28(2): 153-160. gs :: V :: O :: doi:10.1144/jm.28.2.153
Da Gama, R. O. B. P., Lutz, B., Desjardins, P., Thompson, M., Prince, I. & Espejo, I. (2014). Integrated paleoenvironmental analysis of the Niobrara Formation: Cretaceous Western Interior Seaway, northern Colorado. Palaeogeography Palaeoclimatology Palaeoecology. 413: 66-80. gs :: :: :: doi:10.1016/j.palaeo.2014.05.005
da Gama, R. O. B. P. & Varol, O. (2013). New Late Oligocene to Miocene Species. Journal of Nannoplankton Research. 33(1): 1-12. gs :: V :: O ::
da Gama, R. O. B. P. & Varol, O. (2014). A new perspective of the central structure and the alignment of neogene discoasters. Journal of Nannoplankton Research. 33(1): 23-28. gs :: V :: O ::
da Rocha, R. B. et al. (2016). Base of the Toarcian Stage of the Lower Jurassic defined by the Global Boundary Stratotype Section and Point (GSSP) at the Peniche section (Portugal). Episodes. 39(3): 460-481. gs :: V :: O :: doi:10.18814/epiiugs/2016/v39i3/99741
Dallanave, E. et al. (2015). Early to middle Eocene magneto-biochronology of the southwest Pacific Ocean and climate influence on sedimentation: Insights from the Mead Stream section, New Zealand. Geological Society of America, Bulletin. 127(5-6): 643-660. gs :: :: :: doi:10.1130/B31147.1
Dallanave, E., Agnini, C., Muttoni, G. & Rio, D. (2009). Magneto-biostratigraphy of the Cicogna section (Italy): Implications for the late Paleocene–early Eocene time scale. Earth and Planetary Science Letters. 285: 39-51. gs :: :: :: doi:10.1016/j.epsl.2009.05.033
Dandonneau, Y., Montel, Y., Blanchot, J., Giraudeau, J. & Neveux, J. (2006). Temporal variability in phytoplankton pigments, picoplankton and coccolithophores along a transect through the North Atlantic and tropical southwestern Pacific. Deep-Sea Research Part I: Oceanographic Research Papers. 53: 689-712. gs :: :: :: doi:10.1016/j.dsr.2006.01.002
Danelian, T. et al. (2007). The record of mid Cretaceous oceanic anoxic events from the Ionian zone of southern Albania. Revue de Micropaléontologie. 50: 225-237. gs :: :: :: doi:10.1016/j.revmic.2007.06.004
Dang Dic Nga, & Shumenko, S. I. (1975). New species of calcreous nannoplankton from the Eocene of Ukraine. Paleontologicheskiy Zhurnal. 22-26. gs :: V :: O ::
Dangeard, P. (1934). Sur l'épiphytisme d'une Coccolithinée, rencontrée à Roscoff. Actes de la Société Linnéenne de Bordeaux. 1934: 45-47. gs :: :: ::
Daniels, C. J. et al. (2016). Species-specific calcite production reveals Coccolithus pelagicus as the key calcifier in the Arctic Ocean. Marine Ecology Progress Series. 555: 29-47. gs :: :: :: doi:10.3354/meps11820
Daniels, C. J., Sheward, R. M. & Poulton, A. J. (2014a). Biogeochemical implications of comparative growth rates of Emiliania huxleyi and Coccolithus species. Biogeosciences. 11: 6915-6925. gs :: V :: O :: doi:10.5194/bg-11-6915-2014
Daniels, C. J., Tyrrell, T., Poulton, A. J. & Pettit, L. (2012). The influence of lithogenic material on particulate inorganic carbon measurements of coccolithophores in the Bay of Biscay. Limnology and Oceanography. 57(1): 145-153. gs :: :: :: doi:10.4319/lo.2012.57.1.0145
Daniels, C. J., Tyrrell, T., Poulton, A. J. & Young, J. R. (2014b). A mixed life-cycle stage bloom of Syracosphaera bannockii (Borsetti and Cati, 1976) Cros et al. 2000 (Bay of Biscay April 2010). Journal of Nannoplankton Research. Coccolithophores 2014 abstracts 34(S): 31-35. gs :: V :: O ::
Davis, C. V., Badger, M. P. S., Bown, P. R. & Schmidt, D. N. (2013). The response of calcifying plankton to climate change in the Pliocene. Biogeosciences. 10: 6131-6139. gs :: V :: O :: doi:10.5194/bg-10-6131-2013
Davis, S. A., Young, J. R. & Mann, S. (1995). Electron Microscopy Studies of Shield Elements of Emiliania huxleyi Coccoliths. Botanica Marina. 38: 493-497. gs :: :: :: doi:10.1515/botm.1995.38.1-6.493
Dayja, D., Janin, M-C. & Boutakiout, M. (2005). Biochronology and correlation between the Neogene basins of the South Rifian Corridor (Morocco) based on planktonic foraminifer and calcareous nannofossil events. Revue de Micropaléontologie. 48: 141-157. gs :: :: :: doi:10.1016/j.revmic.2005.03.002
de Bernardi, B., Ziveri, P., Erba, E. & Thunell, R. C. (2005). Coccolithophore export production during the 1997–1998 El Nin _o event in Santa Barbara Basin (California). Marine Micropaleontology. 55: 107-125. gs :: :: :: doi:10.1016/j.marmicro.2005.02.003
de Bodt, C., van Oostende, N., Harlay, J., Sabbe, K. & Chou, L. (2010). Individual and interacting effects of pCO2 and temperature on Emiliania huxleyi calcification: study of the calcite production, the coccolith morphology and the coccosphere size. Biogeosciences. 7: 1401-1412. gs :: V :: O :: doi:10.5194/bg-7-1401-2010
de Garidel-Thoron, T., Beaufort, L., Linsley, B. K. & Dannenmann, S. (2001). Millennial-scale dynamics of the east Asian winter monsoon during the last 200,000 years. Paleoceanography. 16(5): 491-502. gs :: :: :: doi:10.1029/2000PA000557
De Jong, E., van Rens, L., Westbroek, P. & Bosch, L. (1979). Biocalcification by the Marine Alga Emiliania huxleyi (Lohmann) Kamptner. European Journal of Biochemistry. 99: 559-567. gs :: :: :: doi:10.1111/j.1432-1033.1979.tb13288.x
de Jong, E. W. (1975). Isolation and characterisation of polysaccharides associated with coccoliths. PhD thesis, Leiden University, NL. -. gs :: :: ::
De Jong, E. W., Bosch, L. & Westbroek, P. (1976a). Isolation and Characterization of a Ca2 -Binding Polysaccharide Associated with Coccoliths of Emiliania huxleyi (Lohmann) Kamptner. European Journal of Biochemistry. 70: 611-621. gs :: :: :: doi:10.1111/j.1432-1033.1976.tb11052.x
de Jong, E. W., Dam, W., Westbroek, P. & Crenshaw, M. A. (1976a). Aspects of calcification in Emiliania huxleyi (unicellular alga). In, Watabe N. & Wilbur, K. M (eds) The Mechanisms of Mineralization in the Invertebrates and Plants. University of South Carolina Press 135-153. gs :: :: ::
de Jong, E. W. et al. (1983). Calcification in coccolithophorids. In, Westbroek, P. & Jong, E. W. de (eds) Biomineralization and Biological Metal Accumulation. Biological and Geological Perspectives. Reidel, Dordrecht 291-301. gs :: :: ::
de Kaenel, E. & Bergen, J. A. (1993). New Early and Middle Jurassic coccolith taxa and biostratigraphy from the eastern proto-Atlantic (Morocco, Portugal and DSDP Site 547B). Eclogae Geologicae Helvetiae. 86(861-907): -. gs :: :: O ::
de Kaenel, E. & Bergen, J. A. (1996). Mesozoic calcareous nannofossil biostratigraphy from sites 897, 899, and 901, Iberia Abyssal Plain: New biostratigraphic evidence. Proceedings of the Ocean Drilling Program, Scientific Results. 149: 27-59. gs :: :: O :: doi:10.2973/odp.proc.sr.149.206.1996
de Kaenel, E., Bergen, J. A., Browning, E., Blair, S. A. & Boesiger, T. M. (2017). Uppermost Oligocene to Middle Miocene Discoaster and Catinaster taxonomy and stratigraphy in the circum North Atlantic Basin: Gulf of Mexico and ODP Leg 154. Journal of Nannoplankton Research. 37(2-3): 215-244. gs :: :: O ::
de Kaenel, E., Bergen, J. A. & von Salis Perch-Nielsen, K. (1996). Jurassic calcareous nannofossil biostratigraphy of western Europe. Compilation of recent studies and calibration of bioevents. Bulletin de la Société Géologique de France. 167(1): 15-28. gs :: V :: O ::
de Kaenel, E., Mojon, P. -O. & Pictet, A. (2020). New biostratigraphical data (calcareous nannofossils, ammonites) and Early to Late Barremian transition in the Urgonien Jaune facies and Marnes de la Russille complex of the Swiss Jura Mountains. Swiss Journal of Palaeontology. 139(6): 1-43. gs :: :: O :: doi:10.1186/s13358-020-00209-5
de Kaenel, E. & Villa, G. (1996). Oligocene-Miocene calcareous nannofossil biostratigraphy and paleoeecology from the Iberian Abyssal Plain. Proceedings of the Ocean Drilling Program, Scientific Results. 149: 79-145. gs :: :: O :: doi:10.2973/odp.proc.sr.149.208.1996
de Kaenel, E. & Villa, G. (1998). Helicosphaera carteri: a further note on its stratigraphical occurrence. Journal of Nannoplankton Research. 20(2): 105-106. gs :: V :: O ::
De La Rocha, C. L. & Passow, U. (2007). Factors influencing the sinking of POC and the efficiency of the biological carbon pump. Deep-Sea Research Part II: Topical Studies in Oceanography. 54: 639-658. gs :: :: :: doi:10.1016/j.dsr2.2007.01.004
de Lapparent, A. (1881). Traité de Géologie (1st edn). F. Savy, Paris. -. gs :: :: ::
de Lapparent, J. (1931). Sur les prétendus "embryons" de Lagena. Compte Rendu Sommaire des Séances de la Société Géologique de France. 15: 222-223. gs :: :: ::
de Oliveira, L. C. V., Dino, R., Duarte, L. & Perilli, N. (2007). Calcareous nannofossils and palynomorphs from Pliensbachian–Toarcian boundary in Lusitanian Basin, Portugal. Revista Brasileira de Paleontologia. 10: 5-16. gs :: :: :: doi:10.4072/rbp.2007.1.01
De Schepper, S. & Head, M. J. (2008). Age calibration of dinoflagellate cyst and acritarch events in the Pliocene–Pleistocene of the eastern North Atlantic (DSDP Hole 610A). Stratigraphy. 5(2): 137-161. gs :: :: :: doi:10.1017/S1477201907002167
de Vargas, C., Aubry, M. -P., Probert, I. & Young, J. R. (2007). Origin and evolution of coccolithophores: From coastal hunters to oceanic farmers. In, Falkowski, P. G. & Knoll, A. H. (eds) Evolution of Primary Producers in the Sea. Elsevier, Boston 251-285. gs :: :: :: doi:10.1016/B978-012370518-1/50013-8
de Vargas, C. & Probert, I. (2004). New keys to the Past: Current and future DNA studies in Coccolithophores. Micropaleontology. 50(supplement 1): 45-54. gs :: :: :: doi:10.2113/50.Suppl_1.45
de Vargas, C., Sáez, A. G., Medlin, L. K. & Thierstein, H. R. (2004). Super-species in the calcareous plankton. In, Thierstein, H. R. & Young, J. R. (eds) Coccolithophores - From molecular processes to global impact. Springer, Berlin 271-298. gs :: V :: O :: doi:10.1007/978-3-662-06278-4_11
de Vries, J. et al. (2021). Haplo-diplontic life cycle expands coccolithophore niche. Biogeosciences. 18: 1161-1184. gs :: V :: O :: doi:10.5194/bg-18-1161-2021
de Vrind-de Jong, E. W., Borman, A. H., Thierry, R., Westbroek, P., Grüter, M. & Kamerling, J. P. (1986). Calcification in the coccolithophorids Emiliania huxleyi and Pleurochrysis carterae II. Biochemical aspects,. In, Leadbeater, B. S. C. & Green, J. C. (eds) Biomineralisation in lower plants and animals. Systematics Association Special Volume . 30: 205-217. gs :: :: ::
de Vrind-de Jong, E. W. & de Vrind, J. P. M. (1997). Algal deposition of carbonates and silicates. Reviews in Mineralogy. 35: 267-307. gs :: :: ::
de Vrind-de Jong, E. W., van Emburg, P. R. & de Vrind, J. P. M. (1994). Mechanisms of calcification: Emiliania huxleyi as model system. In, Green, J. C. & Leadbeater, B. S. C. (eds) The Haptophyte Algae. Systematics Association Special Volume . 51(8): 149-166. gs :: :: ::
Dedert, M. et al. (2014). Temporally variable diagenetic overgrowth on deep-sea nannofossil carbonates across Palaeogene hyperthermals and implications for isotopic analyses. Marine Micropaleontology. 107: 18-31. gs :: :: :: doi:10.1016/j.marmicro.2013.12.004
Dedert, M., Stoll, H. M., Kroon, D., Shimizu, N., Kanamaru, K. & Ziveri, P. (2012). Productivity response of calcareous nannoplankton to Eocene Thermal Maximum 2 (ETM2). Climate of the Past. 8(3): 977-993. gs :: V :: O :: doi:10.5194/cp-8-977-2012
Deflandre, G. (1934). Les Discoasterides, microfossiles calcaires incertae sedis. Bulletin de la Société Francaise de Microscopie. 3: 59-67. gs :: :: ::
Deflandre, G. (1939a). Les stéphanolithes, représentants d'un type nouveau de coccolithes Jurassique supérieur. Comptes Rendus Hebdomadaires des Séances de l'Académie des Sciences, Paris. 208: 1331-1333. gs :: V :: O ::
Deflandre, G. (1939b). Sur la presence de coccolithophoridées et de discoastéridées dans les marnes sahéliennes d’el medhi. Bulletin de la Société Zoologique de France. 44: 200-202. gs :: :: ::
Deflandre, G. (1942a). Coccolithophoridés fossiles d'Oranie. Genres Scyphosphaera Lohmann et Thorosphaera Ostenfeld. Bulletin de la Société d'Histoire Naturelle de Toulouse. 77: 125-137. gs :: :: ::
Deflandre, G. (1942b). Possibilitès morphogénétiques comparées du calcaire et de la silice, à propos d'un nouveau type de microfossile calcaire de structure complexe, Lithostromation perdurum n. g. n. sp. Comptes Rendus Hebdomadaires des Séances de l'Académie des Sciences, Paris. 214: 917-920. gs :: V :: O ::
Deflandre, G. (1947a). Braarudosphaera nov. gen., type d'une famille nouvelle de Coccolithophorides actuels a elements composites. Comptes Rendus Hebdomadaires des Séances de l'Académie des Sciences, Paris. 225: 439-441. gs :: V :: O ::
Deflandre, G. (1947b). Calciodinellum nov. gen., premier représentant d'une famille nouvelle de Dinoflagellès fossiles à theque calcaire. Comptes Rendus Hebdomadaires des Séances de l'Académie des Sciences, Paris. 224: 1781-1782. gs :: V :: O ::
Deflandre, G. (1948). Les calciodinellidés. Dinoflagellés fossiles à thèque calcaire. Le Botaniste. 34: 191-219. gs :: :: ::
Deflandre, G. (1950a). Observations sur les Coccolithophoridés, à propos d'un nouveau type de Braarudosphaeridé, Micrantholithus, à éléments clastiques. Comptes Rendus Hebdomadaires des Séances de l'Académie des Sciences, Paris. 231: 1156-1158. gs :: V :: O ::
Deflandre, G. (1952). Classe des Coccolithophoridés. (Coccolithophoridae. Lohmann, 1902). In, Grassé, P. P. (ed.) Traité de Zoologie. Masson, Paris 439-470. gs :: V :: O ::
Deflandre, G. (1953). Hétérogénéité intrinsèque et pluralité des éleménts dans les coccolithes actuels et fossiles. Comptes Rendus Hebdomadaires des Séances de l'Académie des Sciences, Paris. 237: 1785-1787. gs :: V :: O ::
Deflandre, G. (1957). Goniolithus nov. gen., type d'une famille nouvelle de Coccolithophoridés, à éléments pentagonaux non composites. Comptes Rendus Hebdomadaires des Séances de l'Académie des Sciences, Paris. 244: 2539-2541. gs :: V :: O ::
Deflandre, G. (1959). Sur les nannofossiles calcaires et leur systématique. Revue de Micropaléontologie. 2: 127-152. gs :: :: ::
Deflandre, G. (1962). Les nannofossiles des argiles de Limans et leur signification. Bull. Cult. Haute-Provence St Michel l'Observatoire. 26: 1-8. gs :: :: ::
Deflandre, G. (1963). Sur les Microrhabdulidés, famille nouvelle de nannofossiles calcaires. Comptes Rendus Hebdomadaires des Séances de l'Académie des Sciences, Paris. 256: 3484-3487. gs :: V :: O ::
Deflandre, G. (1970). Présence de nannofossiles calcaires (coccolithes et incertae sedis) dans le Siluro-dévonien d'Afrique du Nord. Comptes Rendus Hebdomadaires des Séances de l'Académie des Sciences, Paris. 270: 2916-2921. gs :: V :: O ::
Deflandre, G. & Dangeard, L. (1938). Schizosphaerella, un nouveau microfossile méconnu du Jurassique moyen et supérieur. Comptes Rendus Hebdomadaires des Séances de l'Académie des Sciences, Paris. 207: 1115-1117. gs :: V :: O ::
Deflandre, G. & Deflandre-Rigaud, M. (1956). Micrascidites manip. nov., sclerites de Didemnides (Ascidies, Tuniciers) fossiles due Lutétian du Bassin Parisien et du Balcombien d'Australia. Compte Rendu Sommaire des Séances de la Société Géologique de France. 1956: 47-48. gs :: :: O ::
Deflandre, G. & Deflandre-Rigaud, M. (1959a). Présence de nannoconidés dans le Crétacé supérieur du Bassin Parisien. Revue de Micropaléontologie. 2: 175-180. gs :: :: ::
Deflandre, G. & Deflandre-Rigaud, M. (1959b). Sur l'existence d'une association particulière de Nannoconides dans le Cretace superieur du bassin de Paris. Comptes Rendus Hebdomadaires des Séances de l'Académie des Sciences, Paris. -. gs :: V :: O ::
Deflandre, G. & Deflandre-Rigaud, M. (1962). Remarques sur l'évolution des Nannoconidés à propos de quelques nouveaux types du Crétacé inferieur de Haute-Provence. Comptes Rendus Hebdomadaires des Séances de l'Académie des Sciences, Paris. 255: 2948-2951. gs :: V :: O ::
Deflandre, G. & Deflandre-Rigaud, M. (1967). Diagnoses de quelques nouveaux: Nannoconidés gargasiens de Haute Provence. Bulletin du Muséum National d'Histoire Naturelle, Paris. 39(4): 774-778. gs :: V :: O ::
Deflandre, G. & Fert, C. (1954). Observations sur les coccolithophoridés actuels et fossiles en microscopie ordinaire et électronique. Annales de Paléontologie. 40: 115-176. gs :: :: ::
Deflandre, G & Deflandre-Rigaud, M. (1970). Commentaires sur la systematique et la nomenclature des nannofossiles calcaires. Cahiers de Micropaléontologie. Série 2 5: 1-17. gs :: :: ::
Deflandre, M. G. (1950b). PROTISTOLOGIE.- Hétérogénéité intrinséque et pluralité des éléments dans les coccolithes actuels et fossils. Comptes rendus de l'Académie des sciences, Paris. Série II, Méchanique, physique, chemie, sciences de l'Universe, sciences de la terre 231: 1156-1158. gs :: :: ::
Degens, E. T., Khoo, F. & Michaelis, W. (1977). Uranium anomaly in Black Sea sediments. Nature. 269: 566-569. gs :: :: :: doi:10.1038/269566a0
Delacotte, O., Renard, M., Laj, C. & Perch-Nielsen, K. (1985). Magnetostratigraphie et biostratigraphie du passage Cretace-Tertiaire de la coupe de Bidart (Pyrenees Atlantiques). (Magnetostratigraphy and biostratigraphy of the Cretaceous-Tertiary boundary from Bidart Section (Atlantic Pyrenees). Geologie de la France. 3: 243-254. gs :: :: ::
Delille, B. et al. (2005). Response of primary production and calcification to changes of pCO2 during experimental blooms of the coccolithophorid Emiliania huxleyi. Global Biogeochemical Cycles. 19: 1-14. gs :: V :: O :: doi:10.1029/2004GB002318
Demangel, I., Howe, R., Gardin, S. & Richoz, S. (2021). Eoconusphaera hallstattensis sp. nov. and a review of the Rhaetian genus Eoconusphaera. Journal of Nannoplankton Research. 39(1): 77-87. gs :: :: O ::
Demangel, I. et al. (2020). Development of early calcareous nannoplankton in the late Triassic (Northern Calcareous Alps, Austria). Global and Planetary Change. 193: 1-16. gs :: :: :: doi:10.1016/j.gloplacha.2020.103254
Deng, F. & Hu, Z. (2013). Cyanophage and algal virus. Virology Sinica. 28(5): 251-252. gs :: :: :: doi:10.1007/s12250-013-3381-y. Epub 2013 Sep 29.
Denne, R. A. (2003). Sequence Biostratigraphy and a New Nannofossil Zonation of the Pleistocene Gulf of Mexico. Transactions of the Gulf-Coast Association of Geological Societies. 53: 183-192. gs :: :: ::
Denne, R. A. (2007). Paleogene calcareous nannofossil bioevents from the fold belts of the deep-water central Gulf of Mexico. In, Kennan, L., Pindell, J. & Rosen, N. C. (eds) The Paleogene of the Gulf of Mexico and Caribbean Basins: Processes, Events, and Petroleum Systems. Gulf Coast Section of SEPM 27: 1-14. gs :: :: :: doi:10.5724/gcs.07.27.0211
Denne, R. A. (2008). Utilizing abundance changes of new and non-standard calcareous nannofossil taxa to increase biostra- tigraphic resolution in expanded continental margin deposits: Examples from the Middle and Lower Miocene of the Gulf of Mexico. Transactions of the Gulf-Coast Association of Geological Societies. 58: 227-239. gs :: :: ::
Denne, R. A. (2009). Assemblage-based biozonations: a key tool in the detection of reworked calcareous nannofossils. In, Demchuk, T. D & Gary, A. C. (eds) Geologic Problem Solving with Microfossils: A Volume in Honor of Garry D. Jones. Geological problem solving with microfossils . 93: 41-55. gs :: :: :: doi:10.2110/sepmsp.093.041
Deres, F. & Achéritéguy, J. (1980). Biostratigraphie des Nannoconides. Bulletin des Centres de Recherches Exploration-Production Elf-Aquitaine. 4: 1-53. gs :: :: O ::
Desmares, D., Grosheny, D., Beaudoin, B., Gardin, S. & Gauthier-Lafaye, F. (2007). High resolution stratigraphic record constrained by volcanic ash beds at the Cenomanian-Turonian boundary in the Western Interior Basin, USA. Cretaceous Research. 28: 561-582. gs :: :: :: doi:10.1016/j.cretres.2006.08.009
Desor, E. (1847). Sur le terrain danien, nouvel étage de la Craie. Bulletin de la Société Géologique de France. 4: 179-182. gs :: :: ::
Di Nocera, S. & Scandone, P. (1977). Triassic nannoplankton limestones of deep basin origin in the Central Mediterranean region. Palaeogeography Palaeoclimatology Palaeoecology. 21: 101-111. gs :: :: :: doi:10.1016/0031-0182(77)90008-6
di Stefano, A., Baldassini, N. & Alberico, I. (2015). Surface-water conditions in the Mediterranean Basin during earliest Pliocene as revealed by calcareous nannofossil assemblages: Comparison between western and eastern sectors. Palaeogeography Palaeoclimatology Palaeoecology. 440: 283-296. gs :: :: :: doi:10.1016/j.palaeo.2015.09.012
di Stefano, A. & Sturiale, G. (2010). Refinements of calcareous nannofossil biostratigraphy at the Miocene/Pliocene Boundary in the Mediterranean region. In, Giraud, F. & Mattioli, M. (eds) Recent advances in living coccolithophore and calcareous nannofossil studies, Proceedings of INA12, Lyon 2008. Geobios . 43(1): 5-20. gs :: :: :: doi:10.1016/j.geobios.2009.06.007
di Stefano, A., Verducci, M., Cascella, A. & Iaccarino, S. M. (2011a). Calcareous plankton events at the Early/Middle Miocene transition of DSDP Hole 608: comparison with Mediterranean successions for the definition of the Langhian GSSP. Stratigraphy. 8(2-3): 145-161. gs :: :: ::
di Stefano, A., Verducci, M., Maniscalco, R., Speranza, F. & Foresi, L. M. (2011b). High-resolution stratigraphy of the Contrada Pesciarello borehole succession (SE Sicily): a lower Langhian reference section for the Mediterranean region. Stratigraphy. 8(2-3): 111-124. gs :: :: ::
Di Stefano, E. (1998). Calcareous Nannofossil Quantitative Biostratigraphy of Holes 969E and 963B (Eastern Mediterranean). Proceedings of the Ocean Drilling Program, Scientific Results. 160: 99-112. gs :: V :: O :: doi:10.2973/odp.proc.sr.160.009.1998
di Stefano, E. & Incarbona, A. (2004). High-resolution palaeoenvironmental reconstruction of ODP Hole 963D (Sicily Channel) during the last deglaciation based on calcareous nannofossils. In, Villa, G., Lees, J. A. & Bown, P. R. (eds) Calcareous Nannofossil Palaeoecology and Palaeocenographic Reconstructions, Proceedings of the INA9 conference, Parma 2002. Marine Micropaleontology . 52(1-4): 241-254. gs :: :: :: doi:10.1016/j.marmicro.2004.04.009
Dias-Brito, D. (2000). Global stratigraphy, palaeobiogeography and palaeoecology of Albian–Maastrichtian pithonellid calcispheres: impact on Tethys configuration. Cretaceous Research. 21: 315-349. gs :: :: :: doi:10.1006/cres.2000.0196
Dickens, G. R. & Backman, J. (2013). Core alignment and composite depth scale for the lower Paleogene through uppermost Cretaceous interval at Deep Sea Drilling Project Site 577. Newsletters on Stratigraphy. 46(1): 47-68. gs :: :: :: doi:10.1127/0078-0421/2013/0027
Didymus, J. M. & Young, J. R. (1994). a net for the construction of model calcite rhombohedra. Journal of Nannoplankton Research. 16(2): 79-79. gs :: V :: O ::
Didymus, J. M., Young, J. R. & Mann, S. (1994). Construction and morphogenesis of the chiral ultrastructure of coccoliths from marine alga Emiliania huxleyi. Proceedings of the Royal Society of London. Series B: Biological Sciences 258: 237-245. gs :: :: :: doi:10.1098/rspb.1994.0168
Diez Fernández, S., Encinar, J. Ruiz, Sanz-Medel, A., Isensee, K. & Stoll, H. M. (2015). Determination of low B/Ca ratios in carbonates using ICP-QQQ. Geochemistry Geophysics Geosystems. 16(6): 2005-2014. gs :: :: :: doi:10.1002/2015GC005817
Dimiza, M. D. et al. (2020). Seasonal living coccolithophore distribution in the enclosed coastal environments of the Thessaloniki Bay (Thermaikos Gulf, NW Aegean Sea). Revue de Micropaléontologie. 69: 1-11. gs :: :: :: doi:10.1016/j.revmic.2020.100449
Dimiza, M. D. et al. (2016). The composition and distribution of living coccolithophores in the Aegean Sea (NE Mediterranean). Micropaleontology. 61(6): 521-540. gs :: :: :: doi:10.47894/mpal.61.6.09
Dimiza, M. D., Triantaphyllou, M. & Theodoridis, S. (2005). Sphaerocalyptra dermitzakii and Sphaerocalyptra youngii, two new holococcolithophore species from the Aegean Sea (eastern Mediterranean). Journal of Nannoplankton Research. 27(2): 135-139. gs :: V :: O ::
Dimiza, M. D., Triantaphyllou, M. V. & Dermitzakis, M. D. (2008). Seasonality and ecology of living coccolithophores in Eastern Mediterranean coastal environments (Andros Island, Middle Aegean Sea). Micropaleontology. 54(2): 159-175. gs :: :: ::
Dimiza, M. D., Triantaphyllou, M. V. & Malinverno, E. (2014). New evidence for the ecology of Helicosphaera carteri in polluted coastal environments (Elefsis Bay, Saronikos Gulf, Greece). Journal of Nannoplankton Research. Coccolithophores 2014 abstracts 34(S): 37-43. gs :: V :: O ::
Dittert, N. et al. (2000). Carbonate dissolution in the deep-sea: Methods, quatification and paleoceanographic application. In, Fischer, G. & Wefer, G. (eds) Use of Proxies in Paleoceanography: Examples from the South Atlantic. Springer Verlag, -. gs :: :: ::
Dixon, G. K., Brownlee, C. & Merrett, M. J. (1989). Measurement of internal pH in the coccolithophore Emiliania huxleyi using 2',7'-bis-(2-carboxyethyl)-5(and-6)carboxyfluorescein acetoxymethylester and digital imaging microscopy. Planta. 178(4): 443-449. gs :: :: :: doi:10.1007/BF00963813
Dixon, H. H. (1900). On the structure of Coccospheres and the Origin of Coccoliths. Proceedings of the Royal Society of London. 305-315. gs :: V :: O :: doi:10.1098/rspl.1899.0105
Dmitrenko, O. (1992). Paleoceanography of the Atlantic and Indian Oceans in the Cenozoic (calcareous nannoplankton data). In, Hamrsmid, B. & Young, J. R. (eds) Nannoplankton Research, Proceedings of the 4th INA Conference, Prague 1991, vol II. Knihovnicka ZPN . 14b: 69-86. gs :: V :: O ::
Dockerill, H. J. (1987). Triscutum, a distinctive new coccolith from the Jurassic. Bulletin des Centres de Recherches Exploration-Production Elf-Aquitaine. 11: 127-131. gs :: V :: O ::
Doeven, P. H. (1983). Cretaceous nannofossil stratigraphy and paleoecology of the Canadian Atlantic Margin. Bulletin of the Geological Survey of Canada. 356: 1-70. gs :: :: :: doi:10.4095/109267
Doeven, P. H., Gradstein, F. M., Jackson, A., Agterberg, F. P. & Nel, L. D. (1982). A quantitative nannofossil range chart. Micropaleontology. 28(1): 85-92. gs :: :: :: doi:10.2307/1485362
Dollfus, D. (1997). Reconnaissance de formes naturelles par des réseaux de neurones artificiels : application au nannoplancton calcaire. PhD thesis, Université Aix-Marseille III.. -. gs :: :: ::
Dong, L. F., Nimer, N. A., Okus, E. & Merrett, M. J. (1993). Dissolved inorganic carbon utilization in relation to calcite production in Emiliania huxleyi (Lohmann) Kamptner. New Phytologist. 123: 679-684. gs :: :: ::
Donovan, D. T., Curtis, M. T. & Curtis, S. A. (1989). A psiloceratid ammonite from the supposed Triassic Penarth Group of Avon, England. Palaeontology. 32: 231-235. gs :: :: ::
Dorigan, J. L. & Wilbur, K. M. (1973). Calcification and its inhibition in coccolithophorids. Journal of Phycology. -. gs :: :: ::
Doweld, A. B. (2012). Proposal to conserve the name Rhabdosphaera against Rhabdolithes (Algae: Prymnesiophyta). Taxon. 61(5 (2084)): 1118-1118. gs :: :: :: doi:10.1002/tax.615020
Doweld, A. B. (2014). Proposals to conserve the name Discoaster against Eu-discoaster, Helio-discoaster and Hemi-discoaster, and the names Heliodiscoaster and Hemidiscoaster with those spellings (fossil Prymnesiophyta (Algae) vel Haptomonada (Protista)). Taxon. 63(1 (2265-2267)): 195-197. gs :: :: :: doi:10.12705/631.26
Doweld, A. B. (2017). Proposal to conserve the name Cribrosphaerella against Cribrosphaera (fossil Algae: Prymnesiophycota). Taxon. 66(3): 763-764. gs :: :: :: doi:10.2307/26824549
Downie, C. (1956). Microplankton from the Kimeridge Clay. Quarterly Journal of the Geological Society of London. 112: 413-434. gs :: :: ::
Downie, C. & Honeycombe, R. W. K. (1956). Examination of Fossil Coccoliths in the Electron Microscope. Nature. 177: -. gs :: :: :: doi:10.1038/177947a0
Dowsett, H. J. (1988). Diachrony of Late Neogene microfossils in the Southwest Pacific Ocean: Application of the Graphic Correlation Method. Paleoceanography. 3(2): 209-222. gs :: :: :: doi:10.1029/PA003i002p00209
Dowsett, H. J. (1989a). Application of the graphic correlation method to Pliocene marine sequences. Marine Micropaleontology. 14: 3-32. gs :: :: :: doi:10.1016/0377-8398(89)90030-3
Dowsett, H. J. (1989b). Documentation of the Santonian-Campanian and Austinian-Tayloran Stage Boundaries in Mississippi and Alabama Using Calcareous Microfossils. U.S. Geological Survey Bulletin. 1884: 1-34. gs :: :: ::
Dowsett, H. J. & Robinson, M. M. (2006). Stratigraphic framework for Pliocene paleoclimate reconstruction: The correlation conundrum. Stratigraphy. 3(1): 53-64. gs :: :: ::
Drescher, B., Dillaman, R. M. & Taylor, A. R (2012). Coccolithogenesis in Scyphosphaera apsteinii (Prymnesiophyceae). Journal of Phycology. 48: 1343-1361. gs :: :: :: doi:10.1111/j.1529-8817.2012.01227.x
Driever, B. (1988a). The size of the coccoliths of Dictyococcites perplexa Burns. INA Newsletter. 10(2): 89-89. gs :: V :: O :: doi:10.1016/0196-4399(88)90093-1
Driever, B. W. M. (1988b). Calcareous nannofossil biostratigraphy and paleoenvironmental interpretation of the Mediterranean Pliocene. Utrecht Micropaleontological Bulletin. 36: 1-245. gs :: :: O ::
Drobne, K., Bartol, M., Premec-Fucek, V., Schenk, B., Cosovic, V. & Pugliese, N. (2012). Microfauna and nannoplankton below the Paleocene/ Eocene transition in hemipelagic sediments at the southern slope of Mt. Nanos (NW part of the Paleogene Adriatic carbonate platform, Slovenia). Austrian Journal of Earth Sciences. 208-223. gs :: V :: O ::
Droop, M. R. (1953). On the ecology of flagellates from some brackish and fresh-water pools of Finland. Acta Botanica Fennica. 51: 3-52. gs :: :: ::
Droop, M. R. (1955). Some new supra-littoral protista. Journal of the Marine Biological Association of the United Kingdom. 34: 233-245. gs :: :: :: doi:10.1017/S0025315400027612
Drury, A. J. & John, C. M. (2016). Exploring the potential of clumped isotope thermometry on coccolith-rich sediments as a sea surface temperature proxy. Geochemistry Geophysics Geosystems. 17(10): 4092-4104. gs :: :: :: doi:10.1002/2016GC006459
Duan, W. (1985). Calcareous nannofossils from two deep-sea cores in the northern South China Sea. Acta Micropalaeontologica Sinica. 2: 92-102. gs :: :: ::
Duchamp-Alphonse, S., Gardin, S., Fiet, N., Bartolini, A., Blamart, D. & Pagel, M. (2007). Fertilization of the northwestern Tethys (Vocontian basin, SE France) during the Valanginian carbon isotope perturbation: Evidence from calcareous nannofossils and trace element data. Palaeogeography Palaeoclimatology Palaeoecology. 243: 132-151. gs :: :: :: doi:10.1016/j.palaeo.2006.07.010
Duchamp-Alphonse, S., Siani, G., Michel, E., Beaufort, L., Gally, Y. & Jaccard, S. L. (2018). Enhanced ocean-atmosphere carbon partitioning via the carbonate counter pump during the last deglacial. Nature Communications. 9(1): 2396-. gs :: V :: O :: doi:10.1038/s41467-018-04625-7
Dudley, W. C., Blackwelder, P., Brand, L. & Duplessy, Jean-C. (1986). Stable Isotopic Composition of Coccoliths. Marine Micropaleontology. 10: 1-8 . gs :: :: :: doi:10.1016/0377-8398(86)90021-6
Dudley, W. C., Duplessy, J. C., Blackwelder, P. L., Brand, L. E. & Guillard, R. R. L. (1980). Coccoliths in Pleistocene-Holocene nannofossil assemblages. Nature. 285: 222-223. gs :: :: :: doi:10.1038/285222a0
Dudley, W. C. & Goodney, D. E. (1979). Oxygen isotope content of coccoliths grown in culture. Deep-Sea Research Part I: Oceanographic Research Papers. 26(5): 495-503. gs :: :: :: doi:10.1016/0198-0149(79)90092-X
Dudley, W. C. & Nelson, C. S. (1989). Quaternary Surface-Water Stable Isotope Signal from Calcareous Nannofossils at DSDP Site 593, Southern Tasman Sea. Marine Micropaleontology. 13: 353-373 . gs :: :: :: doi:10.1016/0377-8398(89)90025-X
Dudley, W. C. & Nelson, C. S. (1994). The influence of non-equilibrium isotope fractionation on the Quaternary calcareous nannofossil stable isotope signal in the southwest Pacific Ocean, DSDP Site 594. Marine Micropaleontology. 24: 3-27. gs :: :: :: doi:10.1016/0377-8398(94)90008-6
Dufour, T. (1968). Quelques remarques sur les organismes incertae sedis de la famille des Calcisphaerulidae Bonet (1956). Comptes Rendus Hebdomadaires des Séances de l'Académie des Sciences, Paris. 266: 1947-1949. gs :: V :: O ::
Dumitrica, P. (1973). Cenozoic endoskeletal dinoflagellates in southwestern Pacific sediments cored during Leg 21 of the DSDP. Initial Reports of the Deep Sea Drilling Project. 21: 819-835. gs :: :: O :: doi:10.2973/dsdp.proc.21.125.1973
Dumont, A. (1849). Rapport sur la carte géologique de la Belgique. Bulletin de l'Academia Royale des Sciences des Lettres et des Beaux Artes de Bruxelles. 16: 351-373. gs :: :: ::
Dumoulin, J. A. & Bown, P. R. (1992). Depositional History, Nannofossil Biostratigraphy, and Correlation of Argo Abyssal Plain Sites 765 and 261. Proceedings of the Ocean Drilling Program, Scientific Results. 123: 3-56. gs :: :: O :: doi:10.2973/odp.proc.sr.123.156.1992
Dunkley Jones, T. & Bown, P. R. (2007). Post-sampling dissolution and the consistency of nannofossil diversity measures: A case study from freshly cored sediments of coastal Tanzania. Marine Micropaleontology. 62: 254-268. gs :: :: :: doi:10.1016/j.marmicro.2006.09.001
Dunkley Jones, T., Bown, P. R. & Pearson, P. (2009). Exceptionally well preserved upper Eocene to lower Oligocene calcareous nannofossils (Prymnesiophycidae) from the Pande Formation (Kilwa Group), Tanzania. Journal of Systematic Palaeontology. 7(4): 359-411. gs :: :: :: doi:10.1017/S1477201909990010
Dunkley Jones, T., Bown, P. R., Pearson, P. N., Wade, B. S., Coxall, H. K. & Lear, C. H. (2008). Major shifts in calcareous phytoplankton assemblages through the Eocene-Oligocene transition of Tanzania and their implications for low-latitude primary production. Paleoceanography. 23(4): -. gs :: :: :: doi:10.1029/2008PA001640
Dupont, C. L. & Ahner, B. A. (2005). Effects of copper, cadmium, and zinc on the production and exudation of thiols by Emiliania huxleyi. Limnology and Oceanography. 50(2): 508-515. gs :: :: :: doi:10.4319/lo.2005.50.2.0508
Duque-Herrera, Andrés-F., Helenes, J., Pardo-Trujillo, A., Flores-Villarejo, J-A. & Sierro-Sánchez, F-J. (2018). Miocene biostratigraphy and paleoecology from dinoflagellates, benthic foraminifera and calcareous nannofossils on the Colombian Pacific coast,. Marine Micropaleontology. 141: 42-54. gs :: :: :: doi:10.1016/j.marmicro.2018.05.002
Durak, G. M. (2013). Cellular and molecular mechanisms of biomineralisation in a silicifying haptophyte Prymnesium neolepis. PhD thesis, University of Plymouth. 1-227. gs :: V :: O ::
Durak, G. M., Brownlee, C. & Wheeler, G. L. (2017). The role of the cytoskeleton in biomineralisation in haptophyte algae. Scientific Reports. 7(15409): 1-12. gs :: V :: O :: doi:10.1038/s41598-17-15562-8
Durak, G. M. et al. (2016). A role for diatom-like silicon transporters in calcifying coccolithophores. Nature Communications. 7: -. gs :: V :: O :: doi:10.1038/ncomms10543
Durand Delga, M. (1957). Quleques remarques sur les Fibrosphères. Publications du Service de la Carte Géologique de l'Algérie Bulletin. 13: 153-164. gs :: :: ::
Dyhrman, S. T. & Palenik, B. (2003). Characterization of ectoenzyme activity and phosphate-regulated proteins in the coccolithophorid Emiliania huxleyi. Journal of Plankton Research. 25(10): 1215-1225. gs :: :: :: doi:10.1093/plankt/fbg086
D’Amario, B., Ziveri, P., Grelaud, M., Oviedo, A. & Kralj, M (2017). Coccolithophore haploid and diploid distribution patterns in the Mediterranean Sea: can a haplo-diploid life cycle be advantageous under climate change? Journal of Plankton Research. 9: 1-14. gs :: V :: O :: doi:10.1093/plankt/fbx044
D’Hondt, S., Pilson, M. E. Q., Sigurdsson, H., Hanson, A. K. & Carey, S. (1994). Surface-water acidification and extinction at the Cretaceous-Tertiary boundary. Geology. 22: 983-986. gs :: :: :: doi:10.1130/0091-7613(1994)022<0983:SWAAEA>2.3.CO;2
d’Onofrio, G., Marino, D., Bianco, L., Busico, E. & Montresor, M. (1999). Toward an assessment on the taxonomy of dinoflagellates that produce calcareous cysts (Calciodinelloideae, Dinophyceae): A morphological and molecular approach. Journal of Phycology. 35: 1063-1078. gs :: :: :: doi:10.1046/j.1529-8817.1999.3551063.x
Ebli, O. (1989). Foraminiferen und Coccolithen aus den Lias- Epsilon-Schiefern der Unkener Mulde (Tirolikum, Nördliche Kalkalpen). Mitteilungen der Bayerischen Staatssammlung für Paläontologie und Historische Geologie. 29: 61-83. gs :: V :: O ::
Echols, D. J. (1985). “Bolboforma”: A Miocene Algae of Possible Biostratigraphic and Paleoclimatic Value. Initial Reports of the Deep Sea Drilling Project. 82: 605-610. gs :: V :: O :: doi:10.2973/dsdp.proc.82.136.1985
Edvardsen, B., Egge, E. S. & Vaulot, D. (2016). Diversity and distribution of haptophytes revealed by environmental sequencing and metabarcoding – a review. Perspectives in Phycology. 3(2): 77-91. gs :: :: :: doi:10.1127/pip/2016/0052
Edvardsen, B., Eikrem, W., Green, J. C., Andersen, R. A., Moon-Van Der Staay, S. Y. & Medlin, L. K. (2000). Phylogenetic reconstructions of the Haptophyta inferred from 18S ribosomal DNA sequences and available morphological data. Phycologia. 39: 19-35. gs :: :: :: doi:10.2216/i0031-8884-39-1-19.1
Edvardsen, B., Eikrem, W., Throndsen, J., Sáez, A. G., Probert, I. & Medlin, L. K. (2011). Ribosomal DNA phylogenies and a morphological revision provide the basis for a revised taxonomy of the Prymnesiales (Haptophyta). European Journal of Phycology. 46(3): 202-228. gs :: V :: O :: doi:10.1080/09670262.2011.594095
Edvardsen, B. & Medlin, L. (1998). Genetic analyses of authentic and alternate forms of Chrysochromulina polylepis (Haptophyta). Phycologia. 37(4): 275-283. gs :: :: :: doi:10.2216/i0031-8884-37-4-275.1
Edvardsen, B. & Medlin, L. K. (2007). Molecular systematics of Haptophyta. In, Brodie, J. & Lewis, J. (eds) Unravelling the algae the past, present, and future of algal systematics. Systematics Association Special Volume . 75: 183-196. gs :: :: ::
Edvardsen, B. & Paasche, E. (1992). Two Motile Stages Of Chrysochromulina polylepis (Prymnesiophyceae): Morphology, Growth, and Toxicity. Journal of Phycology. 28: 104-114. gs :: :: :: doi:10.1111/j.0022-3646.1992.00104.x
Edvardsen, B. & Paasche, E. (1998). Bloom dynamics and physiology of Prymnesium and Chrysochromulina. In, Anderson, D. M., Cembella, A. D. & Hallegraeff, G. M. (eds) Physiological Ecology of Harmful Algal Blooms. Nato ASI (Advanced Study Institute) Series . G41: 193-. gs :: :: ::
Edvardsen, B. & Vaulot, D. (1996). Ploidy analysis of the two motile forms of Chrysocromulina polylepis (Prymnesiophyceae). Journal of Phycology. 32: 94-102. gs :: :: :: doi:10.1111/j.0022-3646.1996.00094.x
Edwards, A. R. (1963). A preparation technique for calcareous nannoplankton. Micropaleontology. 9(1): 103-104. gs :: :: :: doi:10.2307/1484615
Edwards, A. R. (1968a). Marine Climates in the Oamaru Distinct during Late Kaiatan to Early Whaingaroan Time. Tuatara. 14(1): 75-79. gs :: V :: O ::
Edwards, A. R. (1968b). The calcareous nannoplankton evidence for New Zealand Tertiary marine climate. Tuatara. 16(1): 26-31. gs :: V :: O ::
Edwards, A. R. (1971). A calcareous nannoplankton zonation of the New Zealand Palaeogene. In, Farinacci, A. (ed.) Proceedings of the Second Planktonic Conference Roma 1970. Edizioni Tecnoscienza, Rome 1: 381-419. gs :: :: ::
Edwards, A. R. (1973a). Calcareous Nannofossils from the Southwest Pacific, Deep Sea Drilling Project, Leg 21. Initial Reports of the Deep Sea Drilling Project. 21: 641-691. gs :: V :: O :: doi:10.2973/dsdp.proc.21.118.1973
Edwards, A. R. (1973b). Key species of New Zealand calcareous nannofossils. New Zealand Journal of Geology and Geophysics. 16: 68-89. gs :: V :: O :: doi:10.1080/00288306.1973.10425386
Edwards, A. R. & Perch-Nielsen, K. (1975). Calcareous nannofossils from the southern Southwest Pacific, Deep Sea Drilling Project, Leg 29. Initial Reports of the Deep Sea Drilling Project. 29: 469-539. gs :: :: O :: doi:10.2973/dsdp.proc.29.113.1975
Edwards, L. et al. (2000). Supplement to the preliminary stratigraphic database for subsurface sediments of Dorchester county, South Carolina (http://pubs.usgs.gov/openfile/of00-049/ChapB/T_CN_dat.htm). U.S. Geological Survey Open-file Report. 1-2. gs :: :: ::
Egge, J. K. & Heimdal, B. R. (1994). Blooms of phytoplankton including Emiliania huxleyi (Haptophyta). Effects of nutrient supply in diferent N : P Ratios. Sarsia. 79(4): 333-348. gs :: :: :: doi:10.1080/00364827.1994.10413565
Egger, H., Rögl, F. & Stradner, H. (2007). Kalkiges Nannoplankton und Foraminiferen aus der Chiasmolithus gigas-Subzone (Mitteleozän) von Niederhollabrunn (Waschbergzone, Niederösterreich). Jahrbuch der Geologischen Bundesanstalt. 379-386. gs :: V :: O ::
Egger, H., Young, J. R., Hay, W. W. & Haq, B. ul (2017). Tributes to Dr Herbert Stradner in recognition of the bestowal of the Eduard Suess Medal by th Austrain Gelogical Society. Berichte der Geologischen Bundesanstalt. 120: XVII-XXVI. gs :: V :: O ::
Egger,H. (2011). Climate and Biota of the Early Paleogene, Field-Trip Guidebook, 5 – 8 June 2011, Salzburg, Austria. Berichte der Geologischen Bundesanstalt. 86: 1-132. gs :: :: O ::
Ehrenberg, C (1839). Uber die Bildung der Kreidefelsen und des Kreidemergels durch unsichtbare Organismen. Abhandlungen der koniglichen preussischen Akademie der Wissenschaften zu Berlin. 1838: 59-147. gs :: :: ::
Ehrenberg, C. G. (1843). Über die verbreitung des jetzt wirkenden kleinsten organischen lebens in Asien, Australien und Afrika und über die vorherrschende bildung auch des oolithkalkes der Juraformation aus kleinen polythalamischen thieren. Bericht uber die zu Bekanntmachung geeigneten Verhandlungen der Koniglichen Preussische Akademie der Wissenschaften zu Berlin. 100-106. gs :: :: ::
Ehrendorfer, T. & Aubry, M-P. (1992). Calcareous Nannoplankton Changes Across the Cretaceous/Paleocene Boundary in the Southern Indian Ocean (Site 750). Proceedings of the Ocean Drilling Program, Scientific Results. 120: 451-470. gs :: V :: O :: doi:10.2973/odp.proc.sr.120.148.1992
Ehrendorfer, T. W. (1994). The calcareous nannofossil species Nephrolithus frequens Gorka (1957) and its morphotypes. Journal of Paleontology. 68(2): 191-200. gs :: :: :: doi:10.1017/S0022336000022782
Eide, L. K. (1990). Distribution of Coccoliths in Surface Sediments in the Norwegian-Greenland Sea. Marine Micropaleontology. 16: 65-75. gs :: :: :: doi:10.1016/0377-8398(90)90029-L
Eide, L. K., Beyer, I. K. & Jansen, E. (1996). Comparison of Quaternary interglacial periods in the Iceland Sea. Journal of Quaternary Science. 11(2): 115-124. gs :: V :: O :: doi:10.1002/(SICI)1099-1417(199603/04)11:2<115::AID-JQS233>3.0.CO;2-S
Eikrem, W. (1996). Chrysochromulina throndsenii sp. nov. (Prymnesiophyceae). Description of a new haptophyte flagellate from Norwegian waters. Phycologia. 35: 377-380. gs :: :: :: doi:10.2216/i0031-8884-35-5-377.1
Eikrem, W. & Edvardsen, B. (1999). Chrysochromulina fragaria sp. nov. (Prymnesiophyceae), a new haptophyte flagellate from Norwegian waters. Phycologia. 38: 149-155. gs :: :: :: doi:10.2216/i0031-8884-38-2-149.1
Eikrem, W. et al. (2016). Haptophyta. In, Archibald, J. M. (ed.) Handbook of the Protists. Springer 1-61. gs :: :: :: doi:10.1007/978-3-319-32669-6_38-1
Eikrem, W. & Moestrup, Ø. (1998). Structural analysis of the flagellar apparatus and the scaly periplast in Chrysochromulina scutellum sp. nov. (Prymnesiophyceae, Haptophyta) from the Skagerrak and the Baltic. Phycologia. 37: 132-153. gs :: :: :: doi:10.2216/i0031-8884-37-2-132.1
Eikrem, W. & Throndsen, J. (1998). Morphology of Chrysochromulina leadbeateri (Prymnesiophyceae) from northern Norway. Phycologia. 37(4): 292-299. gs :: :: :: doi:10.2216/i0031-8884-37-4-292.1
Eikrem, W. & Throndsen, J. (1999). The morphology of Chrysochromulina rotalis sp. nov. (Prymnesiophyceae, Haptophyta), isolated from the Skagerrak. Sarsia. 84: 445-449. gs :: :: :: doi:10.1080/00364827.1999.10807349
Eker-Develi, E. & Kideys, A. E. (2003). Distribution of phytoplankton in the southern Black Sea in summer 1996, spring and autumn 1998. Journal of Marine Systems. 39: 203-211. gs :: :: :: doi:10.1016/S0924-7963(03)00031-9
Eker-Develi, E., Kideys, A. E. & Tugrul, S. (2006). Effect of nutrients on culture dynamics of marine phytoplankton. Aquatic Science. 68: 28-39. gs :: :: :: doi:10.1007/s00027-005-0810-5
el Mamoune, J. & Martinez-Gallego, B. E. (1995). Calcareous nannofossils and planktic foraminifera of the Paleocene-Eocene boundary of southern Spain. In, Flores, J. A. & Sierro, F. J. (eds) Proceedings of the 5th INA Conference, Salamanca 1993. Universidad de Salamanca, Salamanca 143-162. gs :: :: ::
El-Dawoody, A. S. (1988). New calcareous nannoplankton species from the Paleocene rocks in souhern Egypt. Bulletin of the Faculty of Science, Cairo University. 56: 549-563. gs :: :: ::
Elbra, T. et al. (2018). Magneto- and biostratigraphy across the Jurassic-Cretaceous boundary in the Kurovice section, Western Carpathians, Czech Republic. Cretaceous Research. 89: 211-223. gs :: :: ::
Elbrachter, M. et al. (2008). Establishing an Agenda for Calcareous Dinoflagellate Research (Thoracosphaeraceae, Dinophyceae) including a nomenclatural synopsis of generic names. Taxon. 57(4): 1289-1303. gs :: :: :: doi:10.1002/tax.574019
Eldrett, J. S., Vieira, M., Gallagher, L., Hampton, M., Blaauw, M. & Swart, P. K. (2021). Late Cretaceous to Palaeogene carbon isotope, calcareous nannofossil and foraminifera stratigraphy of the Chalk Group, Central North Sea. Marine and Petroleum Geology. 124: 1-15. gs :: :: :: doi:10.1016/j.marpetgeo.2020.104789
Eleson, J. W. & Bralower, T. J. (2005). Evidence of changes in surface water temperature and productivity at the Cenomanian/Turonian Boundary. Micropaleontology. 51(4): 319-332. gs :: :: :: doi:10.2113/gsmicropal.51.4.319
Ellegaard, M., Moestrup, O., Andersen, T. J. & Lundholm, N. (2016). Long-term survival of haptophyte and prasinophyte resting stages in marine sediment. European Journal of Phycology. 51(3): 328-337. gs :: V :: O :: doi:10.1080/09670262.2016.1161243
Eller, G., Tobe, K. & Medlin, L. K. (2007). Hierarchical probes at various taxonomic levels in the Haptophyta and a new division level probe for the Heterokonta. Journal of Plankton Research. 29(7): 629-640. gs :: :: :: doi:10.1093/plankt/fbm045
Ellis, C. H., Lohman, W. H. & Wray, J. L. (1972). Upper Cenozoic calcareous nannofossils from the Gulf of Mexico (Deep Sea Drilling Project, Leg 1, Site 3). Colorado School of Mines Quarterly. 67: 1-103. gs :: :: ::
Ellis, C. H. & Lohmann, W. H. (1973). Toweius petalosus new species, a Paleocene calcareous nannofossil from Alabama. Tulane Studies in Geology and Paleontology. 10: 107-110. gs :: V :: O ::
Eltgroth, M. L., Watwood, R. L. & Wolfe, G. V. (2005). Production and Cellular Localization of Neutral Long-Chain Lipids in the Haptophyte Algae Isochrysis Galbana and Emiliania huxleyi. Journal of Phycology. 41: 1000-1009. gs :: :: :: doi:10.1111/j.1529-8817.2005.00128.x
Emiliani, C. (1993). Viral extinctions in deep-sea species. Nature. 366: 217-218. gs :: :: :: doi:10.1038/366217a0
Endo, H., Yoshida, M., Uji, T., Saga, N., Inoue, K. & Nagasawa, H. (2016). Stable Nuclear Transformation System for the Coccolithophorid Alga Pleurochrysis carterae. Scientific Reports. 6(22252): 1-10. gs :: V :: O :: doi:10.1038/srep22252 2016
Engel, A. (2002). Direct relationship between CO2 uptake and transparent exopolymer particles production in natural phytoplankton. Journal of Plankton Research. 24(1): 49-53. gs :: :: ::
Engel, A. et al. (2009a). Investigating the effect of ballasting by CaCO3 in Emiliania huxleyi, II: Decomposition of particulate organic matter. Deep-Sea Research Part II: Topical Studies in Oceanography. 56: 1408-1419. gs :: :: ::
Engel, A. et al. (2004). Transparent exopolymer particles and dissolved organic carbon production by Emiliania huxleyi exposed to different CO2 concentrations: a mesocosm experiment. Aquatic Microbial Ecology. 34: 93-104. gs :: :: :: doi:10.3354/ame034093
Engel, A., Szlosek, J., Abramson, L., Liu, Z. & Lee, C. (2009b). Investigating the effect of ballasting by CaCO3 in Emiliania huxleyi: I. Formation, settling velocities and physical properties of aggregates. Deep-Sea Research Part II: Topical Studies in Oceanography. 56: 1396-1407. gs :: :: ::
Engel, A. et al. (2005). Testing the direct effect of CO2 concentration on a bloom of the coccolithophorid Emiliania huxleyi in mesocosm experiments. Limnology and Oceanography. 50(2): 493-507. gs :: :: :: doi:10.4319/lo.2005.50.2.0493
Erba, E. (1988). Prae-Jurassic and Jurassic calcareous nannofossil bibliography: An update. INA Newsletter. 10(2): 94-102. gs :: V :: O ::
Erba, E. (1992). Middle Cretaceous calcareous nannofossils from the western Pacific (ODP Leg 129): evidence for palaeoequatorial crossings. Proceedings of the Ocean Drilling Program, Scientific Results. 129: 189-201. gs :: V :: O :: doi:10.2973/odp.proc.sr.129.119.1992
Erba, E. (1994). Nannofossils and superplumes: The Early Aptian "nannoconid crisis". Paleoceanography. 9(483-501): -. gs :: :: :: doi:10.1029/94PA00258
Erba, E. (2004). Calcareous nannofossils and Mesozoic oceanic anoxic events. In, Villa, G., Lees, J. A. & Bown, P. R. (eds) Calcareous Nannofossil Palaeoecology and Palaeocenographic Reconstructions, Proceedings of the INA9 conference, Parma 2002. Marine Micropaleontology . 52(1-4): 85-106. gs :: :: :: doi:10.1016/j.marmicro.2004.04.007
Erba, E. (2006). The first 150 million years history of calcareous nannoplankton: Biosphere–geosphere interactions. Palaeogeography Palaeoclimatology Palaeoecology. 232: 237-250. gs :: :: :: doi:10.1016/j.palaeo.2005.09.013
Erba, E., Bartolini, A. & Larson, R. L. (2004). Valanginian Weissert oceanic anoxic event. Geology. 32(2): 149-152. gs :: :: :: doi:10.1130/G20008.1
Erba, E., Bottini, C., Faucher, G., Gambacorta, G. & Visentin, S. (2019). The response of calcareous nannoplankton to Oceanic Anoxic Events: The Italian pelagic record. Bollettino della Societa Paleontologica Italiana. 58: 51-71. gs :: :: ::
Erba, E., Bottini, C., Weissert, H. J. & Keller, C. E. (2010). Calcareous Nannoplankton Response to Surface-Water Acidification Around Oceanic Anoxic Event 1a. Science. 329: 428-432. gs :: :: :: doi:10.1126/science.1188886
Erba, E., Bottini, C., Weissert, H. J. & Keller, C. E. (2011). Response to Comment on "Calcareous Nannoplankton Response to Surface-Water Acidification Around Oceanic Anoxic Event 1a". Science. 175: 1-2. gs :: :: :: doi:10.1126/science.1199608
Erba, E., Castradori, D. & Cobianchi, M. (1992a). Compilation of upper Triassic and Jurassic calcareous nannofossil ranges. In, Monechi, S., Proto-Decima, F. & Rio, D. (eds) Proceedings of the International Nannoplankton Association Conference, Firenze, 1989. Memorie di Scienze Geologiche . 43: -. gs :: :: ::
Erba, E., Castradori, D., Guasti, G. & Ripepe, M. (1992b). Calcareous nannofossils and Milankovitch cycles: the example of the Albian Gault Clay Formation (Southern England). Palaeogeography Palaeoclimatology Palaeoecology. 93: 47-69. gs :: :: :: doi:10.1016/0031-0182(92)90183-6
Erba, E. et al. (1999). Integrated stratigraphy of the Cismon APTICORE (southern Alps, Italy): a “reference section” for the Barremian–Aptian interval at low latitudes. Journal of Foraminiferal Research. 29: 371-391. gs :: :: ::
Erba, E. & Covington, J. M. (1992). Calcareous nannofossil biostratigraphy of Mesozoic sediments recovered from the Western Pacific, Leg 129. Proceedings of the Ocean Drilling Program, Scientific Results. 129: 179-178. gs :: V :: O :: doi:10.2973/odp.proc.sr.129.118.1992
Erba, E. & Tremolada, F. (2004). Nannofossil carbonate fluxes during the Early Cretaceous: Phytoplankton response to nutrification episodes, atmospheric CO2, and anoxia. Paleoceanography. 19: 1-18. gs :: :: :: doi:10.1029/2003PA000884
Eris, K. K. et al. (2007). The timing and evolution of the post-glacial transgression across the Sea of Marmara shelf south of I_stanbul. Marine Geology. 243: 57-76. gs :: :: :: doi:10.1016/j.margeo.2007.04.010
Escobar Castro, A. M., Sanchez Arango, J. & Perera Falcon, C. (1998). Aplicacion del nanoplancton calcareo en la explotacion de hidrocarburos. Nanoflora en el interval Cretacico Superior - Eoceno en Cuba Central. In, Tercer Congreso Cubano de Geología y Minería, Memorias. 2: 281-284. gs :: :: ::