REFERENCES

Bollmann, J., Baumann, K.-H., and Thierstein, H.R., 1998. Global dominance of Gephyrocapsa coccoliths in the late Pleistocene: selective dissolution, evolution, or global environmental change? Paleoceanography, 13(5):517–529.

Flores, J.-A., Gersonde, R., and Sierro, F.J., 1999. Pleistocene fluctuations in the Agulhas current retroflection based on the calcareous plankton record. Mar. Micropaleontol., 37(1):1–22. doi:10.1016/S0377-8398(99)00012-2

Flores, J.-A. Gersonde, R., Sierro, F.J., and Niebler, H.-S., 2000. Southern Ocean Pleistocene calcareous nannofossil events: calibration with the isotope and geomagnetic stratigraphies. Mar. Micropaleontol., 40(4):377–402. doi:10.1016/S0377-8398(00)00047-5

Flores, J.A., and Marino, M., 2002. Pleistocene calcareous nannofossil stratigraphy for ODP Leg 177 (Atlantic sector of the Southern Ocean). Mar. Micropaleontol., 45(3–4):191–224. doi:10.1016/S0377-8398(02)00030-0

Martini, E., 1971. Standard Tertiary and Quaternary calcareous nannoplankton zonation. In Farinacci, A. (Ed.), Proc. 2nd Int. Conf. Planktonic Microfossils Roma: Rome (Ed. Tecnosci.), 2:739–785.

Matsuoka, H., and Okada, H., 1990. Time-progressive morphometric changes of the genus Gephyrocapsa in the Quaternary sequence of the tropical Indian Ocean, Site 709. In Duncan, R.A., Backman, J., Peterson, L.C., et al., Proc. ODP, Sci. Results, 115: College Station, TX (Ocean Drilling Program), 255–270. doi:10.2973/odp.proc.sr.115.155.1990

Okada, H., and Bukry, D., 1980. Supplementary modification and introduction of code numbers to the low-latitude coccolith biostratigraphic zonation (Bukry, 1973; 1975). Mar. Micropaleontol., 5:321–325. doi:10.1016/0377-8398(80)90016-X

Pujos, A., and Giraudeau, J., 1993. Repartition des Noelaerhabdaceae (nannofossiles calcaires) dans le Quaternaire moyen et superieur des Oceans Atlantique et Pacifique. Oceanol. Acta, 16:349–362.

Pujos-Lamy, A., 1977. Emiliania et Gephyrocapsa (Nannoplancton calcaire): biometrie et interet biostratigraphique dans le Pleistocene superieur marin des Acores. Rev. Esp. Micropaleontol., 9:69–84.

Raffi, I., Backman, J., Rio, D., and Shackleton, N.J., 1993. Plio–Pleistocene nannofossil biostratigraphy and calibration to oxygen isotopes stratigraphies from Deep Sea Drilling Project Site 607 and Ocean Drilling Program Site 677. Paleoceanography, 8:387–408.

Sato, T., and Takayama, T., 1992. A stratigraphically significant new species of the calcareous nannofossil Reticulofenestra asanoi. In Ishizaki, K., and Saito, T. (Eds.), Centenary of Japanese Micropaleontology: Tokyo (Terra Sci. Publ.), 457–460.

Shipboard Scientific Party, 1999. Leg 177 summary: Southern Ocean paleoceanography. In Gersonde, R., Hodell, D.A., Blum, P., et al., Proc. ODP, Init. Repts., 177: College Station, TX (Ocean Drilling Program), 1–67. doi:10.2973/odp.proc.ir.177.101.1999

Shipboard Scientific Party, 2003. Leg 202 summary. In Mix, A.C., Tiedemann, R., Blum, P., et al., Proc. ODP, Init. Repts., 202: College Station TX (Ocean Drilling Program), 1–145. doi:10.2973/odp.proc.ir.202.101.2003

Thierstein, H.R., Geitzenauer, K., Molfino, B., and Shackleton, N.J., 1977. Global synchroneity of late Quaternary coccolith datum levels: validation by oxygen isotopes. Geology, 5:400–404.

Weaver, P.P.E., and Thomson, J., 1993. Calculating erosion by deep-sea turbidity currents during initiation and flow. Nature (London, U. K.), 364(6433):136–138. doi:10.1038/364136a0

Wei, W., 1993. Calibration of upper Pliocene–lower Pleistocene nannofossil events with oxygen isotope stratigraphy. Paleoceanography, 8:85–99.