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3. Phenotypic evolution studied by layered stochastic differential equations

4. Haptophyta

7. Late Neogene nannofossil assemblages as tracers of ocean circulation and paleoproductivity over the NW Australian shelf

8. Consistently dated Atlantic sediment cores over the last 40 thousand years

11. Late Neogene nannofossil assemblages as tracers of ocean circulation and paleoproductivity over the NW Australian shelf

16. Evolutionary Rates in the Haptophyta : Exploring Molecular and Phenotypic Diversity

18. Abrupt conclusion of the late Miocene-early Pliocene biogenic bloom at 4.6-4.4 Ma

23. Haptophyta

26. Late Miocene Onset of Tasman Leakage and Southern Hemisphere Supergyre Ushers in Near‐Modern Circulation

27. Biomarker Pigment Divinyl Chlorophyll a as a Tracer of Water Masses?

28. Late Miocene Onset of Tasman Leakage and Southern Hemisphere Supergyre Ushers in Near-Modern Circulation

29. The Miocene : the Future of the Past

33. A 15-million-year-long record of phenotypic evolution in the heavily calcified coccolithophore Helicosphaera and its biogeochemical implications

34. Plio-Pleistocene Indonesian Throughflow Variability Drove Eastern Indian Ocean Sea Surface Temperatures

35. The late Miocene to early Pliocene “Humid Interval” on the NW Australian shelf : disentangling climate forcing from regional basin evolution

36. Shifts in Phytoplankton Composition and Stepwise Climate Change During the Middle Miocene

39. Retracted: Plio‐Pleistocene Indonesian Throughflow Variability Drove Eastern Indian Ocean Sea Surface Temperatures

44. Résultats préliminaires sur la sédimentation pélagique de l'Atlantique tropical au Crétacé et au Tertiaire (plateau de Demerara, Leg ODP 207)

47. Timing and Pacing of Indonesian Throughflow Restriction and Its Connection to Late Pliocene Climate Shifts

48. Consistently dated Atlantic sediment cores over the last 40 thousand years

49. The Oligocene nannolith Sphenolithus evolutionary lineage: morphometrical insights from the palaeo-equatorial Pacific Ocean

50. Phosphorus limitation and heat stress decrease calcification in Emiliania huxleyi

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