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doi:10.2204/iodp.proc.318.103.2011 ReferencesBrinkhuis, H., Sengers, S., Sluijs, A., Warnaar, J., and Williams, G.L., 2003. Latest Cretaceous–earliest Oligocene and Quaternary dinoflagellate cysts, ODP Site 1172, East Tasman Plateau. In Exon, N.F., Kennett, J.P., and Malone, M.J., Proc. ODP, Sci. Res., 189: College Station, TX (Ocean Drilling Program), 1–36. doi:10.2973/odp.proc.sr.189.106.2003 Cody, R.D., Levy, R.H., Harwood, D.M., and Sadler, P.M., 2008. Thinking outside the zone: high-resolution quantitative diatom biochronology for the Antarctic Neogene. Palaeogeogr., Palaeoclimatol., Palaeoecol., 260(1–2):92–121. doi:10.1016/j.palaeo.2007.08.020 De Santis, L., Brancolini, G., and Donda, F., 2003. Seismo-stratigraphic analysis of the Wilkes Land continental margin (East Antarctica): influence of glacially driven processes on the Cenozoic deposition. Deep-Sea Res., Part II, 50(8–9):1563–1594. doi:10.1016/S0967-0645(03)00079-1 Donda, F., Brancolini, G., De Santis, L., and Trincardi, F., 2003. Seismic facies and sedimentary processes on the continental rise off Wilkes Land (East Antarctica): evidence of bottom current activity. Deep-Sea Res., Part II, 50(8–9):1509–1527. doi:10.1016/S0967-0645(03)00075-4 Escutia, C., Donda, F., Lobo, F. J., and Tanahashi, M., 2007. Extensive debris flow deposits on the eastern Wilkes Land margin: a key to changing glacial regimes. In Cooper, A., Raymond, C., and the 10th ISAES Editorial Team (Eds.), Antarctica: A Keystone in a Changing World—Online Proceedings for the 10th International Symposium on Antarctic Earth Sciences. Open-File Rep.—U. S. Geol. Surv., 2007-1047:026. doi:10.3133/of2007-1047.srp026 Escutia, C., Eittreim, S.L., and Cooper, A.K., 1997. Cenozoic sedimentation on the Wilkes Land continental rise, Antarctica. In Ricci, C.A. (Ed.), The Antarctic Region: Geological Evolution and Processes. Proc. Int. Symp. Antarct. Earth Sci., 7:791–795. Escutia, C., Eittreim, S.L., Cooper, A.K., and Nelson, C.H., 2000. Morphology and acoustic character of the Antarctic Wilkes Land turbidite systems: ice-sheet-sourced versus river-sourced fans. J. Sediment. Res., 70(1):84–93. doi:10.1306/2DC40900-0E47-11D7-8643000102C1865D Escutia, C., Nelson, C.H., Acton, G.D., Eittreim, S.L., Cooper, A.K., Warnke, D.A., and Jaramillo, J.M., 2002. Current controlled deposition on the Wilkes Land continental rise, Antarctica. In Stow, D.A.V., Pudsey, C.J., Howe, J.A., Faugeres, J.-C., and Viana, A.R. (Eds.), Deep-Water Contourite Systems: Modern Drifts and Ancient Series, Seismic and Sedimentary Characteristics. Mem.—Geol. Soc. London, 22(1):373–384. doi:10.1144/GSL.MEM.2002.022.01.26 Hayes, D.E., Frakes, L.A., et al., 1975. Init. Repts. DSDP, 28: Washington, DC (U.S. Govt. Printing Office). doi:10.2973/dsdp.proc.28.1975 Lowe, D.R., 1982. Sediment gravity flows, II. Depositional models with special reference to the deposits of high-density turbidity currents. J. Sediment. Petrol., 52(1):279–297. http://jsedres.sepmonline.org/cgi/content/abstract/52/1/279 Sluijs, A., Brinkhuis, H., Stickley, C.E., Warnaar, J., Williams, G.L., and Fuller, M., 2003. Dinoflagellate cysts from the Eocene–Oligocene transition in the Southern Ocean: results from ODP Leg 189. In Exon, N.F., Kennett, J.P., and Malone, M.J. (Eds.), Proc. ODP, Sci. Results, 189: College Station, TX (Ocean Drilling Program), 1–42. doi:10.2973/odp.proc.sr.189.104.2003 |