3 James N P, Bone Y, Collins L B, et al. Surficial sediments of the Great Australian Bight: Facies dynamics and oceanography on a vast cool-water carbonate shelf. J Sed Res, 2001, 71: 549-567??
[2]
4 Betzler C, Saxena S, Swart P K, et al. Cool-water carbonate sedimentology and eustasy, Pleistocene upper slope environments, Great Australian Bight (Site 1127, ODP LEG 182). Sed Geol, 2005, 175: 169-188
[3]
5 Freiwald A. Geobiology of Lophelia pertusa (Scleractinia) reefs in the North Atlantic. Habilitation Thesis, University Bremen, 1998. 1-116
[4]
6 Freiwald A. Shipboard Party (2002) Cruise report RV Poseidon Cruise 292. Bremen: Reykjavik-Galway, 2002. 1-86??
[5]
7 Paull C K, Neumann A C, am Ende B A, et al. Lithoherms on the Florida-Hatteras slope. Mar Geol, 2000, 166: 83-101??
[6]
8 Huvenne V A I, De Mol B, Henriet J P. A 3D seismic study of the morphology and spatial distribution of buried coral banks in the Porcupine Basin, SW of Ireland. Mar Geol, 2003, 198: 5-25??
[7]
9 Huvenne V A I, Beyer A, de Haas H, et al. The seabed appearance of different coral bank provinces in the Porcupine Seabight, NE Atlantic: Results from sidescan sonar and ROV seabed mapping. In: Freiwald A, Roberts J M, eds. Cold-water Corals and Ecosystems. Berlin-Heidelberg: Springer-Verlag, 2005. 535-569
[8]
10 Ferdelman T G, Kano A, Williams T. the Expedition 307 Scientists. Modern Carbonate Mounds: Porcupine Drilling. Proc IODP, 2006, 307: 1-65
[9]
11 Wright J D. Global climate change in marine stable isotope records. Quaternary geochronology: Methods and applications. AGU Ref Shelf, 2000, 4: 432-438
[10]
12 Llave E, Hernandez-Molina F J, Stow D A V, et al. Reconstructions of the Mediterranean Outflow Water during the quaternary based on the study of changes in buried mounded drift stacking pattern in the Gulf of Cadiz. Mar Geophy Res, 2007, 28: 379-394??
[11]
13 Kano A, Ferdelman T G, Williams T, et al. Age constraints on the origin and growth history of a deep-water coral mound in the northeast Atlantic drilled during IODP Expedition 307. Geology, 2007, 35: 1051-1054??
[12]
14 Louwye S, Foubert A, Mertens K, et al. Integrated stratigraphy and palaeoecology of the Lower and Middle Miocene of the Porcupine Basin. Geol Mag, 2007, 145: 1-24
[13]
15 Foubert A, Henriet J P. Nature and significance of the recent carbonate mound record: The Mound Challenger Code. Heidelberg: Springer-Verlag, 2009??
[14]
16 Webster G, Blazejak A, Cragg B A, et al. Subsurface microbiology and biogeochemistry of a deep, cold-water carbonate mound from the Porcupine Seabight (IODP Expedition 307). Environ Microbio, 2009, 11: 239-257
[15]
17 Sakai S, Kano A, Abe K, et al. Origin, glacial-interglacial responses and its controlling factors of a cold-water coral mound in NE Atlantic. Palaeoceanography, 2009, 24: PA2213
[16]
18 Li X H, Takashima C, Kano A, et al. Pleistocene geochemical stratigraphy of the borehole 1317E (IODP Exp. 307) in Porcupine Seabight, SW off Ireland: Applications to palaeoceanography and palaeoclimate of the coral mound development. J Quat Sci, 2011, 26: 178-189
[17]
19 Pirlet H, Wehrmann L M, Brunner B, et al. Diagenetic formation of gypsum and dolomite in a cold-water coral mound in the Porcupine Seabight, off Ireland. Sedimentology, 2010, 57: 786-805??
[18]
20 Titschack J, Thierens M, Dorschel B, et al. Carbonate budget of a cold-water coral mound (Challenger Mound, IODP Exp. 307). Mar Geol, 2009, 259: 36-46
[19]
21 Kano A, Shen C C. Revised age model for the upper mound section of Challenger Mound in the Irish offshore. 18th Int Sediment Cong, Mendoza, Argentina, Abstract, 2010
[20]
22 Huvenne V A I, Van Rooij D, De Mol B, et al. Sediment dynamics and palaeo-environmental context at key stages in the Challenger cold-water coral mound formation: clues from sediment deposits at the mound base. Deep-Sea Res I, 2009, 56: 2263-2280??
[21]
23 Thierens M, Titschack J, Dorschel B, et al. The 2.6 Ma depositional sequence from the Challenger cold-water coral carbonate mound (IODP Exp. 307): Sediment contributors and hydrodynamic palaeo-environments. Mar Geol, 2010, 271: 260-277
28 Baldauf J G, Barron J A. Evolution of biosiliceous sedimentation patterns—— Eocene through Quaternary: Paleoceanographic response to Polar cooling. In: Bleid U, and Thiede J, eds. Geological History of the Polar Oceans: Arctic versus Antarctic. Dordrecht: Kluwer Academic Publishers, 1990. 575-607
[27]
29 Charles C D, Froclich P N, Zibello, M A, et al. Biogenic opal in southern ocean sediments over the last 450000 years: Implications for surface water chemistry and circulation. Paleoceanography, 1991, 6: 697-728??
[28]
30 LaMontagne R W, Murray R W, Wei K Y, et al. Decoupling of carbonate preservation, carbonate concentration, and biogenic accumulation: A 400-kyr record from the central equatorial Pacific Ocean. Paleoceanography, 1996, 11: 553-562