1 Beaufort L, de Garidel-Thoron T, Mix A C, et al. ENSO-like forcing on oceanic primary production during the late Pleistocene. Science,2001, 293: 2440-2444??
[2]
2 Beaufort L, de Garidel-Thoron T, Linsley B, et al. Biomass burning and oceanic primary production estimates in the Sulu Sea area overthe last 380 ka and the East Asian monsoon dynamics. Mar Geol, 2003, 201: 53-65??
[3]
3 Liu C L, Wang P X, Tian J, et al. Coccolith evidence for Quaternary nutricline variations in the Southern South China Sea. Mar Micropaleontol,2008, 69: 42-51??
8 Giraudeau J, Pujos A. Fonction de transfer basée surles nannofossiles calcaires du Pleistocéne des Caribes. Oceanol Acta, 1990, 13:453-469
[6]
9 Wei W. Calibration of upper Pliocene-lower Pleistocene nannofossil events with oxygen isotope stratigraphy. Paleoceanography, 1993, 8:85-99??
[7]
10 Raffi I, Backman J, Rio D, et al. Plio-Pleistocene nannofossil biostratigraphy and calibration to oxygen isotope stratigraphies from DeepSea Drilling Project Site 607 and Ocean Drilling Program Site 677. Paleoceanography, 1993, 8: 387-408??
[8]
14 Bollmann J, Baumann K H, Thierstein H R. Global dominance of Gephyrocapsa coccoliths in the late Pleistocene: Selective dissolution,evolution, or global environmental change? Paleoceanography, 1998, 13: 517-529
[9]
15 Wei K Y, Lee T Q. The Shipboard scientific party of IMAGES Ⅲ/MD106-IPHIS Cruise(Leg Ⅱ). Nannofossil biochronology of TephraLayers in Core MD972143, Benham Rise, Western Philippine Sea. TAO, 1998, 9: 156-163
[10]
25 Flores J-A, Marino M. Pleistocene calcareous nannofossil stratigraphy for ODP Leg 177 (Atlantic sector of the Southern Ocean). MarMicropaleontol, 2002, 45: 191-224
27 赵京涛, 李铁刚, 常凤鸣, 等. 近190 ka BP 以来西太平洋暖池北缘上层海水结构和古生产力演化特征及其控制因素. 海洋与湖沼,2008, 39: 305-311
[13]
28 Lisiecki L E. A Pliocene-Pleistocene stack of 57 globally distributed benthic δ18O records. Paleocenaography, 2005, 20: 1-17
[14]
29 Stuiver M, Reimer P J. Extended C-14 Data-Base and Revised Calib 3.0 C-14 Age Calibration Program. Radiocarbon, 1993, 35: 215-230
[15]
33 Raffi I. Revision of the early-middle Pleistocene calcareous nannofossil biochronology (1.75-0.85 Ma). Mar Micropaleontol, 2002, 45: 25-55
[16]
36 Rio D, Raffi I, Villa G. Pliocene-Pleistocene calcareous nannofossil distribution patterns in the Western Mediterranean. In: Kastens K A,Mascle J, eds. Proceeding of the Ocean Drilling Program, Scientific Results, Volume 107. College Station, TX: Ocean Drilling Program,1990. 513-533
[17]
37 Ericson D B, Ewing M, Wollin G. Plio-Pleistocene boundary in the deep-sea sediments. Science, 1963, 139: 727-737??
[18]
38 Channell J E T, Rio D, Sprovieri R, et al. Biomagnetostratigraphic correlations from Leg 107 in the Tyrrhenian Sea. In: Kastens K A,Mascle J, eds. Proceedings of the Ocean Drilling Program, Scientific Results, volume 107. College Station, TX: Ocean Drilling Program,1990. 669-682
[19]
40 Fornaciari E. Calcareous nannofossils biostratigraphy of the California margin. In: Lyle M, Koizumi I, Richter C, et al, eds. Proceedingsof the Ocean Drilling Program, Scientific Results, volume 167. College Station, TX: Ocean Drilling Program, 2000. 3-40
[20]
41 Wise S W. Calcareous nannofossils from cores recovered during Leg 18, Deep Sea Drilling Project: Biostratigraphy and observation of diagenesis.In: Kulm L D, von Huene R, eds. Initial Reports of DSDP, volume 18. Washington: US Govt Printing Office, 1973. 569-615
[21]
43 Hou Y M, Potts R, Yuan B Y, et al. Mid-Pleistocene Acheulean-like stone technology of the Bose Basin, South China. Science, 2000, 287:1622-1625??
[22]
5 Thierstein H R, Geitzenauer K, Molfino B, et al. Global synchroneity of late Quaternary coccolith datum levels: Validation by oxygenisotopes. Geology, 1977, 5: 400-404??
[23]
6 Gartner S. Calcareous nannofossil biostartigraphy and revised zonation of the Pleistocene. Mar Micropaleontol, 1977, 2: 1-25??
[24]
7 Matsuoka H, Okada H. Time-progressive morphometric changes of the genus Gephyrocapsa in the Quaternary sequence of the tropicalIndian Ocean, Site 709. In: Duncan R A, Backman J, Peterson L C, et al, eds. Proceeding of the Ocean Drilling Program, Scientific Results,Volume 115. College Station, TX: Ocean Drilling Program, 1990. 255-270
[25]
11 Weaver P P E, Thomson J. Calculating erosion by deep-sea turbidity currents during initiation and flow. Nature, 1993, 364: 136-138??
[26]
12 Wells P, Okada H. Response of nannoplankton to major changes in sea-surface temperature and movements of hydrological fronts overSite DSDP 594 (south Chatham Rise, southeastern New Zealand), during the last 130 ka. Mar Micropaleontol, 1997, 32: 341-363
[27]
13 Hine N, Weaver P P E. Quaternary. In: Bown P R, Ed. Calcareous Nannofossil Biostratigraphy. London: Chapman and Hall, 1998.266-283
[28]
16 Zhou L P, Shackleton N J. Misleading positions of geomagnetic reversal boundaries in Eurasian loess and implications for correlationbetween continental and marine sedimentary sequences. Earth Planet Sci Lett, 1999, 168: 117-130??
[29]
17 Glass B P, Pizzuto J E. Geographic-variation in Australasian microtektite concentrations- implications concerning the location and size ofthe source crater. J Geophys Res, 1994, 99: 19075-19081??
19 Lee Y M, Wei K Y. Australasian microtektite in the South China Sea and the West Phillippine Sea: Implications for age, size, and locationof the impact crater. Meteorit Planet Sci, 2000, 35: 1151-1155??
[32]
20 Glass B P, Wu J. Coesite and shocked quartz discovered in the Australasian and North America microtektite layers. Geology, 1993, 21: 435-438??
[33]
21 Tauxe L, Herbert T, Shackleton N J, et al. Astronomical calibration of the Matuyama-Brunhes boundary: Consequences for magneticremanence acquisition in marine carbonates and the Asian loess sequences. Earth Planet Sci Lett, 1996, 140: 133-146??
[34]
22 Groetsch J, Wu G, Berger W H. Carbonate saturation cycles in the western equatorial Pacific. In: Einsele G, Ricken W, Seilacher A, eds.Cycles and Events in Stratigraphy. Heidelberg: Springer, 1991. 110-125
[35]
23 Crow E L, Davis F A, Maxfield M W. Statistics Manual. New York: Dover Publications Inc, 1960. 279
[36]
24 Dennison J M, Hay W W. Estimating the needed sampling area for subaquatic ecologic studies. Paleontology, 1967, 41: 706-708
[37]
30 Young J, Westbroek P. Genotypic variation in the coccolithophorid species Emiliania huxleyi. Mar Micropaleontol, 1991, 18: 5-23??
[38]
31 Flores J-A, Gersonde R, Sierro F J, et al. Southern Ocean Pleistocene calcareous nannofossil events: Calibration with isotope and geomagneticstratigraphies. Mar Micropaleontol, 2000, 40: 377-402??
[39]
32 Flores J A, Gersonde R, Sierro F J. Pleistocene fluctuations in the Agulhas Current Retroflection based on the calcareous plankton record.Mar Micropaleontol, 1999, 37: 1-22??
[40]
34 Lourens L J, Hilgen F J, Raffi I, et al. Early Pleistocene chronology of the Vrica Section (Calabria, Italy). Paleoceanography, 1996, 11: 797-812??
[41]
35 Lourens L J, Hilgen F J, Raffi I. Base of Large Gephyrocapsae and astronomical calibration of early Pleistocene sapropels in ODP967 and969: Solving the chronology of the Vrica section. In: Robertson A H F, Emeis K C, Richter C, et al, eds. Proceeding of the Ocean DrillingProgram, Scientific Results, volume 160. College Station, TX: Ocean Drilling Program, 1998. 191-197
[42]
39 Chapman M R, Chepstow-Lusty A J. Late Pliocene climatic change and the global extinction of the Discoasters: An independent assessmentusing oxygen isotope records. Palaeogeogr Palaeoclimatol Palaeoecol, 1997, 134: 109-125??
[43]
42 Burns C A. Timing between a large impact and a geomagnetic reversal and the depth of NRM acquisition in deep-sea sediments. In: Lowes FJ, Collinson D W, Parry J H, et al, eds. Geomagnetism and Paleomagnetism. Dordrecht: Kluwer Academic Publishers, 1989. 253-261
[44]
44 Kunz J, Bollinger K, Jessberger E K, et al. Ages of Australasian Tektites. Abstracts of the Lunar and Planetary Science Conference XXVI.Houston, TX: Lunar and Planetary Institute, 1995. 809-810
[45]
45 Schneider D A, Kent D V, Mello G A. A detailed chronology of the Australasian impact event, the Brunhes-Matuyama geomagnetic polarityreversal, and global climate change. Earth Planet Sci Lett, 1992, 111: 395-405??