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doi:10.2204/iodp.proc.346.102.2015

References

Acton, G.D., Borton, C.J., and the Leg 178 Shipboard Scientific Party, 2001. Palmer Deep composite depth scales for Leg 178 Sites 1098 and 1099. In Barker, P.F., Camerlenghi, A., Acton, G.D., and Ramsay, A.T.S. (Eds.), Proc. ODP, Sci. Results, 178: College Station, TX (Ocean Drilling Program), 1–35. doi:10.2973/​odp.proc.sr.178.202.2001

Adkins, J.F., McIntyre, K., and Schrag, D.P., 2002. The salinity, temperature, and δ18O of the glacial deep ocean. Science, 298(5599):1769–1773. doi:10.1126/​science.1076252

Alexandrovich, J.M., 1992. Radiolarians from Sites 794, 795, 796, and 797 (Japan Sea). In Pisciotto, K.A., Ingle, J.C., Jr., von Breymann, M.T., Barron, J., et al., Proc. ODP, Sci. Results, 127/128 (Pt. 1): College Station, TX (Ocean Drilling Program), 291–307. doi:10.2973/​odp.proc.sr.127128-1.134.1992

ASTM International, 1990. Standard method for laboratory determination of water (moisture) content of soil and rock (Standard D2216–90). In Annual Book of ASTM Standards for Soil and Rock (Vol. 04.08): Philadelphia (Am. Soc. Testing Mater.). [revision of D2216-63, D2216-80]

Balsam, W.L., and Damuth, J.E., 2000. Further investigations of shipboard vs. shore-based spectral data: implications for interpreting Leg 164 sediment composition. In Paull, C.K., Matsumoto, R., Wallace, P., and Dillon, W.P. (Eds.), Proc. ODP, Sci. Results, 164: College Station, TX (Ocean Drilling Program), 313–324. doi:10.2973/​odp.proc.sr.164.222.2000

Balsam, W.L., Damuth, J.E., and Schneider, R.R., 1997. Comparison of shipboard vs. shore-based spectral data from Amazon Fan cores: implications for interpreting sediment composition. In Flood, R.D., Piper, D.J.W., Klaus, A., and Peterson, L.C. (Eds.), Proc. ODP, Sci. Results, 155: College Station, TX (Ocean Drilling Program), 193–215. doi:10.2973/​odp.proc.sr.155.210.1997

Balsam, W.L., Deaton, B.C., and Damuth, J.E., 1998. The effects of water content on diffuse reflectance spectrophotometry studies of deep-sea sediment cores. Mar. Geol., 149(1–4):177–189. doi:10.1016/​S0025-3227(98)00033-4

Barron, J.A., and Gladenkov, A.Y., 1995. Early Miocene to Pleistocene diatom stratigraphy of Leg 145. In Rea, D.K., Basov, I.A., Scholl, D.W., and Allan, J.F. (Eds.), Proc. ODP, Sci. Results, 145: College Station, TX (Ocean Drilling Program), 3–19. doi:10.2973/​odp.proc.sr.145.101.1995

Berggren, W.A, Hilgen, F.J., Langereis, C.G., Kent, D.V., Obradovich, J.D., Raffi, I., Raymo, M.E., and Shackelton, N.J., 1995a. Late Neogene chronology: new perspectives in high-resolution stratigraphy. Geol. Soc. Am. Bull., 107(11):1272–1287. doi:10.1130/​0016-7606(1995)107<1272:LNCNPI>2.3.CO;2

Berggren, W.A., Kent, D.V., Swisher, C.C., III, and Aubry, M.-P., 1995b. A revised Cenozoic geochronology and chronostratigraphy. In Berggren, W.A., Kent, D.V., Aubry, M.-P., and Hardenbol, J. (Eds.), Geochronology, Time Scales and Global Stratigraphic Correlation. Spec. Publ.—SEPM (Soc. Sediment. Geol.), 54:129–212. doi:10.2110/​pec.95.04.0129

Blum, P., 1997. Physical properties handbook: a guide to the shipboard measurement of physical properties of deep-sea cores. ODP Tech. Note, 26. doi:10.2973/​odp.tn.26.1997

Boersma, A., 1984. A Handbook of Common Tertiary Uvigerina: Stony Point, NY (Microclimates Press).

Bolli, H.M., and Saunders, J.B., 1985. Oligocene to Holocene low latitude planktic foraminifera. In Bolli, H.M., Saunders, J.B., and Perch-Nielsen, K. (Eds.), Plankton Stratigraphy (Vol. 1): Planktic Foraminifera, Calcareous Nannofossils and Calpionellids: Cambridge (Cambridge Univ. Press), 155–262.

Bown, P.R. (Ed.), 1998. Calcareous Nannofossil Biostratigraphy: Dordrecht, The Netherlands (Kluwer Academic Publ.).

Briucaud, A., Morel, A., and Prieur, L., 1981. Absorption by dissolved organic matter of the sea (yellow substance) in the UV and visible domains. Limnol. Oceanogr., 26(1):43–53. doi:10.4319/​lo.1981.26.1.0043

Brunner, C.A., 1992. Paleoenvironment and biostratigraphy of foraminifers at Sites 794, 795, 796, and 797 in the Japan Sea. In Pisciotto, K.A., Ingle, J.C., Jr., von Breymann, M.T., Barron, J., et al., Proc. ODP, Sci. Results, 127/128 (Pt. 1): College Station, TX (Ocean Drilling Program), 187–224. doi:10.2973/​odp.proc.sr.127128-1.124.1992

Bullard, E.C., 1954. The flow of heat through the floor of the Atlantic Ocean. Proc. R. Soc. London, Ser. A, 222(1150):408–429. doi:10.1098/​rspa.1954.0085

Cande, S.C., and Kent, D.V., 1992. A new geomagnetic polarity time scale for the Late Cretaceous and Cenozoic. J. Geophys. Res.: Solid Earth, 97(B10):13917–13951. doi:10.1029/​92JB01202

Chaisson, W.P., and Leckie, R.M., 1993. High-resolution Neogene planktonic foraminifer biostratigraphy of Site 806, Ontong Java Plateau (western equatorial Pacific). In Berger, W.H., Kroenke, L.W., Mayer, L.A., et al., Proc. ODP, Sci. Results, 130: College Station, TX (Ocean Drilling Program), 137–178. doi:10.2973/​odp.proc.sr.130.010.1993

Chaisson, W.P., and Pearson, P.N., 1997. Planktonic foraminifer biostratigraphy at Site 925: middle Miocene–Pleistocene. In Shackleton, N.J., Curry, W.B., Richter, C., and Bralower, T.J. (Eds.), Proc. ODP, Sci. Results, 154: College Station, TX (Ocean Drilling Program), 3–31. doi:10.2973/​odp.proc.sr.154.104.1997

Chapronière, G.C.H., Styzen, M.J., Sager, W.W., Nishi, H., Quinterno, P.J., and Abrahamsen, N., 1994. Late Neogene biostratigraphic and magnetostratigraphic synthesis, Leg 135. In Hawkins, J., Parson, L., Allan, J., et al., Proc. ODP, Sci. Results, 135: College Station, TX (Ocean Drilling Program), 857–877. doi:10.2973/​odp.proc.sr.135.116.1994

Cline, J.D., 1969. Sectrophotometric determination of hydrogen sulfide in natural waters. Limnol. Oceanogr., 14(3):454–458. doi:10.4319/​lo.1969.14.3.0454

D’Hondt, S.L., Jørgensen, B.B., Miller, D.J., et al., 2003. Proc. ODP, Init. Repts., 201: College Station, TX (Ocean Drilling Program). doi:10.2973/​odp.proc.ir.201.2003

Dickens, G.R., Koelling, M., Smith, D.C., Schneiders, L., and the IODP Expedition 302 Scientists, 2007. Rhizon sampling of pore waters on scientific drilling expeditions: an example from the IODP Expedition 302, Arctic Coring Expedition (ACEX). Sci. Drill., 4:22–25. doi:10.2204/​iodp.sd.4.08.2007

Droser, M.L., and Bottjer, D.J., 1986. A semiquantitative field classification of ichnofabric. J. Sediment. Res., 56(4):558–559. doi:10.1306/​212F89C2-2B24-11D7-8648000102C1865D

Dunlea, A.G., Murray, R.W., Harris, R.N., Vasiliev, M.A., Evans, H., Spivack, A.J., and D’Hondt, S., 2013. Assessment and use of NGR instrumentation on the JOIDES Resolution to quantify U, Th, and K concentrations in marine sediment. Sci. Drill., 15:57–63. doi:10.2204/​iodp.sd.15.05.2013

Ellis, D.V., and Singer, J.M., 2007. Well Logging for Earth Scientists (2nd ed.): New York (Elsevier).

Evans, H.B., 1965. GRAPE—a device for continuous determination of material density and porosity. Trans. SPWLA Annu. Logging Symp.: 6(2):B1–B25. http://www.spwla.org/​cgi-bin/​shop.pl?choice=display;item_id=82

Expedition 303 Scientists, 2006. Site U1302–U1308 methods. In Channell, J.E.T., Kanamatsu, T., Sato, T., Stein, R., Alvarez Zarikian, C.A., Malone, M.J., and the Expedition 303/306 Scientists, Proc. IODP, 303/306: College Station, TX (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/​iodp.proc.303306.102.2006

Expedition 318 Scientists, 2011. Methods. In Escutia, C., Brinkhuis, H., Klaus, A., and the Expedition 318 Scientists, Proc. IODP, 318: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/​iodp.proc.318.102.2011

Expedition 320/321 Scientists, 2010a. Methods. In Pälike, H., Lyle, M., Nishi, H., Raffi, I., Gamage, K., Klaus, A., and the Expedition 320/321 Scientists, Proc. IODP, 320/321: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/​iodp.proc.320321.102.2010

Expedition 320/321 Scientists, 2010b. Site U1331. In Pälike, H., Lyle, M., Nishi, H., Raffi, I., Gamage, K., Klaus, A., and the Expedition 320/321 Scientists, Proc. IODP, 320/321: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/​iodp.proc.320321.103.2010

Expedition 339 Scientists, 2013. Site U1385. In Stow, D.A.V., Hernández-Molina, F.J., Alvarez Zarikian, C.A., and the Expedition 339 Scientists, Proc. IODP, 339: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/​iodp.proc.339.103.2013

Expedition 342 Scientists, 2012. Paleogene Newfoundland sediment drifts. IODP Prel. Rept., 342. doi:10.2204/​iodp.pr.342.2012

Fatela, F., and Taborda, R., 2002. Confidence limits of species proportions in microfossil assemblages. Mar. Micropaleontol., 45(2):169–174. doi:10.1016/​S0377-8398(02)00021-X

Fisher, R.V., and Schmincke, H.-U., 1984. Pyroclastic Rocks: Berlin (Springer-Verlag).

Gieskes, J.M., 1975. Chemistry of interstitial waters of marine sediments. Annu. Rev. Earth Planet. Sci., 3:433–453. doi:10.1146/​annurev.ea.03.050175.002245

Gieskes, J.M., Gamo, T., and Brumsack, H., 1991. Chemical methods for interstitial water analysis aboard JOIDES Resolution. ODP Tech. Note, 15. doi:10.2973/​odp.tn.15.1991

Giosan, L., Flood, R.D., and Aller, R.C., 2002. Paleoceanographic significance of sediment color on western North Atlantic drifts: I. Origin of color. Mar. Geol., 189(1–2):25–41. doi:10.1016/​S0025-3227(02)00321-3

Gladenkov, A.Y., 2003. Diatom biostratigraphy of the Neogene Milky River Formation, Alaska Peninsula, southwestern Alaska. Proc. Calif. Acad. Sci., 54(3):27–64. http://researcharchive.calacademy.org/​research/​scipubs/​pdfs/​v54/​proccas_v54_n03.pdf

Goldberg, D., 1997. The role of downhole measurements in marine geology and geophysics. Rev. Geophys., 35(3):315–342. doi:10.1029/​97RG00221

Gradstein, F.M., Ogg, J.G., Schmitz, M.D., and Ogg, G.M. (Eds.)., 2012. The Geological Time Scale 2012: Amsterdam (Elsevier).

Hagelberg, T.K., Pisias, N.G., Shackleton, N.J., Mix, A.C., and Harris, S., 1995. Refinement of a high-resolution, continuous sedimentary section for studying equatorial Pacific Ocean paleoceanography, Leg 138. In Pisias, N.G., Mayer, L.A., Janecek, T.R., Palmer-Julson, A., and van Andel, T.H. (Eds.), Proc. ODP, Sci Results, 138: College Station, TX (Ocean Drilling Program), 31–46. doi:10.2973/​odp.proc.sr.138.103.1995

Hanagata, S., 2003. Miocene–Pliocene foraminifera from the Niigata oil-fields region, northeastern Japan. Micropalaeontology, 49(4):293–340. doi:10.2113/​49.4.293

Hanagata, S., and Hiramatsu, C., 2005. Miocene–Pliocene foraminifera from the subsurface sections in the Yufutsu oil and gas field, Hokkaido. Paleontol. Res., 9(4):273–298. doi:10.2517/​prpsj.9.273

Hanagata, S., Motoyama, I., and Miwa, M., 2001. Geologic ages of the last occurrence of Spirosigmoilinella compressa and first occurrence of Miliammina echigoensis (benthic foraminifera), and their paleoceanographic implications: response to the latest Mioceneearliest Pliocene sea level changes. J. Geol. Soc. Jpn., 107(2):101–116. (in Japanese with English abstract) doi:10.5575/​geosoc.107.101

Harms, J.C., and Choquette, P.W., 1965. Geologic evaluation of a gamma-ray porosity device. Trans. SPWLA Annu. Logging Symp.: 6(2):C1–C37.

Hayward, B.W., 2002. Late Pliocene to middle Pleistocene extinctions of deep-sea benthic foraminifera (“Stilostomella extinction”) in the southwest Pacific. J. Foraminiferal Res., 32(3):274–307. doi:10.2113/​32.3.274

Hoiles, P.W., Gallagher, S.J., Kitamura, A., and Southwood, J.M., 2012. The evolution of the Tsushima Current during the early Pleistocene in the Sea of Japan: an example from marine isotope stage (MIS) 47. Global Planet. Change, 92–93:162–178. doi:10.1016/​j.gloplacha.2012.05.015

Holbourn, A., Henderson, A.S., and MacLeod, N., 2013. Atlas of Benthic Foraminifera: Chichester (John Wiley & Sons, Ltd.). doi:10.1002/​9781118452493

Horai, K., and Von Herzen, R.P., 1985. Measurement of heat flow on Leg 86 of the Deep Sea Drilling Project. In Heath, G.R., Burckle, L.H., et al., Init. Repts. DSDP, 86: Washington, DC (U.S. Govt. Printing Office), 759–777. doi:10.2973/​dsdp.proc.86.135.1985

Ingle, J.C., Jr., Suyehiro, K., von Breymann, M.T., et al., 1990. Proc. ODP, Init. Repts., 128: College Station, TX (Ocean Drilling Program). doi:10.2973/​odp.proc.ir.128.1990

Itaki, T., Komatsu, N., and Motoyama, I., 2007. Orbital- and millennial-scale changes of radiolarian assemblages during the last 220 kyrs in the Japan Sea. Palaeogeogr., Palaeoclimatol., Palaeoecol., 247(1–2):115–130. doi:10.1016/​j.palaeo.2006.11.025

Iturrino, G., Liu, T., Goldberg, D., Anderson, L., Evans, H., Fehr, A., Guerin, G., Inwood, J., Lofi, J., Malinverno, A., Morgan, S., Mrozewski, S., Slagle, A., and Williams, T., 2013. Performance of the wireline heave compensation system onboard D/V JOIDES Resolution. Sci. Drill., 15:46–50. doi:10.2204/​iodp.sd.15.08.2013

Jones, R.W., 1994. The Challenger Foraminifera: New York (Oxford Univ. Press).

Kamikuri, S., 2010. New late Neogene radiolarian species from the middle to high latitudes of the North Pacific. Rev. Micropaleontol., 53(2):85–106. doi:10.1016/​j.revmic.2008.06.005

Kamikuri, S., Motoyama, I., Nishi, H., and Iwai, M., 2009. Neogene radiolarian biostratigraphy and faunal evolution rates in the eastern equatorial Pacific ODP Sites 845 and 1241. Acta Palaeontol. Pol., 54(4):713–742. doi:10.4202/​app.2008.0076

Kamikuri, S., Nishi, H., and Motoyama, I., 2007. Effects of late Neogene climatic cooling on North Pacific radiolarian assemblages and oceanographic conditions. Palaeogeogr., Palaeoclimatol., Palaeoecol., 249(3–4):370–392. doi:10.1016/​j.palaeo.2007.02.008

Kamikuri, S., Nishi, H., Motoyama, I., and Saito, S., 2004. Middle Miocene to Pleistocene radiolarian biostratigraphy in the Northwest Pacific Ocean, ODP Leg 186. Isl. Arc, 13(1):191–226. doi:10.1111/​j.1440-1738.2003.00421.x

Kaminski, M.A., and Gradstein, F.M., 2005. Atlas of Paleogene cosmopolitan deep-water agglutinated foraminifera. Grzybowski Found. Spec. Publ., 10. http://www.foraminifera.eu/​atlas.html

Kato, M., 1992. Benthic foraminifers from the Japan Sea: Leg 128. In Pisciotto, K.A., Ingle, J.C., Jr., von Breymann, M.T., Barron, J., et al., Proc. ODP, Sci. Results, 127/128 (Pt. 1): College Station, TX (Ocean Drilling Program), 365–392. doi:10.2973/​odp.proc.sr.127128-1.142.1992

Katz, M.E., and Miller, K.G., 1991. Early Paleogene benthic foraminiferal assemblages and stable isotopes in the Southern Ocean. In Ciesielski, P.F., Kristoffersen, Y., et al., Proc. ODP, Sci. Results, 114: College Station, TX (Ocean Drilling Program), 481–512. doi:10.2973/​odp.proc.sr.114.147.1991

Kennett, J.P., and Srinivasan, M.S., 1983. Neogene Planktonic Foraminifera: A Phylogenetic Atlas: Stroudsburg, PA (Hutchinson Ross).

Kim, J.-H., Torres, M.E., Hong, W.-L., Choi, J., Riedel, M., Bahk, J.-J., and Kim, S.-H., 2013. Pore fluid chemistry from the second gas hydrate drilling expedition in the Ulleung Basin (UBGH2): source, mechanisms and consequences of fluid freshening in the central part of the Ulleung Basin, East Sea. Mar. Pet. Geol., 47:99–112. doi:10.1016/​j.marpetgeo.2012.12.011

Koizumi, I., 1992. Diatom biostratigraphy of the Japan Sea: Leg 127. In Pisciotto, K.A., Ingle, J.C., Jr., von Breymann, M.T., Barron, J., et al., Proc. ODP, Sci. Results, 127/128 (Pt. 1): College Station, TX (Ocean Drilling Program), 249–289. doi:10.2973/​odp.proc.sr.127128-1.127.1992

Kristiansen, J.I., 1982. The transient cylindrical probe method for determination of thermal parameters of earth materials [Ph.D. dissert.]. Åarhus Univ., Åarhus, Denmark.

Kucera, M., and Kennett, J.P., 2000. Biochronology and evolutionary implications of late Neogene California margin planktonic foraminiferal events. Mar. Micropaleontol., 40(1–2):67–81. doi:10.1016/​S0377-8398(00)00029-3

Lagoe, M.B., and Thompson, P.R., 1988. Chronostratigraphic significance of late Cenozoic planktonic foraminifera from the Ventura Basin, California: potential for improving tectonic and depositional interpretation. J. Foraminiferal Res., 18(3):250–266. doi:10.2113/​gsjfr.18.3.250

Leckie, R.M., Farnham, C., and Schmidt, M.G., 1993. Oligocene planktonic foraminifer biostratigraphy of Hole 803D (Ontong Java Plateau) and Hole 628A (Little Bahama Bank), and comparison with the southern high latitudes. In Berger, W.H., Kroenke, L.W., Mayer, L.A., et al., Proc. ODP, Sci. Results, 130: College Station, TX (Ocean Drilling Program), 113–136. doi:10.2973/​odp.proc.sr.130.012.1993

Ling, H.-Y., 1992. Radiolarians from the Sea of Japan: Leg 128. In Pisciotto, K.A., Ingle, J.C., Jr., von Breymann, M.T., Barron, J., et al., Proc. ODP, Sci. Results, 127/128 (Pt. 1): College Station, TX (Ocean Drilling Program), 225–236. doi:10.2973/​odp.proc.sr.127128-1.125.1992

Liu, T., Iturrino, G., Goldberg, D., Meissner, E., Swain, K., Furman, C., Fitzgerald, P., Frisbee, N., Chlimoun, J., Van Hyfte, J., and Beyer, R., 2013. Performance evaluation of active wireline heave compensation systems in marine well logging environments. Geo-Mar. Lett., 33(1):83–93. doi:10.1007/​s00367-012-0309-8

Loeblich, A.R., Jr., and Tappan, H., 1988. Foraminiferal Genera and Their Classification: New York (Van Nostrand Reinhold).

Lourens, L., Hilgen, F., Shackleton, N.J., Laskar, J., and Wilson, D., 2004. The Neogene period. In Gradstein, F.M., Ogg, J.G., and Smith, A. (Eds.), A Geologic Time Scale 2004: Cambridge (Cambridge Univ. Press), 409–440. doi:10.1017/​CBO9780511536045.022

Lovell, M.A., Harvey, P.K., Brewer, T.S., Williams, C., Jackson, P.D., and Williamson, G., 1998. Application of FMS images in the Ocean Drilling Program: an overview. In Cramp, A., MacLeod, C.J., Lee, S.V., and Jones, E.J.W. (Eds.), Geological Evolution of Ocean Basins: Results from the Ocean Drilling Program. Geol. Soc. Spec. Publ., 131(1):287–303. doi:10.1144/​GSL.SP.1998.131.01.18

Luthi, S.M., 1990. Sedimentary structures of clastic rocks identified from electrical borehole images. In Hurst, A., Lovell, M.A., and Morton, A.C. (Eds.), Geological Applications of Wireline Logs. Geol. Soc. Spec. Publ., 48(1):3–10. doi:10.1144/​GSL.SP.1990.048.01.02

Lyle, M., Koizumi, I., Richter, C., et al., 1997. Proc. ODP, Init. Repts., 167: College Station, TX (Ocean Drilling Program). doi:10.2973/​odp.proc.ir.167.1997

Maiya, S., 1978. Late Cenozoic planktonic foraminiferal biostratigraphy of the oil-field region of northeast Japan. In Cenozoic Geology of Japan: Osaka, 35–60. (in Japanese, with abstract in English)

Maiya, S., Saito, T., and Sato, T., 1976. Late Cenozoic planktonic foraminiferal biostratigraphy of Northwest Pacific sedimentary sequences. In Takayanagi, Y., and Saito, T. (Eds.), Progress in Micropaleontology: New York (Micropaleontology Press), 395–422.

Manheim, F.T., and Sayles, F.L., 1974. Composition and origin of interstitial waters of marine sediments, based on deep sea drill cores. In Goldberg, E.D. (Ed.), The Sea (Vol. 5): Marine Chemistry: The Sedimentary Cycle: New York (Wiley), 527–568.

Martini, E., 1971. Standard Tertiary and Quaternary calcareous nannoplankton zonation. In Farinacci, A. (Ed.), Proc. Second Planktonic Conf. Roma 1970: Rome (Ed. Tecnosci.), 2:739–785.

Masuzawa, T., and Kitano, Y., 1983. Sulfate reduction and sulfide deposition in deep-sea sediments from the southwestern Japan Sea. J. Oceanogr. Soc. Jpn., 39(5):251–258. doi:10.1007/​BF02070395

Matsumoto, R., 1992. Diagenetic dolomite, calcite, rhodochrosite, magnesite, and lansfordite from Site 799, Japan Sea—implications for depositional environments and the diagenesis of organic-rich sediments. In Pisciotto, K.A., Ingle, J.C., Jr., von Breymann, M.T., Barron, J., et al., Proc. ODP, Sci. Results, 127/128 (Pt. 1): College Station, TX (Ocean Drilling Program), 75–98. doi:10.2973/​odp.proc.sr.127128-1.119.1992

Matul, A., Abelmann, A., Tiedemann, R., Kaiser, A., and Nürnberg, D., 2002. Late Quaternary polycystine radiolarian datum events in the Sea of Okhotsk. Geo-Mar. Lett., 22(1):25–32. doi:10.1007/​s00367-002-0093-y

Mazzullo, J.M., Meyer, A., and Kidd, R.B., 1988. New sediment classification scheme for the Ocean Drilling Program. In Mazzullo, J., and Graham, A.G. (Eds.), Handbook for shipboard sedimentologists. ODP Tech. Note, 8:44–67. doi:10.2973/​odp.tn.8.1988

McDuff, R.E., 1985. The chemistry of interstitial waters, Deep Sea Drilling Project Leg 86. In Heath, G.R., Burckle, L.H., et al., Init. Repts. DSDP, 86: Washington, DC (U.S. Govt. Printing Office), 675–687. doi:10.2973/​dsdp.proc.86.131.1985

Miller, K.G., and Katz, M.E., 1987. Oligocene to Miocene benthic foraminiferal and abyssal circulation changes in the North Atlantic. Micropaleontology, 33(2):97–149. doi:10.2307/​1485489

Millero, F.J., Feistel, R., Wright, D.G., and McDougall, T.J., 2008. The composition of Standard Seawater and the definition of the reference-composition salinity scale. Deep-Sea Res., Part I, 55(1):50–72. doi:10.1016/​j.dsr.2007.10.001

Miwa, M., 2014. Foraminifera. In Sekiyu Kogyo Binran (Petroleum Technology Handbook) 2013: Tokyo (Jpn. Assoc. Pet. Technol.), 223–227. (in Japanese)

Mix, A.C., Le, J., and Shackleton, N.J., 1995. Benthic foraminiferal stable isotope stratigraphy of Site 846: 0–1.8 Ma. In Pisias, N.G., Mayer, L.A., Janecek, T.R., Palmer-Julson, A., and van Andel, T.H. (Eds.), Proc. ODP, Sci. Results, 138: College Station, TX (Ocean Drilling Program), 839–854. doi:10.2973/​odp.proc.sr.138.160.1995

Mix, A.C., Tiedemann, R., Blum, P., et al., 2003. Proc. ODP, Init. Repts., 202: College Station, TX (Ocean Drilling Program). doi:10.2973/​odp.proc.ir.202.2003

Mohan, K., Gupta, A.K., and Bhaumik, A.K., 2011. Distribution of deep-sea benthic foraminifera in the Neogene of Blake Ridge, NW Atlantic Ocean. J. Micropalaeontol., 30(1):33–74. doi:10.1144/​0262-821X10-008

Morley, J.J., and Nigrini, C., 1995. Miocene to Pleistocene radiolarian biostratigraphy of North Pacific Sites 881, 884, 885, 886, and 887. In Rea, D.K., Basov, I.A., Scholl, D.W., and Allan, J.F. (Eds.), Proc. ODP, Sci. Results, 145: College Station, TX (Ocean Drilling Program), 55–91. doi:10.2973/odp.proc.sr.145.107.1995

Motoyama, I., 1996. Late Neogene radiolarian biostratigraphy in the subarctic Northwest Pacific. Micropaleontology, 42(3):221–262. doi:10.2307/​1485874

Motoyama, I., 2014. Radiolaria. In Sekiyu Kogyo Binran (Petroleum Technology Handbook) 2013: Tokyo (Jpn. Assoc. Pet. Technol.), 229–231. (in Japanese)

Motoyama, I., Niitsuma, N., Maruyama, T., Hayashi, H., Kamikuri, S., Shiono, M., Kanamatsu, T., Aoki, K., Morishita, C., Hagino, K., Nishi, H., and Oda, M., 2004. Middle Miocene to Pleistocene magneto-biostratigraphy of ODP Sites 1150 and 1151, northwest Pacific: sedimentation rate and updated regional geological timescale. Isl. Arc, 13(1):289–305. doi:10.1111/​j.1440-1738.2003.00426.x

Munsell Color Company, Inc., 2009. Munsell Soil Color Chart: Grand Rapids, MI (Munsell Color Co., Inc.).

Murray, R.W., Brumsack, H.J., von Breymann, M.T., Sturz, A.A., Dunbar, R.B., and Gieskes, J.M., 1992. Diagenetic reactions in deeply buried sediments of the Japan Sea: a synthesis of interstitial-water chemistry results from Legs 127 and 128. In Tamaki, K., Suyehiro, K., Allan, J., McWilliams, M., et al., Proc. ODP, Sci. Results, 127/128 (Pt. 2): College Station, TX (Ocean Drilling Program), 1261–1274. doi:10.2973/​odp.proc.sr.127128-2.177.1992

Murray, R.W., Miller, D.J., and Kryc, K.A., 2000. Analysis of major and trace elements in rocks, sediments, and interstitial waters by inductively coupled plasma–atomic emission spectrometry (ICP-AES). ODP Tech. Note, 29. doi:10.2973/​odp.tn.29.2000

Nigrini, C., and Sanfilippo, A., 2001. Cenozoic radiolarian stratigraphy for low and middle latitudes with descriptions of biomarkers and stratigraphically useful species. ODP Tech. Note, 27. doi:10.2973/​odp.tn.27.2001

Nobes, D.C., Murray, R.W., Kuramoto, S., Pisciotto, K.A., and Holler, P., 1992. Impact of silica diagenesis on physical property variations. In Pisciotto, K.A., Ingle, J.C., Jr., von Breymann, M.T., Barron, J., et al., Proc. ODP, Sci. Results, 127/128 (Pt. 1): College Station, TX (Ocean Drilling Program), 3–31. doi:10.2973/​odp.proc.sr.127128-1.111.1992

Nomura, R., 1995. Paleogene to Neogene deep-sea paleoceanography in the eastern Indian Ocean: benthic foraminifera from ODP Sites 747, 757 and 758. Micropaleontology, 41(3):251–290. doi:10.2307/​1485862

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

Paull, C.K., Lorenson, T.D., Dickens, G., Borowski, W.S., Ussler, W., III, and Kvenvolden, K., 2000. Comparisons of in situ and core gas measurements in ODP Leg 164 bore holes. Ann. New York Acad. Sci., 912:23–31. doi:10.1111/​j.1749-6632.2000.tb06756.x

Pearson, P.N., 1995. Planktonic foraminifer biostratigraphy and the development of pelagic caps on guyots in the Marshall Islands group. In Haggerty, J.A., Premoli Silva, I., Rack, F., and McNutt, M.K. (Eds.), Proc. ODP, Sci. Results, 144: College Station, TX (Ocean Drilling Program), 21–59. doi:10.2973/​odp.proc.sr.144.013.1995

Pearson, P.N., and Chaisson, W.P., 1997. Late Paleocene to middle Miocene planktonic foraminifer biostratigraphy of the Ceara Rise. In Shackleton, N.J., Curry, W.B., Richter, C., and Bralower, T.J. (Eds.), Proc. ODP, Sci. Results, 154: College Station, TX (Ocean Drilling Program), 33–68. doi:10.2973/​odp.proc.sr.154.106.1997

Pearson, P.N., Olsson, R.K., Huber, B.T., Hemleben, C., and Berggren, W.A. (Eds.), 2006. Atlas of Eocene Planktonic Foraminifera. Spec. Publ.—Cushman Found. Foraminiferal Res., 41.

Perch-Nielsen, K., 1985. Cenozoic calcareous nannofossils. In Bolli, H.M., Saunders, J.B., and Perch-Nielsen, K. (Eds.), Plankton Stratigraphy: Cambridge (Cambridge Univ. Press), 427–554.

Pezard, P., Lovell, M., and ODP Leg 126 Shipboard Scientific Party, 1990. Downhole images: electrical scanning reveals the nature of subsurface oceanic crust. Eos, Trans. Am. Geophys. Union, 71(20):709–718. doi:10.1029/​90EO00178

Presley, B.J., 1971. Determination of minor and major inorganic constituents. In Winterer, E.L., Riedel, W.R., et al., Init. Repts. DSDP, 7: Washington, DC (U.S. Govt. Printing Office), 1749–1755. doi:10.2973/​dsdp.proc.7.app1.1971

Pribnow, D., Kinoshita, M., and Stein, C., 2000. Thermal Data Collection and Heat Flow Recalculations for Ocean Drilling Program Legs 101–180: Hanover, Germany (Inst. Joint Geosci. Res., Inst. Geowiss. Gemeinschaftsauf. [GGA]). http://www-odp.tamu.edu/​publications/​heatflow/​ODPReprt.pdf

Pujol, C., and Duprat, J., 1983. Quaternary planktonic foraminifers of the southwestern Atlantic (Rio Grande Rise) Deep Sea Drilling Project Leg 72. In Barker, P.F., Carlson, R.L., Johnson, D.A., et al., Init. Repts. DSDP, 72: Washington, DC (U.S. Govt. Printing Office), 601–615. doi:10.2973/​dsdp.proc.72.128.1983

Rider, M.H., 1996. The Geological Interpretation of Well Logs (2nd ed.): Caithness (Whittles Publ.).

Ruddiman, W.F., Kidd, R.B., Thomas, E., et al., 1987. Init. Repts. DSDP, 94: Washington, DC (U.S. Govt. Printing Office). doi:10.2973/​dsdp.proc.94.1987

Salimullah, A.R.M., and Stow, D.A.V., 1992. Application of FMS images in poorly recovered coring intervals: examples from ODP Leg 129. In Hurst, A., Griffiths, C.M., and Worthington, P.F. (Eds.), Geological Application of Wireline Logs II. Geol. Soc. Spec. Publ., 65(1):71–86. doi:10.1144/​GSL.SP.1992.065.01.06

Sanfilippo, A., and Nigrini, C., 1998. Code numbers for Cenozoic low latitude radiolarian biostratigraphic zones and GPTS conversion tables. Mar. Micropaleontol., 33(1–2):109–117, 121–156. doi:10.1016/​S0377-8398(97)00030-3

Sayles, F.L., and Manheim, F., 1975. Interstitial solutions and diagenesis in deeply buried marine sediments: results from the Deep Sea Drilling Project. Geochim. Cosmochim. Acta, 39(2):103–127. doi:10.1016/​0016-7037(75)90165-9

Schlumberger, 1989. Log Interpretation Principles/Applications: Houston (Schlumberger Educ. Serv.), SMP–7017.

Schlumberger, 1994. IPL Integrated Porosity Lithology: Houston (Schlumberger Wireline Testing), SMP-9270.

Schrader, H.J., and Gersonde, R., 1978. Diatoms and silicoflagellates. In Zachariasse, W.J., et al. (Eds.), Micropaleontological Counting Methods and Techniques: An Exercise of an Eight Metres Section of the Lower Pliocene of Cap Rossello, Sicily. Utrecht Micropaleontol. Bull., 17:129–176.

Schrag, D.P., Hampt, G., and Murray, D.W., 1996. Pore fluid constraints on the temperature and oxygen isotopic composition of the glacial ocean. Science, 272(5270):1930–1932. doi:10.1126/​science.272.5270.1930

Schrum, H.N., Murray, R.W., and Gribsholt, B., 2012. Comparison of Rhizon sampling and whole round squeezing for marine sediment porewater. Sci. Drill., 13:47–50. doi:10.2204/​iodp.sd.13.08.2011

Serra, O., 1984. Fundamentals of Well-Log Interpretation (Vol. 1): The Acquisition of Logging Data: Amsterdam (Elsevier).

Serra, O., 1986. Fundamentals of Well-Log Interpretation (Vol. 2): The Interpretation of Logging Data. Amsterdam (Elsevier).

Serra, O., 1989. Formation MicroScanner Image Interpretation: Houston (Schlumberger Educ. Serv.), SMP-7028.

Shackleton, N.J., Baldauf, J.G., Flores, J.-A., Iwai, M., Moore, T.C., Jr., Raffi, I., and Vincent, E., 1995. Biostratigraphic summary for Leg 138. In Pisias, N.G., Mayer, L.A., Janecek, T.R., Palmer-Julson, A., and van Andel, T.H. (Eds.), Proc. ODP, Sci. Results, 138: College Station, TX (Ocean Drilling Program), 517–536. doi:10.2973/​odp.proc.sr.138.127.1995

Shackleton, N.J., Crowhurst, S.J., Weedon, G.P., and Laskar, J., 1999. Astronomical calibration of Oligocene–Miocene time. In Shackleton N.J., McCave, I.N., and Graham, P.W. (Eds.), Astronomical (Milankovitch) Calibration of the Geological Time-Scale. Philos. Trans. R. Soc., A., 357(1757):1907–1929. doi:10.1098/​rsta.1999.0407

Shepard, F.P., 1954. Nomenclature based on sand-silt-clay ratios. J. Sediment. Res., 24(3):151–158. doi:10.1306/​D4269774-2B26-11D7-8648000102C1865D

Shipboard Scientific Party, 1990. Site 796. In Tamaki, K., Pisciotto, K., Allan, J., et al., Proc. ODP, Init. Repts., 127: College Station, TX (Ocean Drilling Program), 247–322. doi:10.2973/​odp.proc.ir.127.106.1990

Shipboard Scientific Party, 1995. Explanatory notes. In Flood, R.D., Piper, D.J.W., Klaus, A., et al., Proc. ODP, Init. Repts., 155: College Station, TX (Ocean Drilling Program), 47–81. doi:10.2973/​odp.proc.ir.155.104.1995

Snyder, G.T, Hiruta, A., Matsumoto, R., Dickens, G.R., Tomaru, H., Takeuchi, R., Komatsubara, J., Ishida, Y., and Yu, H., 2007. Pore water profiles and authigenic mineralization in shallow marine sediments above the methane-charged system on Umitaka Spur, Japan Sea. Deep-Sea Res., Part II, 54(11–13):1216–1239. doi:10.1016/​j.dsr2.2007.04.001

Solórzano, L., 1969. Determination of ammonia in natural waters by the phenol hypochlorite method. Limnol. Oceanogr., 14(5):799–801. doi:10.4319/​lo.1969.14.5.0799

Spezzaferri, S., 1994. Planktonic foraminiferal biostratigraphy and taxonomy of the Oligocene and lower Miocene in the oceanic record: an overview. Palaeontographica Ital., 81.

Spezzaferri, S., and Premoli Silva, I., 1991. Oligocene planktonic foraminiferal biostratigraphy and paleoclimatic interpretation from Hole 538A, DSDP Leg 77, Gulf of Mexico. Palaeogeogr., Palaeoclimatol., Palaeoecol., 83(1–3):217–263. doi:10.1016/​0031-0182(91)90080-B

Stow, D.A.V., 2005. Sedimentary Rocks in the Field: A Colour Guide: London (Manson Publ.).

Strickland, J.D.H., and Parsons, T.R., 1968. A Practical Handbook of Seawater Analysis. Bull.—Fish. Res. Board Can., 167.

Sudo, H., 1986. A note on the Japan Sea Proper Water. Prog. Oceanogr., 17(3–4):313–336. doi:10.1016/​0079-6611(86)90052-2

Tada, R., and Iijima, A., 1992. Lithostratigraphy and compositional variation of Neogene hemipelagic sediments in the Japan Sea. In Tamaki, K., Suyehiro, K., Allan, J., McWilliams, M., et al., Proc. ODP, Sci. Results, 127/128 (Pt. 2): College Station, TX (Ocean Drilling Program), 1229–1260. doi:10.2973/​odp.proc.sr.127128-2.188.1992

Tada, R., Koizumi, I., Cramp, A., and Rahman, A., 1992. Correlation of dark and light layers, and the origin of their cyclicity in the Quaternary sediments from the Japan Sea. In Pisciotto, K.A., Ingle, J.C., Jr., von Breymann, M.T., Barron, J., et al., Proc. ODP, Sci. Results, 127/128 (Pt. 1): College Station, TX (Ocean Drilling Program), 577–601. doi:10.2973/​odp.proc.sr.127128-1.160.1992

Tada, R., Murray, R.W., Alvarez Zarikian, C.A., Anderson, W.T., Jr., Bassetti, M.-A., Brace, B.J., Clemens, S.C., da Costa Gurgel, M.H., Dickens, G.R., Dunlea, A.G., Gallagher, S.J., Giosan, L., Henderson, A.C.G., Holbourn, A.E., Ikehara, K., Irino, T., Itaki, T., Karasuda, A., Kinsley, C.W., Kubota, Y., Lee, G.S., Lee, K.E., Lofi, J., Lopes, C.I.C.D., Peterson, L.C., Saavedra-Pellitero, M., Sagawa, T., Singh, R.K., Sugisaki, S., Toucanne, S., Wan, S., Xuan, C., Zheng, H., and Ziegler, M., 2015a. Site U1422. In Tada, R., Murray, R.W., Alvarez Zarikian, C.A., and the Expedition 346 Scientists, Proc. IODP, 346: College Station, TX (Integrated Ocean Drilling Program). doi:10.2204/​iodp.proc.346.103.2015

Tada, R., Murray, R.W., Alvarez Zarikian, C.A., Anderson, W.T., Jr, Bassetti, M.-A., Brace, B.J., Clemens, S.C., Dickens, G.R., Dunlea, A.G., Gallagher, S.J., Giosan, L., da Costa Gurgel, M.H., Henderson, A.C.G., Holbourn, A.E., Ikehara, K., Irino, T., Itaki, T., Karasuda, A., Kinsley, C.W., Kubota, Y., Lee, G.S., Lee, K.E., Lofi, J., Lopes, C.I.C.D., Peterson, L.C., Saavedra-Pellitero, M., Sagawa, T., Singh, R.K., Sugisaki, S., Toucanne, S., Wan, S., Xuan, C., Zheng, H., and Ziegler, M., 2015b. Site U1423. In Tada, R., Murray, R.W., Alvarez Zarikian, C.A., and the Expedition 346 Scientists, Proc. IODP, 346: College Station, TX (Integrated Ocean Drilling Program). doi:10.2204/​iodp.proc.346.104.2015

Tada, R., Murray, R.W., Alvarez Zarikian, C.A., Anderson, W.T., Jr, Bassetti, M.-A., Brace, B.J., Clemens, S.C., Dickens, G.R., Dunlea, A.G., Gallagher, S.J., Giosan, L., da Costa Gurgel, M.H., Henderson, A.C.G., Holbourn, A.E., Ikehara, K., Irino, T., Itaki, T., Karasuda, A., Kinsley, C.W., Kubota, Y., Lee, G.S., Lee, K.E., Lofi, J., Lopes, C.I.C.D., Peterson, L.C., Saavedra-Pellitero, M., Sagawa, T., Singh, R.K., Sugisaki, S., Toucanne, S., Wan, S., Xuan, C., Zheng, H., and Ziegler, M., 2015c. Site U1427. In Tada, R., Murray, R.W., Alvarez Zarikian, C.A., and the Expedition 346 Scientists, Proc. IODP, 346: College Station, TX (Integrated Ocean Drilling Program). doi:10.2204/​iodp.proc.346.108.2015

Takayanagi, T., Takayama, T., Sakai, T., Oda, M., and Kitazato, H., 1976. Microbiostratigraphy of some middle Miocene sequences in northern Japan. In Takayanagi, Y., and Saito, T. (Eds.), Progress in Micropaleontology:Selected Papers in Honor of Prof. Kiyoshi Asano: New York (Micropaleontol. Press), 356–381.

Tamaki, K., Pisciotto, K., Allan, J., et al., 1990. Proc. ODP, Init. Repts., 127: College Station, TX (Ocean Drilling Program). doi:10.2973/​odp.proc.ir.127.1990

Thomas, E., 1990. Late Cretaceous through Neogene deep-sea benthic foraminifers (Maud Rise, Weddell Sea, Antarctica). In Barker, P.F., Kennett, J.P., et al., Proc. ODP, Sci. Results, 113: College Station, TX (Ocean Drilling Program), 571–594. doi:10.2973/​odp.proc.sr.113.123.1990

Thompson, P.R., Bé, A.W.H., Duplessy, J.-C., and Shackleton, N.J., 1979. Disappearance of pink-pigmented Globigerinoides ruber at 120,000 yr BP in the Indian and Pacific oceans. Nature (London, U. K.), 280(5723):554–558. doi:10.1038/​280554a0

Tjalsma, R.C., and Lohmann, G.P., 1983. Paleocene–Eocene bathyal and abyssal benthic foraminifera from the Atlantic Ocean. Micropaleontology, Spec. Publ., 4.

Toumarkine, M., and Luterbacher, H., 1985. Paleocene and Eocene planktic foraminifera. In Bolli, H.M., Saunders, J.B., and Perch-Nielsen, K. (Eds.), Plankton Stratigraphy: Cambridge (Cambridge Univ. Press), 87–154.

Turco, E., Bambini, A.M., Foresi, L., Iaccarino, S., Lirer, F., Mazzei, R., and Salvatorini, G., 2002. Middle Miocene high-resolution calcareous plankton biostratigraphy at Site 926 (Leg 154, equatorial Atlantic Ocean): palaeoecological and palaeobiogeographical implications. Geobios, 35(1):257–276. doi:10.1016/​S0016-6995(02)00064-5

Usami, K., Ohi, T., Hasegawa, S., and Ikehara, K., 2013. Foraminiferal records of bottom-water oxygenation and surface-water productivity in the southern Japan Sea during 160–15 ka: associations with insolation changes. Mar. Micropaleontol., 101:10–27. doi:10.1016/​j.marmicro.2013.03.006

Van Marle, L.J., 1991. Eastern Indonesian late Cenozoic smaller benthic foraminifera. Verh.—K. Ned. Akad. Wet., Afd. Natuurkd., Eerste Reeks, 34.

van Morkhoven, F.P.C.M., Berggren, W.A., Edwards, A.S., and Oertli, H.J., 1986. Cenozoic cosmopolitan deep-water benthic foraminifera. Bull. Cent. Rech. Explor.—Prod. Elf-Aquitaine, 11.

Vasiliev, M.A., Blum, P., Chubarian, G., Olsen, R., Bennight, C., Cobine, T., Fackler, D., Hastedt, M., Houpt, D., Mateo, Z., and Vasilieva, Y.B., 2011. A new natural gamma radiation measurement system for marine sediment and rock analysis. J. Appl. Geophys., 75:455–463. doi:10.1016/​j.jappgeo.2011.08.008

Von Herzen, R., and Maxwell, A.E., 1959. The measurement of thermal conductivity of deep-sea sediments by a needle-probe method. J. Geophys. Res., 64(10):1557–1563. doi:10.1029/​JZ064i010p01557

Wade, B.S., Pearson, P.N., Berggren, W.A., and Pälike, H., 2011. Review and revision of Cenozoic tropical planktonic foraminiferal biostratigraphy and calibration to the geomagnetic polarity and astronomical time scale. Earth-Sci. Rev., 104(1–3):111–142. doi:10.1016/​j.earscirev.2010.09.003

Watanabe, M., and Yanagisawa, Y., 2005. Refined early to middle Miocene diatom biochronology for the middle- to high-latitude North Pacific. Isl. Arc, 14(2):91–101. doi:10.1111/​j.1440-1738.2005.00460.x

Watkins, D.K., and Bergen, J.A., 2003. Late Albian adaptive radiation in the calcareous nannofossil genus Eiffellithus. Micropaleontology, 49(3):231–251. doi:10.2113/​49.3.231

Wentworth, C.K., 1922. A scale of grade and class terms for clastic sediments. J. Geol., 30(5):377–392. doi:10.1086/​622910

Wilkens, R.H., Dickens, G.R., Tian, J., Backman, J., and the Expedition 320/321 Scientists, 2013. Data report: revised composite depth scales for Sites U1336, U1337, and U1338. In Pälike, H., Lyle, M., Nishi, H., Raffi, I., Gamage, K., Klaus, A., and the Expedition 320/321 Scientists, Proc. IODP, 320/321: Tokyo (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/​iodp.proc.320321.209.2013

Xuan, C., and Channell, J.E.T., 2009. UPmag: MATLAB software for viewing and processing U channel or other pass-through paleomagnetic data. Geochem., Geophys., Geosyst., 10(10):Q10Y07. doi:10.1029/​2009GC002584

Yanagisawa, Y., and Akiba, F., 1998. Refined Neogene diatom biostratigraphy for the northwest Pacific around Japan, with an introduction of code numbers for selected diatom biohorizons. Chishitsugaku Zasshi, 104(6):395–414. doi:10.5575/​geosoc.104.395

You, C.-F., Gieskes, J.M., Chen, R.F., Spivack, A., and Gamo, T., 1993. Iodide, bromide, manganese, boron, and dissolved organic carbon in interstitial waters of the organic carbon–rich marine sediments: observations in the Nankai accretionary prism. In Hill, I.A., Taira, A., Firth, J.V., et al., Proc. ODP, Sci. Results, 131: College Station, TX (Ocean Drilling Program), 165–174. doi:10.2973/​odp.proc.sr.131.116.1993