Items where Subject is "IODP"

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Number of items at this level: 531.

A

Abegg, F, Bohrmann, G, Freitag, J and Kuhs, WF (2007) Fabric of gas hydrate in sediments from Hydrate Ridge - results from ODP Leg 204 samples. Geo-Marine Letters, 27. 269-277. doi:10.1007/s00367-007-0080-4 PANGAEA Supplementary Data

Abegg, F, Bohrmann, G and Kuhs, W (2006) Data Report: Shapes and structures of gas hydrates imaged by computed tomographic analyses, ODP Leg 204, Hydrate Ridge. In: Tréhu, AM, Bohrmann, G, Torres, ME and Colwell, FS (eds.) Proceedings of the Ocean Drilling Program. Scientific Results, 204. College Station, TX (Ocean Drilling Program), 1-11. doi:10.2973/odp.proc.sr.204.122.2006 PANGAEA Supplementary Data

Abrantes, FF, Santos, C, Ventura, C, Voelker, A and Röhl, U (2017) Data report: IODP Expedition 339 Site U1391: an improved splice and preliminary age model on the basis of XRF data. In: Stow, DAV, Hernández-Molina, FJ, Alvarez Zarikian, CA and Expedition 339 Scientists (eds.) Proceedings of the Integrated Ocean Drilling Program, 339. Integrated Ocean Drilling Program Management International, Inc.. doi:10.2204/iodp.proc.339.203.2017

Agnini, C, Backman, J, Fornaciari, E, Galeotti, S, Giusberti, L, Grandesso, P, Lanci, L, Monechi, S, Muttoni, G, Pälike, H, Pampaloni, ML, Pignatti, J, Silva, IP, Raffi, I, Rio, D, Rook, L and Stefani, C (2014) The Alano Section: The Candidate GSSP for the Priabonian Stage. In: Rocha, R, Pais, J, Kullberg, JC and Finney, S (eds.) STRATI 2013. Springer Geology. Springer International Publishing, 55-59. doi:10.1007/978-3-319-04364-7_11

Agnini, C, Fornaciari, E, Raffi, I, Catanzariti, R, Pälike, H, Backman, J and Rio, D (2014) Biozonation and biochronology of Paleogene calcareous nannofossils from low and middle latitudes. Newsletters on Stratigraphy, 47(2). 131-181. doi:10.1127/0078-0421/2014/0042

Agnini, C, Fornaciari, E, Raffi, I, Rio, D, Röhl, U and Westerhold, T (2007) High-resolution nannofossil biochronology of middle Paleocene to early Eocene at ODP Site 1262: Implications for calcareous nannoplankton evolution. Marine Micropaleontology, 64(3-4). 215-248. doi:10.1016/j.marmicro.2007.05.003 PANGAEA Supplementary Data

Aharonovich, S, Lipp, JS and George, SC (2023) Global sea level changes or local tectonics? Pliocene, Miocene and Oligocene biomarkers in cored sedimentary rocks from IODP Expedition 317, Canterbury Basin, New Zealand. Organic Geochemistry, 180. 104590. doi:10.1016/j.orggeochem.2023.104590

Albers, E, Kahl, WA, Beyer, L and Bach, W (2020) Variant across-forearc compositions of slab-fluids recorded by serpentinites: Implications on the mobilization of FMEs from an active subduction zone (Mariana forearc). Lithos, 364-36. 105525. doi:10.1016/j.lithos.2020.105525

Alegret, L, Harper, DT, Agnini, C, Newsam, C, Westerhold, T, Cramwinckel, MJ, Dallanave, E, Dickens, GR and Sutherland, R (2021) Biotic response to early Eocene warming events: Integrated record from offshore Zealandia, north Tasman Sea. Paleoceanography and Paleoclimatology, 36(8). doi:10.1029/2020PA004179

Alt, JC and Bach, W (2006) The oxygen isotope composition of a section of lower oceanic crust, ODP Hole 735B. Geochemistry Geophysics Geosystems, 7(12). Q12008. doi:10.1029/2006GC001385

Alt, JC, Shanks, WC, Bach, W, Paulick, H, Garrido, CJ and Baudoin, G (2007) Hydrothermal alteration and microbial sulfate reduction in P peridotite and gabbro exposed by detachment faulting at the Mid-Atlantic Ridge, 15°20'N (ODP Leg 209): A sulfur and oxygen isotope study. Geochemistry Geophysics Geosystems. Q08002. doi:10.1029/2007GC001617 PANGAEA Supplementary Data

Amarathunga, U, Hogg, AMC, Rohling, EJ, Roberts, AP, Grant, KM, Heslop, D, Hu, P, Liebrand, D, Westerhold, T, Zhao, X and Gilmore, S (2022) Sill-controlled salinity contrasts followed post-Messinian flooding of the Mediterranean. Nature Geoscience. doi:10.1038/s41561-022-00998-z

Amini, M, Eisenhauer, A, Böhm, F, Fietzke, J, Bach, W, Garbe-Schönberg, CD, Rosner, M, Bock, B, Lackschewitz, KS and Hauff, V (2008) Calcium isotope (d44/40Ca)fractionation along hydrothermal pathways, Logatchev field (Mid-Atlantic Ridge, 14°45'N). Geochimica et Cosmochimica Acta, 72(16). 4107-4122. doi:10.1016/j.gca.2008.05.055 PANGAEA Supplementary Data

Andres, MS, Bernasconi, SM, McKenzie, JA and Röhl, U (2003) Southern Ocean deglacial record supports global Younger Dryas. Earth and Planetary Science Letters, 216(4). 515-524. doi:10.1016/S0012-821X(03)00556-9 PANGAEA Supplementary Data

Arnold, J, Bartetzko, A, Iturrino, GJ and Paulick, H (2007) Facies reconstruction from resistivity-at-the-bit images recorded in a submarine felsic volcanic succession. Marine Geophysical Researches, 28. 331-341. doi:10.1007/s11001-007-9035-4

Asami, R, Felis, T, Deschamps, P, Hanawa, K, Iryu, Y, Bard, E, Durand, N and Murayama, M (2009) Evidence for tropical South Pacific climate change during the Younger Dryas and the Bølling-Allerød from geochemical records of fossil Tahiti corals. Earth and Planetary Science Letters, 288(1-2). 96-107. doi:10.1016/j.epsl.2009.09.011 PANGAEA Supplementary Data

Ask, MVS and Kopf, AJ (2004) Constraints on the state of in situ effective stress and the mechanical behavior of ODP Leg 186 claystones in the Japan Trench forearc. The Island Arc, 13(1). 242-257. doi:10.1111/j.1440-1738.2003.00423.x

B

Bach, W and Früh-Green, GL (2010) Alteration of the Oceanic Lithosphere and Implications for Seafloor Processes. Elements, 6(3). 173-178. doi:10.2113/gselements.6.3.173

Bach, W, Jöns, N and Klein, F (2013) Metasomatism within the ocean crust. In: Harlov, DE and Austrheim, H (eds.) Metasomatism and the Chemical Transformation of Rock: The Role of Fluids in Terrestrial and Extraterrestrial Processes. Lecture Notes in Earth System Sciences. Springer, 253-288. ISBN 3642283934 doi:10.1007/978-3-642-28394-9_8

Bach, W and Klein, F (2009) The petrology of seafloor rodingites: Insights from geochemical reaction path modeling. Lithos, 112(1-2). 103-117. doi:10.1016/j.lithos.2008.10.022

Bach, W, Paulick, H, Garrido, CJ, Ildefonse, B, Meurer, WP and Humphris, SE (2006) Unraveling the sequence of serpentinization reactions: petrography, mineral chemistry, and petrophysics of serpentinites from MAR 15°N (ODP Leg 209, Site 1274). Geophysical Research Letters, 33. L13306. doi:10.1029/2006GL025681

Bach, W, Ravelo, C, Behrmann, J, Camoin, G, Duncan, R, Edwards, KJ, Gulick, S, Inagaki, F, Pälike, H and Tada, R (2010) IODP New Ventures in Exploring Scientific Targets (INVEST): Defining the new goals of an International Drilling Program. Scientific Drilling(5). 54-64. doi:10.2204/iodp.sd.9.12.2010

Bahr, A, Bohrmann, G and Teichert, BMA (2008) Data Report: bulk mineralogical composition of Cascadia margin sediments, IODP Expedition 311. In: Riedel, M, Collett, TS, Malone, MJ and Expedition 311 Scientists (eds.) Proceedings of the Integrated Ocean Drilling Program. Integrated Ocean Drilling Program Management International, Inc., Washington, DC. doi:10.2204/iodp.proc.311.201.2008

Bahr, A, Jiménez-Espejo, FJ, Kolasinac, N, Grunert, P, Hernández-Molina, FJ, Röhl, U, Voelker, AHL, Escutia, C, Stow, DAV, Hodell, DA and Alvarez-Zarikian, CA (2014) Deciphering bottom current velocity and paleoclimate signals from contourite deposits in the Gulf of Cádiz during the last 140 kyr: An inorganic geochemical approach. Geochemistry, Geophysics, Geosystems, 15. doi:10.1002/2014GC005356 PANGAEA Supplementary Data

Bahr, A, Kaboth, S, Jiménez-Espejo, FJ, Sierro, FJ, Voelker, AHL, Lourens, LJ, Röhl, U, Reichart, GJ, Escutia, C, Hernandez-Molina, FJ, Pross, J and Friedrich, O (2015) Persistent monsoonal forcing of Mediterranean Outflow Water dynamics during the late Pleistocene. Geology. G37013.1. doi:10.1130/G37013.1 PANGAEA Supplementary Data

Barnes, PM, Wallace, LM, Saffer, DM, Bell, RE, Underwood, MB, Fagereng, A, Meneghini, F, Savage, HM, Rabinowitz, HS, Morgan, JK, Kitajima, H, Kutterolf, S, Hashimoto, Y, Engelmann de Oliveira, CH, Noda, A, Crundwell, MP, Shepherd, CL, Woodhouse, AD, Harris, RN, Wang, M, Henrys, S, Barker, DHN, Petronotis, KE, Bourlange, SM, Clennell, MB, Cook, AE, Dugan, BE, Elger, J, Fulton, PM, Gamboa, D, Greve, A, Han, S, Hüpers, A, Ikari, MJ, Ito, Y, Kim, GY, Koge, H, Lee, H, Li, X, Luo, M, Malie, PR, Moore, GF, Mountjoy, JJ, McNamara, DD, Paganoni, M, Screaton, EJ, Shankar, U, Shreedharan, S, Solomon, EA, Wang, X, Wu, HY, Pecher, IA and LeVay, LJ (2020) Slow slip source characterized by lithological and geometric heterogeneity. Science Advances, 6(13). eaay3314. doi:10.1126/sciadv.aay3314

Barnet, JSK, Littler, K, Kroon, D, Leng, MJ, Westerhold, T, Röhl, U and Zachos, JC (2018) A new high-resolution chronology for the late Maastrichtian warming event: Establishing robust temporal links with the onset of Deccan volcanism. Geology, 46(2). 147-150. doi:10.1130/G39771.1 PANGAEA Supplementary Data

Barnet, JSK, Littler, K, Westerhold, T, Kroon, D, Leng, MJ, Bailey, I, Röhl, U and Zachos, JC (2019) A high‐Fidelity benthic stable isotope record of late Cretaceous–Early Eocene climate change and carbon‐cycling. Paleoceanography and Paleoclimatology. doi:10.1029/2019PA003556 PANGAEA Supplementary Data

Bartels, T, Krastel, S and Spiess, V (2007) Correlation of high-resolution seismic data with ODP Leg 208 borehole measurements. In: Kroon, D, Zachos, JC and Richter, C (eds.) Proceedings of the Ocean Drilling Program. Scientific Results, 208. College Station, TX (Ocean Drilling Program), 1-27. doi:10.2973/odp.proc.sr.208.204.2007 PANGAEA Supplementary Data

Bartetzko, A (2005) Effect of hydrothermal ridge flank alteration on the in situ physical properties of uppermost oceanic crust. Journal of Geophysical Research-Solid Earth, 110. B06203. doi:10.1029/2004JB003228

Bartetzko, A (2008) Gamma ray spectrometric analysis of hydrothermally altered dacite samples from the PACMANUS hydrothermal field: Implications for the interpretation of gamma ray wireline measurements. Journal of Volcanology and Geothermal Research, 175. 269-277. doi:10.1016/j.jvolgeores.2008.03.014

Bartetzko, A, Delius, H and Pechnig, R (2005) Effect of compositional and structural variations on log responses of igneous and metamorphic rocks I: mafic rocks. In: Harvey, PK, Brewer, TS, Pezard, PA and Petrov, VY (eds.) Petrophysical properties of crystalline rocks. Special Publications, 240. Geological Society, 255-278. doi:10.1144/GSL.SP.2005.240.01.19

Bartetzko, A and Fisher, AT (2008) Physical properties of young (3.5 Ma) oceanic crust from the eastern flank of the Juan de Fuca Ridge: Comparison of wireline and core measurements with global data. Journal of Geophysical Research-Solid Earth, 113. B05105. doi:10.1029/2007JB005268

Bartetzko, A and Kopf, AJ (2007) The relationship of undrained shear strength and porosity with depth in shallow (< 50 m) marine sediments. Sedimentary Geology, 196(1-4). 235-249. doi:10.1016/j.sedgeo.2006.04.005

Batenburg, SJ, Friedrich, O, Kazuyoshi, M, Voigt, S, Cournède, C, Moebius, I, Blum, P, Bornemann, A, Fiebig, J, Hasegawa, T, Hull, PM, Norris, RD, Röhl, U, Sexton, PF, Westerhold, T, Wilson, PA and IODP Expedition 342 Scientists (2018) Late Maastrichtian carbon isotope stratigraphy and cyclostratigraphy of the Newfoundland Margin (Site U1403, IODP Leg 342). Newsletters on Stratigraphy, 51(2). 245-260. doi:10.1127/nos/2017/0398

Baumann, KH and Freitag, T (2004) Pleistocene fluctuations in the northern Benguela Current system as revealed by coccolith assemblages. Marine Micropaleontology, 52(1-4). 195-215. doi:10.1016/j.marmicro.2004.04.011

Beckmann, B, Flögel, S, Hofmann, P, Schulz, M and Wagner, T (2005) Orbital forcing of Cretaceaous river discharge in tropical Africa and ocean response. Nature, 437. 241-244. doi:10.1038/nature03976

Beckmann, B, Hofmann, P and Wagner, T (2005) Linking Coniacian-Santonian (OAE3) black shale deposition to African climate variability: A reference section from the eastern tropical Atlantic at orbital time scales (ODP Site 959, off Ivory Coast and Ghana). In: Harris, NB (ed.) The Deposition of Organic-Carbon-Rich Sediments: Models, Mechanisms, and Consequences. SEPM Special Publication, 125-143.

Berger, WH, Lange, CB and Wefer, G (2002) Upwelling history of the Benguela-Namibia system: a synthesis of Leg 175 results. In: Wefer, G, Berger, WH and Richter, C (eds.) Proceedings of the Ocean Drilling Program, Scientific Results. College Station, TX (Ocean Drilling Program), 1-103. doi:10.2973/odp.proc.sr.175.235.2002 PANGAEA Supplementary Data

Berger, WH, Lange, CB and Wefer, G (2002) Upwelling off Namibia: Opals and Diatoms. In: White, K and Urquhart, E (eds.) ODP's Greatest Hits, Volume 2. Joint Oceanographic Institutions, 1.

Berger, WH, Schulz, M and Wefer, G (2010) Quaternary oceans and climate change: lessons for the future? International Journal of Earth Sciences, 99(1). 171-189. doi:10.1007/s00531-010-0553-y

Berger, WH and Wefer, G (2003) On the dynamics of the ice ages: stage-11 paradox, mid-Brunhes climate shift, and 100-ky cycle. In: Droxler, AW, Poore, RZ and Burckle, LH (eds.) Earths's Climate and Orbital Eccentricity: The Marine Isotope Stage 11 Question. American Geophysical Union, 41-59. doi:10.1029/137GM04

Berger, WH and Wefer, G (2002) On the reconstruction of upwelling history: Namibia upwelling in context. Marine Geology, 180(1-4). 3-28. doi:10.1016/S0025-3227(01)00203-1

Beulig, F, Schubert, F, Adhikari, RR, Glombitza, C, Heuer, VB, Hinrichs, KU, Homola, KL, Inagaki, F, Jørgensen, BB, Kallmeyer, J, Krause, SJE, Morono, Y, Sauvage, J, Spivack, AJ and Treude, T (2022) Rapid metabolism fosters microbial survival in the deep, hot subseafloor biosphere. Nature Communications, 13(1). doi:10.1038/s41467-021-27802-7

Bice, KL, Birgel, D, Meyers, PA, Dahl, KA, Hinrichs, KU and Norris, RD (2006) A multiple proxy and modeling study of Cretaceous upper ocean temperatures and atmospheric CO2 concentrations. Paleoceanography, 21. PA2002. doi:10.1029/2005PA001203 PANGAEA Supplementary Data

Bickert, T (2006) Influence of geochemical processes on stable isotope distribution in marine sediments. In: Schulz, HD and Zabel, M (eds.) Marine Geochemistry, 2nd Ed. Springer, Berlin, Heidelberg, 339-369. doi:10.1007/3-540-32144-6_10

Bickert, T, Haug, GH and Tiedemann, R (2004) Late Neogene benthic stable isotope record of ODP Site 999: Implications for Caribbean paleoceanography, organic carbon burial and the Messininian Salinity Crisis. Paleoceanography, 19. PA1023. doi:10.1029/2002PA000799 PANGAEA Supplementary Data

Bickert, T and Henrich, R (2011) Climate records of deep-sea sediments: Towards the Ceozonic Ice House. In: Hüneke, H and Mulder, T (eds.) Deep-Sea Sediments. Developments in Sedimentology, 63. Elsevier, 793-823. doi:10.1016/B978-0-444-53000-4.00012-3

Biddle, JF, Lipp, JS, Lever, MA, Lloyd, K, Sorensen, KB, Anderson, R, Fredricks, HF, Elvert, M, Kelly, TJ, Schrag, DP, Sogin, ML, Brenchley, JE, Teske, AP, House, CH and Hinrichs, KU (2006) Heterotrophic Archaea dominate sedimentary subsurface ecosystems off Peru. Proceedings of the National Academy of Sciences, 103(10). 3846-3851. doi:10.1073/pnas.0600035103

Bijl, PK, Bendle, JA, Bohaty, SM, Pross, J, Schouten, S, Tauxe, L, Stickley, CE, McKay, R, Röhl, U, Olney, M, Sluijs, A, Escutia, C, Brinkhuis, H and Expedition 318 Scientists (2013) Eocene cooling linked to early flow across the Tasmanian Gateway. Proceedings of the National Academy of Sciences of the United States of America, 110(24). 9645-9650. doi:10.1073/pnas.1220872110 PANGAEA Supplementary Data

Blake, RE, Surkov, AV, Böttcher, ME, Ferdelman, TG and Jørgensen, BB (2006) Oxygen isotope composition of dissolved sulfate in deep-sea sediments: Eastern Equatorial Pacific Ocean. In: Jørgensen, BB, d'Hondt, SL and Miller, J (eds.) Proceedings of the Ocean Drilling Program. Scientific Results, 201. College Station, TX (Ocean Drilling Program), 1-23. doi:10.2973/odp.proc.sr.201.116.2006 PANGAEA Supplementary Data

Blumberg, S, Lamy, F, Arz, HW, Echtler, H, Wiedicke, M, Haug, GH and Oncken, O (2008) Turbiditic trench deposits at the South-Chilean active margin: A Pleistocene-Holocene record of climate and tectonics. Earth and Planetary Science Letters, 268(3-4). 526-539. doi:10.1016/j.epsl.2008.02.007 PANGAEA Supplementary Data

Boettner, C, Klinghammer, G, Boers, N, Westerhold, T and Marwan, N (2021) Early-warning signals for Cenozoic climate transitions. Quaternary Science Reviews, 270. 107177. doi:10.1016/j.quascirev.2021.107177

Bohrmann, G, Kuhs, WF, Klapp, SA, Techmer, KS, Klein, H, Murshed, MM and Abegg, F (2007) Appearance and preservation of natural gas hydrate from Hydrate Ridge sampled during ODP Leg 204 drilling. Marine Geology, 244(1-4). 1-14. doi:10.1016/j.margeo.2007.05.003 PANGAEA Supplementary Data

Bohrmann, G and Torres, ME (2006) Gas hydrates in marine sediments. In: Schulz, HD and Zabel, M (eds.) Marine Geochemistry. Springer, Berlin Heidelberg, 481-512. ISBN 3540321438 doi:10.1007/3-540-32144-6_14

Bornemann, A, Norris, RD, Friedrich, O, Beckmann, B, Schouten, S, Damste, JSS, Vogel, J, Hofmann, P and Wagner, T (2008) Isotopic evidence for glaciation during the cretaceous supergreenhouse. Science, 319(5860). 189-192. doi:10.1126/science.1148777 PANGAEA Supplementary Data

Bornemann, A, Norris, RD, Lyman, JA, D'haenens, S, Groeneveld, J, Röhl, U, Farley, KA and Speijer, RP (2014) Persistent environmental change after the Paleocene–Eocene Thermal Maximum in the eastern North Atlantic. Earth and Planetary Science Letters, 394. 70-81. doi:10.1016/j.epsl.2014.03.017 PANGAEA Supplementary Data

Boulila, S, Vahlenkamp, M, De Vleeschouwer, D, Laskar, J, Yamamoto, Y, Pälike, H, Kirtland Turner, S, Sexton, PF, Westerhold, T and Röhl, U (2018) Towards a robust and consistent middle Eocene astronomical timescale. Earth and Planetary Science Letters, 486. 94-107. doi:10.1016/j.epsl.2018.01.003

Bowden, SA, Mohamed, AY, Edilbi, ANF, Lin, YS, Morono, Y, Hinrichs, KU and Inagaki, F (2019) Modelling the Shimokita deep coalbed biosphere over deep geological time: Starvation, stimulation, material balance and population models. Basin Research. doi:10.1111/bre.12399

Bowen, GJ, Maibauer, BJ, Kraus, MJ, Röhl, U, Westerhold, T, Steimke, A, Gingerich, PD, Wing, SL and Clyde, WC (2014) Two massive, rapid releases of carbon during the onset of the Palaeocene–Eocene thermal maximum. Nature Geoscience, 8(1). 44-47. doi:10.1038/ngeo2316 PANGAEA Supplementary Data

Brachert, TC, Agnini, C, Gagnaison, C, Gély, JP, Henehan, MJ and Westerhold, T (2023) Astronomical pacing of middle Eocene sea‐level fluctuations: Inferences from shallow‐water carbonate ramp deposits. Paleoceanography and Paleoclimatology, 38(11). doi:10.1029/2023PA004633

Bralower, TJ, Premoli Silva, I and Malone, MJ (2006) Leg 198 Synthesis: A remarkable 120-m.y. record of climate and oceanography from Shatsky Rise, northwest Pacific Ocean. In: Bralower, TJ, Premoli Silva, I and Malone, MJ (eds.) Proceedings of the Ocean Drilling Program. Scientific Results, 198. College Station, TX (Ocean Drilling Program), 1-47. doi:10.2973/odp.proc.sr.198.101.2006

Brenner, LD, Linsley, BK, Webster, JM, Potts, D, Felis, T, Gagan, MK, Inoue, M, McGregor, H, Suzuki, A, Tudhope, A, Esat, T, Thomas, A, Thompson, W, Fallon, S, Humblet, M, Tiwari, M and Yokoyama, Y (2020) Coral record of Younger Dryas Chronozone warmth on the Great Barrier Reef. Paleoceanography and Paleoclimatology. doi:10.1029/2020PA003962

Brodsky, EE, Mori, JJ, Anderson, L, Chester, FM, Conin, M, Dunham, EM, Eguchi, N, Fulton, PM, Hino, R, Hirose, T, Ikari, MJ, Ishikawa, T, Jeppson, T, Kano, Y, Kirkpatrick, J, Kodaira, S, Lin, W, Nakamura, Y, Rabinowitz, HS, Regalla, C, Remitti, F, Rowe, C, Saffer, DM, Saito, S, Sample, J, Sanada, Y, Savage, HM, Sun, T, Toczko, S, Ujiie, K, Wolfson-Schwehr, M and Yang, T (2020) The state of stress on the fault before, during, and after a major earthquake. Annual Review of Earth and Planetary Sciences, 48(1). 49-74. doi:10.1146/annurev-earth-053018-060507

Böttcher, ME, Ferdelman, TG, Jørgensen, BB, Blake, RE, Surkov, AV and Claypool, GE (2006) Sulfur isotope fractionation by the deep biosphere within sediments of the Eastern Equatorial Pacific and Peru Margin. In: Jørgensen, BB, d'Hondt, SL and Miller, D (eds.) Proceedings of the Ocean Drilling Program. Scientific Results, 201. College Station, TX (Ocean Drilling Program), 1-21. doi:10.2973/odp.proc.sr.201.109.2006 PANGAEA Supplementary Data

C

Camoin, G, Eguchi, N and IODP3 Planning Group (incl. Ulla Röhl) (2024) The International Ocean Drilling Programme (IODP3). Scientific Drilling, 33(1). 89-92. doi:10.5194/sd-33-89-2024

Camoin, G, Iryu, Y, McInroy, D and IODP Expedition 310 Scientists (2007) IODP Expedition 310 Reconstructs Sea Level, Climatic, and Environmental Changes in the South Pacific during the Last Deglaciation. Scientific Drilling, 5. 4-12. doi:10.2204/iodp.sd.5.01.2007

Cappelli, C, Bown, PR, Westerhold, T, Bohaty, SM, Riu, M, Lobba, V, Yamamoto, Y and Agnini, C (2019) The early to middle Eocene transition: An integrated calcareous nannofossil and stable isotope record from the Northwest Atlantic Ocean (Integrated Ocean Drilling Program Site U1410). Paleoceanography and Paleoclimatology, 34. doi:10.1029/2019PA003686

Channell, JET, Hodell, DA, Romero, OE, Hillaire-Marcel, C, de Vernal, A, Stoner, JS, Mazaud, A and Röhl, U (2012) A 750-kyr detrital-layer stratigraphy for the North Atlantic (IODP Sites U1302-U1303, Orphan Knoll, Labrador Sea). Earth and Planetary Science Letters, 317-31. 218-230. doi:10.1016/j.epsl.2011.11.029 PANGAEA Supplementary Data

Christensen, BA, Renema, W, Henderiks, J, De Vleeschouwer, D, Groeneveld, J, Castañeda, IS, Reuning, L, Bogus, K, Auer, G, Ishiwa, T, McHugh, CM, Gallagher, SJ, Fulthorpe, CS and Expedition 356 Scientists (2017) Indonesian Throughflow drove Australian climate from humid Pliocene to arid Pleistocene. Geophysical Research Letters, 44(13). 6914-6925. doi:10.1002/2017GL072977 PANGAEA Supplementary Data

Clift, PD, Hodges, KV, Heslop, D, Hannigan, R, Van Long, H and Calves, G (2008) Correlation of Himalayan exhumation rates and Asian monsoon intensity. Nature Geoscience, 1. 875-880. doi:10.1038/ngeo351

Clift, PD, Najman, YMR, Layne, GD, Kopf, AJ, Shimizu, N and Hunt, J (2003) Temporal evolution of boron flux in the Honshu and Izu Arcs measured by ion microprobe from the forearc tephra record. Journal of Petrology, 14(7). 1211-1236. doi:10.1093/petrology/44.7.1211

Clotten, C, Stein, R, Fahl, K, Schreck, M, Risebrobakken, B and De Schepper, S (2019) On the causes of Arctic sea ice in the warm Early Pliocene. Scientific Reports, 9(1). doi:10.1038/s41598-018-37047-y PANGAEA Supplementary Data

Coffey, GL, Savage, HM, Polissar, PJ, Meneghini, F, Ikari, MJ, Fagereng, A, Morgan, JK and Wang, M (2021) Evidence of seismic slip on a large splay fault in the Hikurangi subduction zone. Geochemistry, Geophysics, Geosystems, 22(8). doi:10.1029/2021GC009638

Collins, JA, Govin, A, Mulitza, S, Heslop, D, Zabel, M, Hartmann, J, Röhl, U and Wefer, G (2013) Abrupt shifts of the Sahara-Sahel boundary during Heinrich Stadials. Climate of the Past , 9. 1181-1191. doi:10.5194/cp-9-1181-2013 PANGAEA Supplementary Data

Contreras, S, Lange, CB, Pantoja, S, Lavik, G, Rincón-Martínez, D and Kuypers, MMM (2010) A rainy northern Atacama Desert during the last interglacial. Geophysical Research Letters, 37. L23612. doi:10.1029/2010GL045728

Conze, R, Krysiak, F, Reed, J, Chen, YC, Wallrabe-Adams, HJ, Graham, C, New Jersey Shallow Shelf Science Team, Wennrich, V and Lake El'gygytgyn Science Team (2010) New Integrated Data Analyses Software Components. Scientific Drilling, 9. 30-31. doi:10.2204/iodp.sd.9.08.2010

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Zachos, JC, McCarren, HK, Murphy, B, Röhl, U and Westerhold, T (2010) Tempo and scale of late Paleocene and early Eocene carbon isotope cycles: Implications for the origin of hyperthermals. Earth and Planetary Science Letters, 299(1-2). 242-249. doi:10.1016/j.epsl.2010.09.004 PANGAEA Supplementary Data

Zachos, JC, Röhl, U, Schellenberg, SA, Sluijs, A, Hodell, DA, Kelly, DC, Thomas, E, Nicolo, MJ, Raffi, I, Lourens, LJ, McCarren, H and Kroon, D (2005) Rapid Acidification of the Ocean During the Paleocene-Eocene Thermal Maximum. Science, 308(5728). 1611-1615. doi:10.1126/science.1109004 PANGAEA Supplementary Data

Zeeden, C, Hilgen, F, Röhl, U, Seelos, K and Lourens, L (2015) Sediment color as a tool in cyclostratigraphy - a new application for improved data acquisition and correction from drill cores. Newsletter on Stratigraphy, 48(3). 277-285. doi:10.1127/nos/2015/0064 PANGAEA Supplementary Data

Zeeden, C, Hilgen, FJ, Westerhold, T, Lourens, LJ, Röhl, U and Bickert, T (2013) Revised Miocene splice, astronomical tuning and calcareous plankton biochronology of ODP Site 926 between 5 and 14.4 Ma. Palaeogeography, Palaeoclimatology, Palaeoecology, 369. 430-451. doi:10.1016/j.palaeo.2012.11.009 PANGAEA Supplementary Data

Zhang, J, Hüpers, A, Kreiter, S and Kopf, AJ (2021) Pore pressure regime and fluid flow processes in the shallow Nankai Trugh subduction zone based on experimental and modeling results from IODP Site C0023. Journal of Geophysical Research: Solid Earth, 126(2). doi:10.1029/2020JB020248

Zhao, M, Dupont, LM, Eglinton, G and Teece, M (2003) n-Alkane and pollen reconstruction of terrestrial climate and vegetation for N.W. Africa over the last 160 kyr. Organic Geochemistry, 34(1). 131-143. doi:10.1016/S0146-6380(02)00142-0

Ziebis, W, McManus, J, Ferdelman, TG, Schmidt-Schierhorn, F, Bach, W, Muratli, JM, Edwards, KJ and Villinger, H (2012) Interstitial fluid chemistry of sediments underlying the North Atlantic gyre and the influence of subsurface fluid flow. Earth and Planetary Science Letters, 323. 79-91. doi:10.1016/j.epsl.2012.01.018

Zühlsdorff, L, Hutnak, M, Fisher, AT, Spiess, V, Davis, EE, Nedimovic, M, Carbotte, S, Villinger, H and Becker, K (2005) Site surveys related to IODP Expedition 301: ImageFlux (SO149) and RetroFlux (TN116) expeditions and earlier studies. In: Fisher, AT, Urabe, T, Klaus and Expedition 301 Scientists (eds.) Proceedings of the Integrated Ocean Drilling Program. Integrated Ocean Drilling Program Management International, Inc, 1-48. doi:10.2204/iodp.proc.301.102.2005

Zühlsdorff, L and Spieß, V (2006) Sedimentation patterns, folding, and fluid upflow above a burried basement ridge: Results from 2-D and 3-D seismic surveys at the eastern Juan de Fuca Ridge flank. Geophysical Research Letters, 111. B08103. doi:10.1029/2004JB003227

Zühlsdorff, L and Spieß, V (2004) Three-dimensional seismic characterization of a venting site reveals compelling indications of natural hydraulic fracturing. Geology, 32(2). 101-104. doi:10.1130/G19993.1

This list was generated on Sun Dec 22 22:49:05 2024 CET.