IODP Expedition 323 – Pliocene and Pleistocene Paleoceanographic Changes in the Bering Sea
K. Takahashi
Department of Earth & Planetary Sciences, Graduate School of Sciences, Kyushu University, Hakozaki 6-10-1, Higashi-ku, Fukuoka 812-8581, Japan
A. C. Ravelo
Ocean Sciences Department, University of California, 1156 High Street, Santa Cruz, CA 95064, USA
C. Alvarez Zarikian
Integrated Ocean Drilling Program & Department of Oceanography, Texas A&M University, 1000 Discovery Drive, College Station, TX 77845-9547, USA
the IODP Expedition 323 Scientists
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Cited
32 citations as recorded by crossref.
- Relationship between δ 15 N values of bulk sediments and total organic carbon concentration in response to orbital-scale biogenic opal production in the Bering slope area over the last 600 kyrs S. Kim et al. 10.1016/j.quaint.2017.05.041
- Pliocene and Pleistocene paleoceanography in the western subarctic Pacific based on diatom analyses of ODP Leg 145 Hole 884B and IODP Expedition 323 Holes U1341B and U1343E Y. Kato et al. 10.1016/j.dsr2.2015.04.004
- A Pliocene to recent history of the Bering Sea at Site U1340A, IODP Expedition 323 Z. Stroynowski et al. 10.1002/2015PA002866
- Early Pleistocene climate-induced erosion of the Alaska Range formed the Nenana Gravel R. Sortor et al. 10.1130/G49094.1
- Pliocene Warmth, Polar Amplification, and Stepped Pleistocene Cooling Recorded in NE Arctic Russia J. Brigham-Grette et al. 10.1126/science.1233137
- Low-Temperature Clay Mineral Dehydration Contributes to Porewater Dilution in Bering Sea Slope Subseafloor A. Ijiri et al. 10.3389/feart.2018.00036
- Multiple tropical Andean glaciations during a period of late Pliocene warmth N. Roberts et al. 10.1038/srep41878
- Short term memory efficient pore pressure prediction via Bayesian neural networks at Bering Sea slope of IODP expedition 323 M. Karmakar & S. Maiti 10.1016/j.measurement.2018.12.034
- The contribution of water radiolysis to marine sedimentary life J. Sauvage et al. 10.1038/s41467-021-21218-z
- Diatom, silicoflagellate and ebridian biostratigraphy and paleoceanography in IODP 323 Hole U1343E at the Bering slope site A. Teraishi et al. 10.1016/j.dsr2.2013.03.026
- A global synthesis of the marine and terrestrial evidence for glaciation during the Pliocene Epoch S. De Schepper et al. 10.1016/j.earscirev.2014.04.003
- Paleoproductivity and paleoceanography of the last 4.3 Myrs at IODP Expedition 323 Site U1341 in the Bering Sea based on biogenic opal content S. Iwasaki et al. 10.1016/j.dsr2.2015.04.005
- Mineralogical, geochemical and isotopic characterization of authigenic carbonates from the methane-bearing sediments of the Bering Sea continental margin (IODP Expedition 323, Sites U1343–U1345) C. Pierre et al. 10.1016/j.dsr2.2014.03.011
- Next-generation sequencing and metabarcoding to understand the ecology of benthic foraminiferal community in the Bering Sea H. Li et al. 10.1016/j.seares.2022.102321
- Authigenic Nd isotope record of North Pacific Intermediate Water formation and boundary exchange on the Bering Slope K. Jang et al. 10.1016/j.quascirev.2016.11.032
- Pliocene and Pleistocene chronostratigraphy of continental sediments underlying the Altiplano at La Paz, Bolivia N. Roberts et al. 10.1016/j.quascirev.2018.03.008
- Reconstruction of Nitrate Utilization Rate Change Based on Diatom-bound Nitrogen Isotope Values in the Central Slope Area of the Bering Sea during the Early Pleistocene (2.4-1.25 Ma) S. Kim & B. Khim 10.4217/OPR.2016.38.3.195
- Biogenic opal production changes during the Mid-Pleistocene Transition in the Bering Sea (IODP Expedition 323 Site U1343) S. Kim et al. 10.1016/j.yqres.2013.10.001
- Paleoceanography of the Bering Sea advanced by IODP Expedition 323: H. Asahi et al. 10.5575/geosoc.2017.0066
- Introduction to Pliocene–Pleistocene paleoceanography of the Bering Sea K. Takahashi et al. 10.1016/j.dsr2.2016.03.001
- Rare earth element cycling in the pore waters of the Bering Sea Slope (IODP Exp. 323) T. Soyol-Erdene & Y. Huh 10.1016/j.chemgeo.2013.08.047
- Shear strength characteristics of marine sediments: the influences of lithofacies and sedimentological environment A. Hussein et al. 10.1007/s11001-024-09545-4
- Archaeal lipids reveal climate‐driven changes in microbial ecology at Lake El'gygytgyn (Far East Russia) during the Plio‐Pleistocene W. Daniels et al. 10.1002/jqs.3347
- New late Cenozoic acritarchs: evolution, palaeoecology and correlation potential in high latitude oceans S. De Schepper & M. Head 10.1080/14772019.2013.783883
- Pliocene and Early Pleistocene glaciation and landscape evolution on the Patagonian Steppe, Santa Cruz province, Argentina J. Clague et al. 10.1016/j.quascirev.2019.105992
- Sediment classification using neural networks: An example from the site-U1344A of IODP Expedition 323 in the Bering Sea M. Ojha & S. Maiti 10.1016/j.dsr2.2013.03.024
- Hydrological and temperature change in Arctic Siberia during the intensification of Northern Hemisphere Glaciation B. Keisling et al. 10.1016/j.epsl.2016.09.058
- Late Pliocene to early Pleistocene (2.4–1.25 Ma) paleoproductivity changes in the Bering Sea: IODP expedition 323 Hole U1343E S. Kim et al. 10.1016/j.dsr2.2015.04.003
- Pliocene cooling enhanced by flow of low-salinity Bering Sea water to the Arctic Ocean K. Horikawa et al. 10.1038/ncomms8587
- Changes in biogenic opal productivity with Milankovitch cycles during the last 1.3 Ma at IODP Expedition 323 Sites U1341, U1343, and U1345 in the Bering Sea Y. Kanematsu et al. 10.1016/j.quaint.2013.06.003
- Diatoms, silicoflagellates, and ebridians at Site U1341 on the western slope of Bowers Ridge, IODP Expedition 323 J. Onodera et al. 10.1016/j.dsr2.2013.03.025
- Quantifying K, U, and Th contents of marine sediments using shipboard natural gamma radiation spectra measured on DVJOIDESResolution D. De Vleeschouwer et al. 10.1002/2016GC006715
Latest update: 21 Nov 2024