National Oceanic and
Atmospheric Administration
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Search Results:
1968 to Present
Abstract contains all words: SEABIRDS BERING SEA

Cont. #: 1546
Bailey, K.M., S.A. Macklin, R.K. Reed, R.D. Brodeur, W.J. Ingraham, J.F. Piatt, M. Shima, R.C. Francis, P.J. Anderson, T.C. Royer, A.B. Hollowed, D.A. Somerton, and W.S. Wooster (1995): The 1991–93 ENSO event in the northern Gulf of Alaska and its effects on selected marine fisheries. In ENSO Effects on Fisheries in Gulf of Alaska, CalCOFI Report, 36, 78–96.
Cont. #: 3907
Day, R.H., T.J. Weingartner, R.R. Hopcroft, L.A.M. Aerts, A.L. Blanchard, A.E. Gall, B.J. Gallaway, D.E. Hannay, B.A. Holladay, J.T. Mathis, B.L. Norcross, J.M. Questel, and S.S. Wisdom (2013): The offshore northeastern Chukchi Sea, Alaska: A complex high-latitude ecosystem. Cont. Shelf Res., 67, 147–165, doi: 10.1016/j.csr.2013.02.002.
Cont. #: 4666
Hunt, Jr., G.L., M. Renner, K.J. Kuletz, S. Salo, L. Eisner, P. Ressler, C. Ladd, and J.A. Santora (2018): Timing of sea-ice-retreat affects the distribution of seabirds and their prey in the southeastern Bering Sea. Mar. Ecol. Prog. Ser., 593, 209–230, doi: 10.3354/meps12383.
Cont. #: 2247
Hunt, Jr., G.L., P. Stabeno, G. Walters, E. Sinclair, R.D. Brodeur, J.M. Napp, and N.A. Bond (2002): Climate change and control of the southeastern Bering Sea pelagic ecosystem. Deep-Sea Res. Pt. II, 49(26), 5821–5853, doi: 10.1016/S0967-0645(02)00321-1.
Cont. #: 586
Kinder, T.H., G.L. Hunt, Jr., D. Schneider, and J.D. Schumacher (1983): Correlations between seabirds and oceanic fronts around the Pribilof Islands, Alaska. Estuar. Coast. Shelf Sci., 16(3), 309–319, doi: 10.1016/0272-7714(83)90148-8.
Cont. #: 5097
Ladd, C., S.W. Bell, D.G. Kimmel, C.W. Mordy, P.J. Stabeno, and S. Stalin (2020): Eddy-like features near St. Matthew Island, Eastern Bering Sea Shelf: Observations from the Oculus Coastal Glider. Geophys. Res. Lett., 47(23), e2020GL089873, doi: 10.1029/2020GL089873, View online.
Cont. #: 2655
Ladd, C., J. Jahncke, G.L. Hunt, Jr., K.O. Coyle, and P.J. Stabeno (2005): Hydrographic features and seabird foraging in Aleutian Passes. Fish. Oceanogr., 14(Suppl. 1), 178–195, doi: 10.1111/j.1365-2419.2005.00374.x.
Cont. #: 5295
Logerwell, E., M. Wang, L. Jorgensen, and K. Rand (2022): Winners and losers in a warming Arctic: Potential habitat gain and loss for epibenthic invertebrates of the Chukchi and Bering Seas. Deep-Sea Res. II, 206, 105210, doi: 10.1016/j.dsr2.2022.105210, View online at Elsevier (external link).
Cont. #: 4465
Renner, M., S. Salo, L.B. Eisner, P.H. Ressler, C. Ladd, K.J. Kuletz, J.A. Santora, J.F. Piatt, G.S. Drew, and G.L. Hunt, Jr. (2016): Timing of ice retreat alters seabird abundances and distributions in the southeast Bering Sea. Biol. Lett., 12(9), 20160276, doi: 10.1098/rsbl.2016.0276.
Cont. #: 4656
Santora, J.A., L.B. Eisner, K.J. Kuletz, C. Ladd, M. Renner, and G.L. Hunt, Jr. (2018): Biogeography of seabirds within a high-latitude ecosystem: Use of a data-assimilative ocean model to assess impacts of mesoscale oceanography. J. Mar. Syst., 178, 38–51, doi: 10.1016/j.jmarsys.2017.10.006.
Cont. #: 4440
Sigler, M.F., F.J. Mueter, B.A. Bluhm, M.S. Busby, E.D. Cokelet, S.L. Danielson, A. De Robertis, L.B. Eisner, E.V. Farley, K. Iken, K.J. Kuletz, R.R. Lauth, E.A. Logerwell, and A.I. Pinchuk (2017): Late summer zoogeography of the northern Bering and Chukchi seas. Deep-Sea Res. II, 135, Arctic Ecosystem Integrated Survey (Arctic EIS): Marine ecosystem dynamics in the rapidly changing Pacific Arctic Gateway, 168–189, doi: 10.1016/j.dsr2.2016.03.005, Available online.
Cont. #: 2040
Stabeno, P.J., N.A. Bond, N.B. Kachel, S.A. Salo, and J.D. Schumacher (2001): On the temporal variability of the physical environment over the south-eastern Bering Sea. Fish. Oceanogr., 10(1), 81–98, doi: 10.1046/j.1365-2419.2001.00157.x.
Cont. #: 3656
Stabeno, P.J., E. Farley, N. Kachel, S. Moore, C. Mordy, J.M. Napp, J.E. Overland, A.I. Pinchuk, and M.F. Sigler (2012): A comparison of the physics of the northern and southern shelves of the eastern Bering Sea and some implications for the ecosystem. Deep-Sea Res. II, 65–70, 14–30, doi: 10.1016/j.dsr2.2012.02.019.
Cont. #: 5223
Thorson, J.T., M.L. Arimitsu, L.A.K. Barnett, W. Cheng, L.B. Eisner, A.C. Haynie, A.J. Hermann, K. Holsman, D.G. Kimmel, M.W. Lomas, J. Richar, and E.C. Siddon (2021): Forecasting community reassembly using climate‐linked spatio‐temporal ecosystem models. Ecography, doi: 10.1111/ecog.05471, View online (open access).
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