| CRUISE ID |
SUMMARY |
START DATE |
START PORT |
END DATE |
END PORT |
| LMG1701 |
Project: Long-Term Ecological Research (LTER) on the Antarctic Marine Ecosystem Chief: Ducklow, Hugh |
2016-12-30 |
Punta Arenas, Chile |
2017-02-10 |
Punta Arenas, Chile |
PROCESSED PRODUCTS |
| DATA TYPE | DEVICE TYPE(S) | PRODUCER | FORMAT | DATA |
| JGOFS |
tsg (SeaBird SBE-45 [#1]), gnss (Garmin 19x), singlebeam (Knudsen 3260 [Depth]), gyrocompass (SGB Meridian), metstation (USAP RVDAS Metstation), acqsys (USAP Winch) |
USAP Marine Operator |
jgofs |
|
| MGDS Navigation |
None |
Marine Geoscience Data System |
mgdsnav |
|
| SAMOS meteorology |
None |
Rolling Deck to Repository |
samos_netcdf |
|
NOTE: Products generated by R2R should be used for evaluation only. Quality of products by other organizations is unknown. Contact R2R with any questions or requests.
|
UNDERWAY DATA SETS |
NOTE: This data set inventory may not be complete. Please Contact R2R with questions or requests.
|
CRUISE DATA AT OTHER SYSTEMS |
|
| Ducklow, Hugh | Scientist, Chief | Lamont-Doherty Earth Observatory |
RELATED DOCS & PUBLICATIONS
- LMG1701: Science Cruise Report (from data distribution)
- LMG1701: Operations Report (at sea calibration data file for sensors)
- Lohmann, A.C. et al., 2023. Cyclical prey shortages for a marine polar predator driven by the interaction of climate change and natural climate variability. Limnology & Oceanography, 68, 12, 2668-2687
. DOI: 10.1002/lno.12453
- Pallin, L. et al., 2022. Demography of an ice-obligate mysticete in a region of rapid environmental change. R. Soc. open sci., 9, 11,
. DOI: 10.1098/rsos.220724
- Gray, P.C. et al., 2019. Drones and convolutional neural networks facilitate automated and accurate cetacean species identification and photogrammetry. Methods Ecol Evol, 10, 9, 1490-1500
. DOI: 10.1111/2041-210x.13246
- Weinstein, B.G. et al., 2017. Dynamic foraging of a top predator in a seasonal polar marine environment. Oecologia, 185, 3, 427-435
. DOI: 10.1007/s00442-017-3949-6
- Brown, M.S. et al., 2019. Enhanced oceanic CO2 uptake along the rapidly changing West Antarctic Peninsula. Nat. Clim. Chang., 9, 9, 678-683
. DOI: 10.1038/s41558-019-0552-3
- Modest, M. et al., 2021. First description of migratory behavior of humpback whales from an Antarctic feeding ground to a tropical calving ground. Anim Biotelemetry, 9, 1,
. DOI: 10.1186/s40317-021-00266-8
- Eveleth, R. et al., 2017. Ice melt influence on summertime net community production along the Western Antarctic Peninsula. Deap Sea Res. Pt. II, 139, , 89-102
. DOI: 10.1016/j.dsr2.2016.07.016
- Weinstein, B.G. et al., 2017. Identifying overlap between humpback whale foraging grounds and the Antarctic krill fishery. Biological Conservation, 210, , 184-191
. DOI: 10.1016/j.biocon.2017.04.014
- Brown, M.S. et al., 2021. Low diversity of a key phytoplankton group along the West Antarctic Peninsula. Limnology & Oceanography, 66, 6, 2470-2480
. DOI: 10.1002/lno.11765
- Ducklow, H. et al., 2022. Marine Pelagic Ecosystem Responses to Climate Variability and Change. BioScience, 72, 9, 827-850
. DOI: 10.1093/biosci/biac050
- Bowman, J.S. et al., 2018. Recurrent seascape units identify key ecological processes along the western Antarctic Peninsula. Global Change Biology, 24, 7, 3065-3078
. DOI: 10.1111/gcb.14161
- Sedwick, P.N. et al., 2022. Seasonal Dynamics of Dissolved Iron on the Antarctic Continental Shelf: Late‐Fall Observations From the Terra Nova Bay and Ross Ice Shelf Polynyas. JGR Oceans, 127, 10,
. DOI: 10.1029/2022jc018999
- Sow, S.L.S. et al., 2025. Spatial and temporal variation of Antarctic microbial interactions: a study around the west Antarctic Peninsula. Environmental Microbiome, 20, 1,
. DOI: 10.1186/s40793-025-00663-z
- Stukel, M.R. et al., 2017. Stirring Up the Biological Pump: Vertical Mixing and Carbon Export in the Southern Ocean. Global Biogeochemical Cycles, 31, 9, 1420-1434
. DOI: 10.1002/2017gb005652
- Stukel, M.R. et al., 2015. The imbalance of new and export production in the western Antarctic Peninsula, a potentially “leaky” ecosystem. Global Biogeochemical Cycles, 29, 9, 1400-1420
. DOI: 10.1002/2015gb005211
- Marcondes, M.C.C. et al., 2021. The Southern Ocean Exchange: porous boundaries between humpback whale breeding populations in southern polar waters. Sci Rep, 11, 1,
. DOI: 10.1038/s41598-021-02612-5
- Rohr, T. et al., 2017. Variability in the mechanisms controlling Southern Ocean phytoplankton bloom phenology in an ocean model and satellite observations. Global Biogeochemical Cycles, 31, 5, 922-940
. DOI: 10.1002/2016gb005615
- Bowman, J.S. et al., 2021. Whole Community Metatranscriptomes and Lipidomes Reveal Diverse Responses Among Antarctic Phytoplankton to Changing Ice Conditions. Front. Mar. Sci., 8, ,
. DOI: 10.3389/fmars.2021.593566
- OPP 14-40435 (LTER Palmer, Antarctica (PAL): Land-Shelf-Ocean Connectivity, Ecosystem Resilience and Transformation in a Sea-Ice Influenced Pelagic Ecosystem)
VESSELS
50
RESEARCH CRUISES
10,067
DATA SETS ARCHIVED
61,100
DOWNLOADABLE FILES
23,573,045
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