N: -60 S: -90 E: 180 W: -180
Description
This data set, part of the NASA Making Earth System Data Records for Use in Research Environments (MEaSUREs) Program, provides the first comprehensive, high-resolution, digital mosaics of ice motion in Antarctica assembled from multiple satellite interferometric, synthetic-aperture radar systems. Data were largely acquired during the International Polar Years 2007 to 2009, as well as between 2013 and 2016. Additional data acquired between 1996 and 2016 were used as needed to maximize coverage.
See <a href="https://nsidc.org/data/measures/aiv">Antarctic Ice Sheet Velocity and Mapping Data</a> for related data.
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Citation
Citation is critically important for dataset documentation and discovery. This dataset is openly shared, without restriction, in accordance with the EOSDIS Data Use and Citation Guidance.
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GENERAL DOCUMENTATION
Publications Citing This Dataset
| Title | Year Sort ascending | Author | Topic |
|---|---|---|---|
| Brief communication: Updated grounding line mapping in the Amundsen Sea Embayment, Antarctica, from one day repeat Sentinel-1 SAR data | Andersen, Jonas K., Millan, Romain, Rignot, Eric, Gimenes, Lucille, Scheuchl, Bernd, Barre, Jean Baptiste, Bjrk, Anders A. | Grounding Line, Ice Velocity | |
| Distinct Seasonal Flow Pattern of Byrd Glacier, East Antarctica | Yang, Tian, Liang, Qi, Howat, Ian, Pang, Ao, Li, Teng, Zheng, Lei, Cheng, Xiao | Ice Velocity | |
| Correlation analysis between Antarctic ice shelf calving and basal melting during 20102020 | Liu, Mingliang, Wang, Zemin, Zhang, Baojun, Geng, Hong, Li, Qian, An, Jiachun | Ice Velocity | |
| Quantifying temperature-sliding inconsistency in thermomechanical coupling: a comparative analysis of geothermal heat flux datasets at Totten Glacier | Wang, Junshun, Zhao, Liyun, Wolovick, Michael, Moore, John C. | Basins, Coastline, Grounding Line, Ice Shelves, Ice Velocity | |
| Airborne and Spaceborne Mapping and Analysis of the Subglacial Lake D2 in David Glacier, Terra Nova Bay, Antarctica | Ju, Hyeontae, Kang, SeungGoo, Han, Hyangsun, Beem, Lucas H., Ng, Gregory, Chan, Kristian, Kim, Taewook, Lee, Joohan, Lee, Jongik, Kim, Yeadong, Pyun, Sukjoon | Ice Velocity | |
| An alternative representation of Synthetic Aperture Radar images as an aid to the interpretation of englacial observations | Arenas-Pingarron, Alvaro, Brisbourne, Alex M., Martin, Carlos, Corr, Hugh F. J., Robinson, Carl, Jordan, Tom A., Brennan, Paul V. | Ice Velocity | |
| A synthesis of the basal thermal state of the Antarctic ice sheet | Seiner, Owen, Hugney, Anna, Seroussi, Helene, MacGregor, Joseph A | Ice Velocity | |
| Assessing the suitability of sites near Pine Island Glacier for subglacial bedrock drilling aimed at detecting Holocene retreatreadvance | Johnson, Joanne S., Woodward, John, Nesbitt, Ian, Winter, Kate, Campbell, Seth, Nichols, Keir A., Venturelli, Ryan A., Braddock, Scott, Goehring, Brent M., Hall, Brenda, Rood, Dylan H., Balco, Greg | Ice Velocity, Grounding Line | |
| Assessing the sensitivity of the Vanderford Glacier, East Antarctica, to basal melt and calving | Bird, Lawrence A., McCormack, Felicity S., Beckmann, Johanna, Jones, Richard S., Mackintosh, Andrew N. | Ice Velocity, Basins, Coastline, Grounding Line, Ice Shelves, Firn Air Content, Ice Depth/Thickness, Ice Growth/Melt, Mass Balance | |
| Can we use springtails to improve our understanding of Antarctic Ice Sheet history? A case study from Dronning Maud Land | Cooper, Emma-Louise, Stevens, Mark I., Jones, Richard S., Mackintosh, Andrew N. | Ice Velocity | |
| Antarctic grounding line delineation from the Italian Space Agency COSMO-SkyMed DInSAR data | Ross, Natalya, Milillo, Pietro, Dini, Luigi | Ice Velocity | |
| Wave erosion, frontal bending, and calving at Ross Ice Shelf | Sartore, Nicolas B., Wagner, Till J. W., Siegfried, Matthew R., Pujara, Nimish, Zoet, Lucas K. | Ice Velocity, Glacier Elevation/Ice Sheet Elevation, Glacier Topography/Ice Sheet Topography, Ice Sheets, Reflectance, Sea Surface Temperature | |
| Investigating the dynamic history of a promontory ice rise using radar data | Ershadi, M. Reza, Drews, Reinhard, Tison, Jean-Louis, Martin, Carlos, Henry, A. Clara J., Oraschewski, Falk Marius, Tsibulskaya, Veronica, Sun, Sainan, Wauthy, Sarah, Koch, Inka, Bons, Paul Dirk, Eisen, Olaf, Pattyn, Frank | Ice Velocity | |
| Glacial geology of the Hudson Mountains, Amundsen Sea sector, West Antarctica | Johnson, Joanne S., Nichols, Keir A., Riley, Teal R., Venturelli, Ryan A., Hodgson, Dominic A., Balco, Greg, Hall, Brenda, Smith, James A., Woodward, John | Ice Velocity, Grounding Line | |
| Importance of ice elasticity in simulating tide-induced grounding line variations along prograde bed slopes | Ross, Natalya, Milillo, Pietro, Nakshatrala, Kalyana, Ballarini, Roberto, Stubblefield, Aaron, Dini, Luigi | Ice Velocity, Grounding Line | |
| Improved basal drag of the West Antarctic Ice Sheet from L-curve analysis of inverse models utilizing subglacial hydrology simulations | Hoyns, Lea-Sophie, Kleiner, Thomas, Rademacher, Andreas, Ruckamp, Martin, Wolovick, Michael, Humbert, Angelika | Ice Velocity | |
| Increasing the GlenNye powerlaw exponent accelerates iceloss projections for the Amundsen Sea Embayment, West Antarctica | Getraer, Benjamin, Morlighem, Mathieu | Ice Velocity | |
| Improving Projections of Antarctic Ice Sheet Contribution to Sea-Level Change Through 2300 by Capturing Gravitational, Rotational, and Deformational Effects | Han, Holly K., Hoffman, Matthew, AsayDavis, Xylar, Hillebrand, Trevor R., Perego, Mauro | Ice Velocity | |
| Evidence that seismic anisotropy captures upstream palaeo-ice fabric: Implications on present-day deformation at Whillans Ice Stream, Antarctica | Leung, Justin, Hudson, Thomas Samuel, Kendall, John-Michael, Barcheck, Grace | Ice Velocity | |
| Decadal Migration Of Dome C Inferred By Global Navigation Satellite System Measurements | Vittuari, L., Zanutta, A., Gandolfi, S., Martelli, L., Ritz, C., Urbini, S., Frezzotti, M. | Ice Velocity | |
| Estimating marine ice thickness beneath the Amery Ice Shelf from airborne radio-echo sounding | Wang, Lijuan, Tang, Xueyuan, Guo, Jingxue, Qiao, Gang, An, Lu, Li, Lin, Greenbaum, Jamin S., Hulbe, Christina, Habbal, Feras A., Jong, Lenneke M., van Ommen, Tas, Roberts, Jason L., Young, Duncan A., Blankenship, Donald D., Sun, Bo | Ice Velocity, Basins, Coastline, Grounding Line, Ice Shelves, Glacier Elevation/Ice Sheet Elevation, Ice Depth/Thickness, Ice Depth/Thickness, Sea Ice Elevation, Terrain Elevation, Bed Elevation | |
| Damage intensity increases ice mass loss from Thwaites Glacier, Antarctica | Li, Yanjun, Coulon, Violaine, Blasco, Javier, Qiao, Gang, Yang, Qinghua, Pattyn, Frank | Ice Velocity | |
| Predicting the ThreeDimensional Stratigraphy of an Ice Rise | Henry, A. C. J., Schannwell, C., Visnjevic, V., Millstein, J., Bons, P. D., Eisen, O., Drews, R. | Ice Velocity | |
| Modelling GNSS-observed seasonal velocity changes of the Ross Ice Shelf, Antarctica, using the Ice-sheet and Sea-level System Model (ISSM) | Baldacchino, Francesca, Golledge, Nicholas R., Morlighem, Mathieu, Horgan, Huw, Alevropoulos-Borrill, Alanna V., Malyarenko, Alena, Gossart, Alexandra, Lowry, Daniel P., van Haastrecht, Laurine | Ice Velocity | |
| Mapping the paleo ice-flow in Larsemann Hills, East Antarctica by UAV remote sensing and terrain analysis | Li, Yibo, Li, Teng, Zhang, Baogang, Zhao, Tiancheng, Zheng, Lei, Liang, Qi, Cheng, Xiao, Hu, Jianmin | Ice Velocity, Grounding Line |