Antarctic Ecosystem Research following Ice Shelf Collapse and Iceberg Calving Events
Jeroen Ingels(Florida State University), M. Angelica Zamora-Duran(Florida Institute of Technology), Martin Truffer(University of Alaska Fairbanks), Angelika Brandt(Goethe University Frankfurt), Kenneth M. Halanych(University of North Carolina Wilmington), Andrew J. Sweetman(Lancaster University), Emily Dolan(Florida State University), Charlotte Havermans(Institute of Natural Sciences), Michael McCormick(Florida Gulf Coast University), Anton Van de Putte(Université Libre de Bruxelles), Rich Aronson, Spencer E. Fire(Florida Institute of Technology), Brittan V. Steffel(Florida Institute of Technology), Ann Vanreusel(Ghent University), Barbara Shoplock(Florida State University), Lloyd S. Peck(British Antarctic Survey), David J. DeMaster(North Carolina State University), Sven A. Kranz(Florida State University), Holly M. Bik(New York University), Kathryn E. Smith(Marine Biological Association of the United Kingdom), James B. McClintock(University of Alabama at Birmingham), Andrew R. Thurber(University of California, Santa Barbara), Alison E. Murray(Desert Research Institute), Michael R. Stukel(Florida State University), Mattias Cape(University of Washington), Falk Huettmann(University of Alaska Fairbanks), Eugene W. Domack(Hamilton College), B. Greg Mitchell(Scripps Institution of Oceanography), Amy Baco-Taylor, Heidi N. Geisz(Florida State University), James A. Blake(Institute of Zoology), Craig R. Smith(University of Hawaiʻi at Mānoa), Andrew R. Mahon(Central Michigan University), Huw J. Griffiths(British Antarctic Survey), Amy Leventer(Colgate University), Michelle L. Taylor(University of Essex), Alex D. Rogers(Oxford Research Group), Scott E. Ishman(Southern Illinois University Carbondale)
Helmholtz-Zentrum für Polar-und Meeresforschung (Alfred-Wegener-Institut)
April 1, 2018
Cited by 0
Related Papers
Novel methods improve prediction of species’ distributions from occurrence data
|Ecography|2006|9.2k
One-Third of Reef-Building Corals Face Elevated Extinction Risk from Climate Change and Local Impacts
|Science|2008|1.4k
“Sight‐unseen” detection of rare aquatic species using environmental DNA
|Conservation Letters|2011|1.3k
Impacts of soil and water pollution on food safety and health risks in China
|Environment International|2015|1.1k
Critical considerations for the application of environmental <scp>DNA</scp> methods to detect aquatic species
|Methods in Ecology and Evolution|2016|1.1k