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Environmental Toxicology and Chemistry|March 23, 2019
Sensitivity of a Large and Representative Sample of Antarctic Marine Invertebrates to MetalsBen J Kefford, Catherine K King, Jane Wasley, et al.Marine Pollution Bulletin|January 16, 2007
Biodegradation of petroleum products in experimental plots in Antarctic marine sediments is location dependentShane M Powell, Paul McA Harvey, Jonathan S Stark, et al.Plos Biology|June 18, 2014
Antarctica's protected areas are inadequate, unrepresentative, and at riskJustine D Shaw, Aleks Terauds, Martin J Riddle, et al.Scientific Reports|February 15, 2019
In-situ behavioural and physiological responses of Antarctic microphytobenthos to ocean acidificationJames G Black, Jonathan S Stark, Glenn J Johnstone, et al.Plos One|January 12, 2017
The Roles of Sea-Ice, Light and Sedimentation in Structuring Shallow Antarctic Benthic CommunitiesGraeme F Clark, Jonathan S Stark, Anne S Palmer, et al.Marine Pollution Bulletin|July 28, 2006
Monitoring the remediation of a near shore waste disposal site in Antarctica using the amphipod Paramoera walkeri and diffusive gradients in thin films (DGTs)Jonathan S Stark, Glenn J Johnstone, Anne S Palmer, et al.Marine Pollution Bulletin|October 1, 2010
Contrasting time trends of organic contaminants in Antarctic pelagic and benthic food websNico W van den Brink, Martin J Riddle, Martine van den Heuvel-Greve, et al.Photosynthesis Research|October 26, 2005
An in situ study of photosynthetic oxygen exchange and electron transport rate in the marine macroalga Ulva lactuca (Chlorophyta)Ben J Longstaff, Tim Kildea, John W Runcie, et al.Environmental Toxicology and Chemistry|March 8, 2006
In situ lubricant degradation in Antarctic marine sediments. 1. Short-term changesBelinda A W Thompson, Noel W Davies, Paul M Goldsworthy, et al.Environmental Microbiology|December 4, 2012
Biogeographic partitioning of Southern Ocean microorganisms revealed by metagenomicsDavid Wilkins, Federico M Lauro, Timothy J Williams, et al.Pageof 3