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Microbial Ecology|June 30, 2009
The impact of simulated sulfate deposition on peatland testate amoebaeRichard Payne, Vincent Gauci, Dan J CharmanThe Science of the Total Environment|June 6, 2022
Seasonal climate drivers of peak NDVI in a series of Arctic peatlandsKatherine A Crichton, Karen Anderson, Dan J Charman, et al.Ecology Letters|October 28, 2021
Low-salinity transitions drive abrupt microbial response to sea-level changeAlex Whittle, Robert L Barnett, Dan J Charman, et al.Current Biology : CB|May 23, 2017
Widespread Biological Response to Rapid Warming on the Antarctic PeninsulaMatthew J Amesbury, Thomas P Roland, Jessica Royles, et al.Current Biology : CB|September 3, 2013
Plants and soil microbes respond to recent warming on the Antarctic PeninsulaJessica Royles, Matthew J Amesbury, Peter Convey, et al.Oecologia|March 23, 2016
Moss stable isotopes (carbon-13, oxygen-18) and testate amoebae reflect environmental inputs and microclimate along a latitudinal gradient on the Antarctic PeninsulaJessica Royles, Matthew J Amesbury, Thomas P Roland, et al.Microbial Ecology|December 12, 2018
Salt-Enrichment Impact on Biomass Production in a Natural Population of Peatland Dwelling Arcellinida and Euglyphida (Testate Amoebae)Alex Whittle, Matthew J Amesbury, Dan J Charman, et al.Protist|September 30, 2017
Taxonomic Implications of Morphological Complexity Within the Testate Amoeba Genus Corythion from the Antarctic PeninsulaThomas P Roland, Matthew J Amesbury, David M Wilkinson, et al.Scientific Reports|April 6, 2016
Solar cycles or random processes? Evaluating solar variability in Holocene climate recordsT Edward Turner, Graeme T Swindles, Dan J Charman, et al.Global Change Biology|February 9, 2016
The influence of vegetation and soil characteristics on active-layer thickness of permafrost soils in boreal forestJames P Fisher, Cristian Estop-Aragonés, Aaron Thierry, et al.Pageof 2