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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.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.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.European Journal of Protistology|April 20, 2020
Quantifying the effect of testate amoeba decomposition on peat-based water-table reconstructionsGraeme T Swindles, Thomas P Roland, Matthew J Amesbury, et al.Global Change Biology|January 22, 2020
Decreased carbon accumulation feedback driven by climate-induced drying of two southern boreal bogs over recent centuriesHui Zhang, Minna Väliranta, Sanna Piilo, et al.European Journal of Protistology|August 20, 2021
The testate amoebae of New Zealand: A checklist, identification key and assessment of biogeographic patternsMichelle M McKeown, Edward A D Mitchell, Matthew J Amesbury, et al.Nature Communications|August 27, 2024
Tropical peat composition may provide a negative feedback on fire occurrence and severityAlastair J Crawford, Claire M Belcher, Stacey New, et al.Scientific Reports|December 10, 2015
The long-term fate of permafrost peatlands under rapid climate warmingGraeme T Swindles, Paul J Morris, Donal Mullan, et al.Global Change Biology|October 22, 2017
Ecosystem state shifts during long-term development of an Amazonian peatlandGraeme T Swindles, Paul J Morris, Bronwen Whitney, et al.Plos One|July 23, 2025
Climate and water-table levels regulate peat accumulation rates across EuropeGraeme T Swindles, Donal J Mullan, Neil T Brannigan, et al.Pageof 1