Angus Atkinson

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  1. Kane, MK; Atkinson, A; Menden-Deuer, S. 2021 Lowered cameras reveal hidden behaviors of Antarctic krill. Current Biology, 31 (5). R237-R238. https://doi.org/10.1016/j.cub.2021.01.091

  2. Uriarte, I; Villate, F; Iriarte, A; Fanjul, A; Atkinson, A; Cook, K. 2021 Corrigendum to: Opposite phenological responses of zooplankton to climate along a latitudinal gradient through the European Shelf. ICES Journal of Marine Science. https://doi.org/10.1093/icesjms/fsab110

  3. Perry, FA; Kawaguchi, S; Atkinson, A; Sailley, SF; Tarling, GA; Mayor, DJ; Lucas, CH; King, R; Cooper, A. 2020 Temperature–Induced Hatch Failure and Nauplii Malformation in Antarctic Krill. Frontiers in Marine Science, 7. https://doi.org/10.3389/fmars.2020.00501

  4. Bedford, J; Ostle, C; Johns, DG; Atkinson, A; Best, M; Bresnan, E; Machairopoulou, M; Graves, CA; Devlin, M; Milligan, AJ; Pitois, SG; Mellor, A; Tett, P; McQuatters‐Gollop, A. 2020 Lifeform indicators reveal large‐scale shifts in plankton across the North‐West European shelf. Global Change Biology, 26 (6). 3482-3497. https://doi.org/10.1111/gcb.15066

  5. Samplonius, JM; Atkinson, A; Hassall, C; Keogan, K; Thackeray, SJ; Assmann, JJ; Burgess, MD; Johansson, J; Macphie, KH; Pearce-Higgins, JW; Simmonds, EG; Varpe, Ø; Weir, JC; Childs, DZ; Cole, EF; Daunt, F; Hart, T; Lewis, OT; Pettorelli, N; Sheldon, BC; Phillimore, AB. 2020 Strengthening the evidence base for temperature-mediated phenological asynchrony and its impacts. Nature Ecology & Evolution, 5 (2). 155-164. https://doi.org/10.1038/s41559-020-01357-0

  6. Yang, G; Atkinson, A; Hill, SL; Guglielmo, L; Granata, A; Li, C. 2020 Changing circumpolar distributions and isoscapes of Antarctic krill: Indo‐Pacific habitat refuges counter long‐term degradation of the Atlantic sector. Limnology and Oceanography, 66 (1). 272-287. https://doi.org/10.1002/lno.11603

  7. Kohlbach, D; Schmidt, K; Hop, H; Wold, A; Al-Habahbeh, AK; Belt, ST; Woll, M; Graeve, M; Smik, L; Atkinson, A; Assmy, P. 2021 Winter Carnivory and Diapause Counteract the Reliance on Ice Algae by Barents Sea Zooplankton. Frontiers in Marine Science, 8. https://doi.org/10.3389/fmars.2021.640050

  8. Kohlbach, D; Hop, H; Wold, A; Schmidt, K; Smik, L; Belt, ST; Keck Al-Habahbeh, A; Woll, M; Graeve, M; Dąbrowska, AM; Tatarek, A; Atkinson, A; Assmy, P. 2021 Multiple Trophic Markers Trace Dietary Carbon Sources in Barents Sea Zooplankton During Late Summer. Frontiers in Marine Science, 7. https://doi.org/10.3389/fmars.2020.610248

  9. Edwards, M; Helaouët, P; Goberville, E; Lindley, A; Tarling, GA; Burrows, MT; Atkinson, A. 2021 North Atlantic warming over six decades drives decreases in krill abundance with no associated range shift. Communications Biology, 4 (1). https://doi.org/10.1038/s42003-021-02159-1

  10. Meyer, B; Atkinson, A; Bernard, KS; Brierley, AS; Driscoll, R; Hill, SL; Marschoff, E; Maschette, D; Perry, FA; Reiss, CS; Rombolá, E; Tarling, GA; Thorpe, SE; Trathan, PN; Zhu, G; Kawaguchi, S. 2020 Successful ecosystem-based management of Antarctic krill should address uncertainties in krill recruitment, behaviour and ecological adaptation. Communications Earth & Environment, 1 (1). https://doi.org/10.1038/s43247-020-00026-1