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- Fitzer, S.; Bin San Chan, V.; Meng, M.; Rajan, K.C.; Suzuki, M.; Not, C.; Toyofuku, T.; Falkenberg, L.; Byrne, M.; Harvey, B.P.; de Wit, P.; Cusack, M.; Gao, K.S.; Taylor, P.D.; Dupont, S.; Hall-Spencer, J.; Thiyagarajan, V. (2019). Established and emerging techniques for characterising the formation, structure and performance of calcified structures under ocean acidification, in: Hawkins, S.J. et al. Oceanogr. Mar. Biol. Ann. Rev. 57. Oceanography and Marine Biology: An Annual Review, 57: pp. 89-126, meer
- Lam, V.W.Y.; Chavanich, S.; Djoundourian, S.; Dupont, S.; Gaill, F.; Holzer, G.; Isensee, K.; Katua, S.; Mars, F.; Metian, M.; Hall-Spencer, J.M. (2019). Dealing with the effects of ocean acidification on coral reefs in the Indian Ocean and Asia. Regional Studies in Marine Science 28: 100560. https://dx.doi.org/10.1016/j.rsma.2019.100560, meer
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- Arnberg, M.; Calosi, P.; Spicer, J.I.; Taban, I.C.; Bamber, S.D.; Westerlund, S.; Vingen, S.; Baussant, T.; Bechmann, R.K.; Dupont, S. (2018). Effects of oil and global environmental drivers on two keystone marine invertebrates. NPG Scientific Reports 8(1): 9 pp. https://dx.doi.org/10.1038/s41598-018-35623-w, meer
- Bouquet, J.-M.; Troedsson, C.; Novac, A.; Reeve, M.; Lechtenbörger, A.K.; Massart, W.; Skaar, K.S.; Aasjord, A.; Dupont, S.; Thompson, E.M. (2018). Increased fitness of a key appendicularian zooplankton species under warmer, acidified seawater conditions. PLoS One 13(1): e0190625. https://dx.doi.org/10.1371/journal.pone.0190625, meer
- Ventura, A.; Schulz, S.; Dupont, S. (2018). Corrigendum: Maintained larval growth in mussel larvae exposed to acidified under-saturated seawater. NPG Scientific Reports 8: 46999. https://dx.doi.org/10.1038/srep46999, meer
- Sunday, J.M.; Fabricius, K.E.; Kroeker, K.J.; Anderson, K.M.; Brown, N.E.; Barry, J.P.; Connell, S.D.; Dupont, S.; Gaylord, B.; Hall-Spencer, J.M.; Klinger, T.; Milazzo, M.; Munday, P.L.; Russell, B.D.; Sanford, E.; Thiyagarajan, V.; Vaughan, M.L.H.; Widdicombe, S.; Harley, C.D.G. (2017). Ocean acidification can mediate biodiversity shifts by changing biogenic habitat. Nat. Clim. Chang. 7(1): 81-85. https://hdl.handle.net/10.1038/nclimate3161, meer
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- Calosi, P.; De Wit, P.; Thorne, P.; Dupont, S. (2016). Will life find a way? Evolution of marine species under global change. Evol. Appl. 9(9): 1035-1042. https://dx.doi.org/10.1111/eva.12418, meer
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- Dupont, S.; Muller-Karger, F.; Canonico, G.; Schoo, K.L.; Castillo-Briceno, P.; Johnson, M.D.; Widdicombe, S.; Kavousi, J.; Appeltans, W.; Findlay, H.S.; Bellerby, R.G.J.; Isensee, K. (2024). OARS Outcome 4: Increase understanding of ocean acidification impacts to protect marine life by 2030, in: IOC-UNESCO Ocean acidification research for sustainability: A community vision for the Ocean Decade. pp. 37-45, meer
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