| Publicaciones destacadas |
- Fernandes, J. A., Rutterford, L., Simpson, S. D., Butenschön, M., Frölicher, T. L., Yool, A., ... & Grant, A. (2020). Can we project changes in fish abundance and distribution in response to climate?. Global change biology, 26(7), 3891-3905. (https://doi.org/10.1111/gcb.15081)
- Erauskin-Extramiana, M. et al., 2023. Implications for the global tuna fishing industry of climate change-driven alterations in productivity and body sizes. Global and Planetary Change, 104055. (https://doi.org/10.1016/j.gloplacha.2023.104055)
- Chust, G., E. Villarino, M. McLean, N. Mieszkowska, L. Benedetti-Cecchi, F. Bulleri, C. Ravaglioli, A. Borja, I. Muxika, J. A. Fernandes-Salvador, L. Ibaibarriaga, A. Uriarte, M. Revilla, F. Villate, A. Iriarte, I. Uriarte, S. Zervoudaki, J. Carstensen, P. J. Somerfield, A. M. Queirós, A. J. McEvoy, A. Auber, M. Hidalgo, M. Coll, J. Garrabou, D. Gómez-Gras, C. Linares, F. Ramírez, N. Margarit, M. Lepage, C. Dambrine, J. Lobry, M. A. Peck, P. de la Barra, A. van Leeuwen, G. Rilov, E. Yeruham, A. Brind’Amour, and M. Lindegren. 2024. Cross-basin and cross-taxa patterns of marine community tropicalization and deborealization in warming European seas. Nature Communications 15:2126. (https://doi.org/10.1038/s41467-024-46526-y)
- Chust G, et al. Climate regime shifts and biodiversity redistribution in the Bay of Biscay. Sci Total Environ 803, 149622 (2022). (https://doi.org/10.1016/j.scitotenv.2021.149622)
- Valle, M., G. Chust, A. del Campo, M. S. Wisz, S. M. Olsen, J. M. Garmendia, and Á. Borja. 2014. Projecting future distribution of the seagrass Zostera noltii under global warming and sea level rise. Biological Conservation 170:74-85. DOI: (https://doi.org/10.1016/j.biocon.2013.12.017)
- Fernandes, J. A., E. Papathanasopoulou, C. Hattam, A. M. Queirós, W. W. W. L. Cheung, A. Yool, Y. Artioli, E. C. Pope, K. J. Flynn, G. Merino, P. Calosi, N. Beaumont, M. C. Austen, S. Widdicombe, and M. Barange. 2017. Estimating the ecological, economic and social impacts of ocean acidification and warming on UK fisheries. Fish and Fisheries 18:389-411. (https://onlinelibrary.wiley.com/doi/abs/10.1111/faf.12183)
- Arevalo, E., L. Ibaibarriaga, N. Aldanondo, M. S. Mocoroa, F. G. Taboada, U. Cotano, P. Alvarez, E. Bachiller, L. Zarauz, M. Korta, E. Villarino, and G. Chust. 2026. Are Biological Responses Consistent With Ocean Warming Across Levels of Organisation in the Bay of Biscay? Fish and Fisheries 27:313-341. (https://doi.org/10.1111/faf.70057)
- de Santiago, I., P. Camus, M. González, P. Liria, I. Epelde, G. Chust, A. del Campo, and A. Uriarte. 2021. Impact of climate change on beach erosion in the Basque Coast (NE Spain). Coastal Engineering 167:103916. DOI: (https://doi.org/10.1016/j.coastaleng.2021.103916)
- Garnier, R., I. Townend, M. Monge-Ganuzas, I. de Santiago, P. Liria, A. Abalia, I. Epelde, A. del. Campo, G. Chust, M. Valle, M. González, J. Mader, M. Gómez, C. Castillo, and A. Uriarte. 2022. Modelling the morphological response of the Oka estuary (SE Bay of Biscay) to climate change. Estuarine, Coastal and Shelf Science 279:108133. DOI: (https://doi.org/10.1016/j.ecss.2022.108133)
- González, M., A. Fontán, G. Esnaola, and M. Collins. 2013. Abrupt changes, multidecadal variability and long-term trends in sea surface temperature and sea level datasets within the southeastern Bay of Biscay. Journal of Marine Systems 109-110:S144-S152. (https://doi.org/10.1016/j.jmarsys.2011.11.014)
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