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Queiroz, N, Humphries, NE, Couto, A, Vedor, M, Da Costa, I, Sequeira, AMM, Mucientes, G, Santos, AM, Abascal, FJ, Abercrombie, DL, Abrantes, K, Acuña-Marrero, D, Afonso, AS, Afonso, P, Anders, D, Araujo, G, Arauz, R, Bach, P, Barnett, A, Bernal, D, Berumen, ML, Lion, SB, Bezerra, NPA, Blaison, AV, Block, BA, Bond, ME, Bonfil, R, Braun, CD, Brooks, EJ, Brooks, A, Brown, J, Byrne, ME, Campana, SE, Carlisle, AB, Chapman, DD, Chapple, TK, Chisholm, J, Clarke, CR, Clua, EG, Cochran, JEM, Crochelet, EC, Dagorn, L, Daly, R, Cortés, DD, Doyle, TK, Drew, M, Duffy, CAJ, Erikson, T, Espinoza, E, Ferreira, LC, Ferretti, F, Filmalter, JD, Fischer, GC, Fitzpatrick, R, Fontes, J, Forget, F, Fowler, M, Francis, MP, Gallagher, AJ, Gennari, E, Goldsworthy, SD, Gollock, MJ, Green, JR, Gustafson, JA, Guttridge, TL, Guzman, HM, Hammerschlag, N, Harman, L, Hazin, FHV, Heard, M, Hearn, AR, Holdsworth, JC, Holmes, BJ, Howey, LA, Hoyos, M, Hueter, RE, Hussey, NE, Huveneers, C, Irion, DT, Jacoby, DMP, Jewell, OJD, Johnson, R, Jordan, LKB, Joyce, W, Daly, CAK, Ketchum, JT, Klimley, AP, Kock, AA, Koen, P, Ladino, F, Lana, FO, Lea, JSE, Llewellyn, F, Lyon, WS, MacDonnell, A, Macena, BCL, Marshall, H, McAllister, JD, Meÿer, MA, Morris, JJ, Nelson, ER, Papastamatiou, YP, Peñaherrera-Palma, C, Pierce, SJ, Poisson, F, Quintero, LM, Richardson, AJ, Rogers, PJ, Rohner, CA, Rowat, DRL, Samoilys, M, Semmens, JM, Sheaves, M, Shillinger, G, Shivji, M, Singh, S, Skomal, GB, Smale, MJ, Snyders, LB, Soler, G, Soria, M, Stehfest, KM, Thorrold, SR, Tolotti, MT, Towner, A, Travassos, P, Tyminski, JP, Vandeperre, F, Vaudo, JJ, Watanabe, YY, Weber, SB, Wetherbee, BM, White, TD, Williams, S, Zárate, PM, Harcourt, R, Hays, GC, Meekan, MG, Thums, M, Irigoien, X, Eguíluz, VM, Duarte, CM, Sousa, LL, Simpson, SJ, Southall, EJ and Sims, DW 2021 Reply to: Caution over the use of ecological big data for conservation. Nature, 595 (7866). E20-E28. https://doi.org/10.1038/s41586-021-03464-9
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Queiroz, N, Humphries, NE, Couto, A, Vedor, M, Da Costa, I, Sequeira, AMM, Mucientes, G, Santos, AM, Abascal, FJ, Abercrombie, DL, Abrantes, K, Acuña-Marrero, D, Afonso, AS, Afonso, P, Anders, D, Araujo, G, Arauz, R, Bach, P, Barnett, A, Bernal, D, Berumen, ML, Lion, SB, Bezerra, NPA, Blaison, AV, Block, BA, Bond, ME, Bonfil, R, Bradford, RW, Braun, CD, Brooks, EJ, Brooks, A, Brown, J, Bruce, BD, Byrne, ME, Campana, SE, Carlisle, AB, Chapman, DD, Chapple, TK, Chisholm, J, Clarke, CR, Clua, EG, Cochran, JEM, Crochelet, EC, Dagorn, L, Daly, R, Cortés, DD, Doyle, TK, Drew, M, Duffy, CAJ, Erikson, T, Espinoza, E, Ferreira, LC, Ferretti, F, Filmalter, JD, Fischer, GC, Fitzpatrick, R, Fontes, J, Forget, F, Fowler, M, Francis, MP, Gallagher, AJ, Gennari, E, Goldsworthy, SD, Gollock, MJ, Green, JR, Gustafson, JA, Guttridge, TL, Guzman, HM, Hammerschlag, N, Harman, L, Hazin, FHV, Heard, M, Hearn, AR, Holdsworth, JC, Holmes, BJ, Howey, LA, Hoyos, M, Hueter, RE, Hussey, NE, Huveneers, C, Irion, DT, Jacoby, DMP, Jewell, OJD, Johnson, R, Jordan, LKB, Joyce, W, Daly, CAK, Ketchum, JT, Klimley, AP, Kock, AA, Koen, P, Ladino, F, Lana, FO, Lea, JSE, Llewellyn, F, Lyon, WS, MacDonnell, A, Macena, BCL, Marshall, H, McAllister, JD, Meÿer, MA, Morris, JJ, Nelson, ER, Papastamatiou, YP, Peñaherrera-Palma, C, Pierce, SJ, Poisson, F, Quintero, LM, Richardson, AJ, Rogers, PJ, Rohner, CA, Rowat, DRL, Samoilys, M, Semmens, JM, Sheaves, M, Shillinger, G, Shivji, M, Singh, S, Skomal, GB, Smale, MJ, Snyders, LB, Soler, G, Soria, M, Stehfest, KM, Thorrold, SR, Tolotti, MT, Towner, A, Travassos, P, Tyminski, JP, Vandeperre, F, Vaudo, JJ, Watanabe, YY, Weber, SB, Wetherbee, BM, White, TD, Williams, S, Zárate, PM, Harcourt, R, Hays, GC, Meekan, MG, Thums, M, Irigoien, X, Eguíluz, VM, Duarte, CM, Sousa, LL, Simpson, SJ, Southall, EJ and Sims, DW 2021 Reply to: Shark mortality cannot be assessed by fishery overlap alone. Nature, 595 (7866). E8-E16. https://doi.org/10.1038/s41586-021-03396-4
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Sequeira, AMM, Rodríguez, JP, Eguíluz, VM, Harcourt, R, Hindell, M, Sims, DW, Duarte, CM, Costa, DP, Fernández-Gracia, J, Ferreira, LC, Hays, GC, Heupel, MR, Meekan, MG, Aven, A, Bailleul, F, Baylis, AMM, Berumen, ML, Braun, CD, Burns, J, Caley, MJ, Campbell, R, Carmichael, RH, Clua, E, Einoder, LD, Friedlaender, AS, Goebel, ME, Goldsworthy, SD, Guinet, C, Gunn, J, Hamer, D, Hammerschlag, N, Hammill, M, Hückstädt, LA, Humphries, NE, Lea, MA, Lowther, A, Mackay, A, McHuron, E, McKenzie, J, McLeay, L, McMahon, CR, Mengersen, K, Muelbert, MMC, Pagano, AM, Page, B, Queiroz, N, Robinson, PW, Shaffer, SA, Shivji, MS, Skomal, GB, Thorrold, SR, Villegas-Amtmann, S, Weise, M, Wells, R, Wetherbee, BM, Wiebkin, A, Wienecke, B and Thums, M 2018 Convergence of marine megafauna movement patterns in coastal and open oceans. Proceedings of the National Academy of Sciences, 115 (12). 3072-3077. https://doi.org/10.1073/pnas.1716137115
Lea, JSE, Wetherbee, BM, Sousa, LL, Aming, C, Burnie, N, Humphries, NE, Queiroz, N, Harvey, GM, Sims, DW and Shivji, MS 2018 Ontogenetic partial migration is associated with environmental drivers and influences fisheries interactions in a marine predator. ICES Journal of Marine Science, 75 (4). 1383-1392. https://doi.org/10.1093/icesjms/fsx238
Lea, JSE, Wetherbee, BM, Queiroz, N, Burnie, N, Aming, C, Sousa, LL, Mucientes, GR, Humphries, NE, Harvey, GM, Sims, DW and Shivji, MS 2015 Repeated, long-distance migrations by a philopatric predator targeting highly contrasting ecosystems. Scientific Reports, 5. 11202. https://doi.org/10.1038/srep11202