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Camphuysen, K., van Donk, S. C., Shamoun-Baranes, J., & Kentie, R. (2023). The annual cycle, breeding biology and feeding ecology of the Lesser Black-backed Gull Larus fuscus. Ardea, 112(1), 31-61. https://doi.org/10.5253/arde.2023.a7 -
McMichael, C. N. H., Levis, C., Gosling, W. D., Junqueira, A. B., Piperno, D. R., Neves, E. G., Mayle, F., Peña-Claros, M., & Bongers, F. (2023). Spatial and temporal abilities of proxies used to detect pre-Columbian Indigenous human activity in Amazonian ecosystems. Quaternary Science Reviews, 321, Article 108354. https://doi.org/10.1016/j.quascirev.2023.108354 -
Kikuchi, D. W., Allen, W. L., Arbuckle, K., Aubier, T. G., Briolat, E. S., Burdfield-Steel, E. R., Cheney, K. L., Daňková, K., Elias, M., Hämäläinen, L., Herberstein, M. E., Hossie, T. J., Joron, M., Kunte, K., Leavell, B. C., Lindstedt, C., Lorioux-Chevalier, U., McClure, M., McLellan, C. F., ... Exnerová, A. (2023). The evolution and ecology of multiple antipredator defences. Journal of Evolutionary Biology, 36(7), 975-991. https://doi.org/10.1111/jeb.14192 -
Kentie, R., Shamoun-Baranes, J., Spaans, A. L., & Camphuysen, K. (2023). Spatial patterns in age- and colony-specific survival in a long-lived seabird across 14 contrasting colonies. Ibis, 165(1), 82-95. https://doi.org/10.1111/ibi.13120 -
Lyu, J., Bush, M. B., McMichael, C. N. H., Hwang, J.-I., & Zimmerman, A. R. (2023). Fire history of the western Amazon basin recorded by multiple pyrogenic carbon proxies. Quaternary Science Reviews, 310, Article 108111. https://doi.org/10.1016/j.quascirev.2023.108111 -
Onstein, R. E., Kissling, D., & Linder, H. P. (2022). Data from: The megaherbivore gap after the non-avian dinosaur extinctions modified trait evolution and diversification of tropical palms [Data set]. DRYAD. https://doi.org/10.5061/dryad.f1vhhmgzt
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Church, W. B., McMichael, C. N. H., Zondervan, J. R., Hagemans, K., Bush, M. B., Flantua, S. G. A., Sales, R. K., & González-Arango, C. (2022). Archaeological sites used in the final ensemble model from Potential distributions of pre-Columbian people in Tropical Andean landscapes [Data set]. figshare Academic Research System. https://doi.org/10.6084/m9.figshare.19235632.v1
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Gosling, W. D., McMichael, C. N. H., Bush, M. B., Heijink, B. M., & Nascimento, M. N. (2022). Archaeological and soil sites from Early to Mid-Holocene human activity exerted gradual influences on Amazonian forest vegetation [Data set]. figshare Academic Research System. https://doi.org/10.6084/m9.figshare.19213176.v1
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Rozas-Davila, A., Sales, R. K., Bush, M. B., Nascimento, M. N., Gosling, W. D., McMichael, C. N. H., Raczka, M., & Valencia, B. (2022). Additional data for records that contributed to the compilation of fig. 3 from A palaeoecological perspective on the transformation of the tropical Andes by early human activity [Data set]. figshare Academic Research System. https://doi.org/10.6084/m9.figshare.19213149.v1
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Gosling, W., Miller, C. S., Shanahan, T. M., Holden, P. B., Overpeck, J. T., & Langevelde, F. v. (2022). Data and code from: A stronger role for long-term moisture change than for CO2 in determining tropical woody vegetation change [Data set]. Universiteit van Amsterdam. https://doi.org/10.6084/m9.figshare.18319466.v2
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