Search results

    Filter results

  • Full text

  • Document type

  • Publication year

  • Organisation

Results: 202
Number of items: 202
  • Onstein, R. E., Vink, D. N., Veen, J., Barratt, C. D., Flantua, S. G., Wich, S., & Kissling, D. (2020). Appendix S1 from Palm fruit colours are linked to the broad-scale distribution and diversification of primate colour vision systems [Data set]. The Royal Society. https://doi.org/10.6084/m9.figshare.11841774.v5
  • Onstein, R., Vink, D. N., Veen, J., Barratt, C. D., Flantua, S., Wich, S. A., & Kissling, W. D. (2020). Appendix S2 from Palm fruit colours are linked to the broad-scale distribution and diversification of primate colour vision systems [Data set]. The Royal Society. https://doi.org/10.6084/m9.figshare.11841774.v6
  • Koma, Z., Seijmonsbergen, A. C., & Kissling, W. D. (2020, May 30). Data from : Classifying wetland‐related land cover types and habitats using fine‐scale lidar metrics derived from country‐wide Airborne Laser Scanning [Data set]. Zenodo. https://doi.org/10.5281/zenodo.3865914
  • Open Access
    Kattge, J., The Nutrient Network, & TRY (2020). TRY plant trait database – enhanced coverage and open access. Global Change Biology, 26(1), 119-188. https://doi.org/10.1111/gcb.14904
  • Open Access
    Onstein, R. E., Vink, D. N., Veen, J., Barratt, C. D., Flantua, S. G. A., Wich, S. A., & Kissling, W. D. (2020). Palm fruit colours are linked to the broad-scale distribution and diversification of primate colour vision systems. Proceedings of the Royal Society B: Biological Sciences, 287(1921), Article 20192731. https://doi.org/10.1098/rspb.2019.2731
  • Open Access
    Norder, S. J., de Lima, R. F., de Nascimento, L., Lim, J. Y., Fernández-Palacios, J. M., Romeiras, M. M., Elias, R. B., Cabezas, F. J., Catarino, L., Ceríaco, L. M. P., Castilla-Beltrán, A., Gabriel, R., Menezes de Sequeira, M., Rijsdijk, K. F., Nogué, S., Kissling, W. D., van Loon, E. E., Hall, M., Matos, M., & Borges, P. A. V. (2020). Global change in microcosms: Environmental and societal predictors of land cover change on the Atlantic Ocean Islands. Anthropocene, 30, Article 100242. https://doi.org/10.1016/j.ancene.2020.100242
  • Open Access
    Lim, J. Y., Svenning, J.-C., Göldel, B., Faurby, S., & Kissling, W. D. (2020). Frugivore-fruit size relationships between palms and mammals reveal past and future defaunation impacts. Nature Communications, 11, Article 4904. https://doi.org/10.1038/s41467-020-18530-5
  • Open Access
    Lear, D., Herman, P., Van Hoey, G., Schepers, L., Tonné, N., Lipizer, M., Muller-Karger, F. E., Appeltans, W., Kissling, W. D., Holdsworth, N., Edwards, M., Pecceu, E., Nygård, H., Canonico, G., Birchenough, S., Graham, G., Deneudt, K., Claus, S., & Oset, P. (2020). Supporting the essential - Recommendations for the development of accessible and interoperable marine biological data products. Marine Policy, 117, Article 103958. https://doi.org/10.1016/j.marpol.2020.103958
  • Open Access
    Donoso, I., Sorensen, M. C., Blendinger, P. G., Kissling, W. D., Neuschulz, E. L., Mueller, T., & Schleuning, M. (2020). Downsizing of animal communities triggers stronger functional than structural decay in seed-dispersal networks. Nature Communications, 11, Article 1582. https://doi.org/10.1038/s41467-020-15438-y
  • Open Access
    Meijer, C., Grootes, M. W., Koma, Z., Dzigan, Y., Gonçalves, R., Andela, B., van den Oord, G., Ranguelova, E., Renaud, N., & Kissling, W. D. (2020). Laserchicken—A tool for distributed feature calculation from massive LiDAR point cloud datasets. SoftwareX, 12, Article 100626. https://doi.org/10.1016/j.softx.2020.100626
Page 12 of 21