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Lessons learned from a long‐term irrigation experiment in a dry Scots pine forest: impacts on traits and functioning
Bose, A. K., Rigling, A., Gessler, A., Hagedorn, F., Brunner, I., Feichtinger, L., … Schaub, M. (2022). Lessons learned from a long‐term irrigation experiment in a dry Scots pine forest: impacts on traits and functioning. Ecological Monographs, 92(2), e1507 (18 pp.). https://doi.org/10.1002/ecm.1507
Abundance changes of neophytes and native species indicate a thermophilisation and eutrophisation of the Swiss flora during the 20th century
Scherrer, D., Bürgi, M., Gessler, A., Kessler, M., Nobis, M. P., & Wohlgemuth, T. (2022). Abundance changes of neophytes and native species indicate a thermophilisation and eutrophisation of the Swiss flora during the 20th century. Ecological Indicators, 135, 108558 (11 pp.). https://doi.org/10.1016/j.ecolind.2022.108558
Canopy disturbances catalyse tree species shifts in Swiss Forests
Scherrer, D., Ascoli, D., Conedera, M., Fischer, C., Maringer, J., Moser, B., … Wohlgemuth, T. (2022). Canopy disturbances catalyse tree species shifts in Swiss Forests. Ecosystems, 25, 199-214. https://doi.org/10.1007/s10021-021-00649-1
Climate sensitivity and drought seasonality determine post-drought growth recovery of Quercus petraea and Quercus robur in Europe
Bose, A. K., Scherrer, D., Camarero, J. J., Ziche, D., Babst, F., Bigler, C., … Rigling, A. (2021). Climate sensitivity and drought seasonality determine post-drought growth recovery of Quercus petraea and Quercus robur in Europe. Science of the Total Environment, 784, 147222 (13 pp.). https://doi.org/10.1016/j.scitotenv.2021.147222
Mind the gaps: comparison of representative vs opportunistic assessment of tree regeneration in Central European beech forests
Scherrer, D., Hiltebrand, F., Dengler, J., & Wohlgemuth, T. (2021). Mind the gaps: comparison of representative vs opportunistic assessment of tree regeneration in Central European beech forests. Forest Ecology and Management, 491, 119179 (10 pp.). https://doi.org/10.1016/j.foreco.2021.119179
National assessments of species vulnerability to climate change strongly depend on selected data sources
Scherrer, D., Esperon-Rodriguez, M., Beaumont, L. J., Barradas, V. L., & Guisan, A. (2021). National assessments of species vulnerability to climate change strongly depend on selected data sources. Diversity and Distributions, 27(8), 1367-1382. https://doi.org/10.1111/ddi.13275
Räumlich explizite Modellierung der NaiS-Standorttypen zur Analyse der Waldbestockung
Scherrer, D., Baltensweiler, A., Fischer, C., Frehner, M., Wüest Karpati, R., & Wohlgemuth, T. (2021). Räumlich explizite Modellierung der NaiS-Standorttypen zur Analyse der Waldbestockung. Schweizerische Zeitschrift für Forstwesen, 172(5), 278-285. https://doi.org/10.3188/szf.2021.0278
Greater topoclimatic control of above- versus below-ground communities
Mod, H. K., Scherrer, D., Di Cola, V., Broennimann, O., Blandenier, Q., Breiner, F. T., … Guisan, A. (2020). Greater topoclimatic control of above- versus below-ground communities. Global Change Biology, 26(12), 6715-6728. https://doi.org/10.1111/gcb.15330
Competition and demography rather than dispersal limitation slow down upward shifts of trees' upper elevation limits in the Alps
Scherrer, D., Vitasse, Y., Guisan, A., Wohlgemuth, T., & Lischke, H. (2020). Competition and demography rather than dispersal limitation slow down upward shifts of trees' upper elevation limits in the Alps. Journal of Ecology, 108(6), 2416-2430. https://doi.org/10.1111/1365-2745.13451
How to evaluate community predictions without thresholding?
Scherrer, D., Mod, H. K., & Guisan, A. (2020). How to evaluate community predictions without thresholding? Methods in Ecology and Evolution, 11(1), 51-63. https://doi.org/10.1111/2041-210X.13312
Scaling the linkage between environmental niches and functional traits for improved spatial predictions of biological communities
Guisan, A., Mod, H. K., Scherrer, D., Münkemüller, T., Pottier, J., Alexander, J. M., & D'Amen, M. (2019). Scaling the linkage between environmental niches and functional traits for improved spatial predictions of biological communities. Global Ecology and Biogeography, 28(10), 1384-1392. https://doi.org/10.1111/geb.12967