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Quality assessment of photogrammetric methods - a workflow for reproducible UAS orthomosaics
Ludwig, M., Runge, C. M., Friess, N., Koch, T. L., Richter, S., Seyfried, S., … Nauss, T. (2020). Quality assessment of photogrammetric methods - a workflow for reproducible UAS orthomosaics. Remote Sensing, 12(22), 3831 (18 pp.). https://doi.org/10.3390/rs12223831
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
Multitemporal accuracy and precision assessment of unmanned aerial system photogrammetry for slope-scale snow depth maps in alpine terrain
Adams, M. S., Bühler, Y., & Fromm, R. (2017). Multitemporal accuracy and precision assessment of unmanned aerial system photogrammetry for slope-scale snow depth maps in alpine terrain. Pure and Applied Geophysics, 175(9), 3303-3324. https://doi.org/10.1007/s00024-017-1748-y
Towards harmonizing leaf litter decomposition studies using standard tea bags – a field study and model application
Didion, M., Repo, A., Liski, J., Forsius, M., Bierbaumer, M., & Djukic, I. (2016). Towards harmonizing leaf litter decomposition studies using standard tea bags – a field study and model application. Forests, 7(8), 167 (12 pp.). https://doi.org/10.3390/f7080167
Review of studies on tree species classification from remotely sensed data
Fassnacht, F. E., Latifi, H., Stereńczak, K., Modzelewska, A., Lefsky, M., Waser, L. T., … Ghosh, A. (2016). Review of studies on tree species classification from remotely sensed data. Remote Sensing of Environment, 186, 64-87. https://doi.org/10.1016/j.rse.2016.08.013
Getting a virtual forester fit for the challenge of climatic change
Rasche, L., Fahse, L., Zingg, A., & Bugmann, H. (2011). Getting a virtual forester fit for the challenge of climatic change. Journal of Applied Ecology, 48(5), 1174-1186. https://doi.org/10.1111/j.1365-2664.2011.02014.x
Validierung des Waldwachstumsmodells MOSES für Schweizer Wälder
Hallenbarter, D., Hasenauer, H., & Zingg, A. (2005). Validierung des Waldwachstumsmodells MOSES für Schweizer Wälder. Schweizerische Zeitschrift für Forstwesen, 156(5), 149-156. https://doi.org/10.3188/szf.2005.0149
Simulating structural forest patterns with a forest gap model: a model evaluation
Risch, A. C., Heiri, C., & Bugmann, H. (2005). Simulating structural forest patterns with a forest gap model: a model evaluation. Ecological Modelling, 181(2-3), 161-172. https://doi.org/10.1016/j.ecolmodel.2004.06.029
Bewertung von Landschaftsveränderungen im Schweizer Mittelland aus Sicht der Bevölkerung. Eine Anwendung der Choice-Experiment-Methode
Schmitt, M., Schläpfer, F., & Roschewitz, A. (2005). Bewertung von Landschaftsveränderungen im Schweizer Mittelland aus Sicht der Bevölkerung. Eine Anwendung der Choice-Experiment-Methode. Birmensdorf: Eidg. Forschungsanstalt für Wald, Schnee und Landschaft WSL.
The impact of windthrow on carbon sequestration in Switzerland: a model-based assessment
Thürig, E., Palosuo, T., Bucher, J., & Kaufmann, E. (2005). The impact of windthrow on carbon sequestration in Switzerland: a model-based assessment. Forest Ecology and Management, 210(1-3), 337-350. https://doi.org/10.1016/j.foreco.2005.02.030
Validation of stated preferences for public goods: a comparison of contingent valuation survey response and voting behaviour
Schläpfer, F., Roschewitz, A., & Hanley, N. (2004). Validation of stated preferences for public goods: a comparison of contingent valuation survey response and voting behaviour. Ecological Economics, 51(1-2), 1-16. https://doi.org/10.1016/j.ecolecon.2004.04.006
A water balance model to simulate drought in forested ecosystems and its application to the entire forested area in Switzerland
Zierl, B. (2001). A water balance model to simulate drought in forested ecosystems and its application to the entire forested area in Switzerland. Journal of Hydrology, 242(1-2), 115-136. https://doi.org/10.1016/S0022-1694(00)00387-5