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Wind disturbances
Wohlgemuth, T., Hanewinkel, M., & Seidl, R. (2022). Wind disturbances. In T. Wohlgemuth, A. Jentsch, & R. Seidl (Eds.), Landscape series: Vol. 32. Disturbance ecology (pp. 173-194). https://doi.org/10.1007/978-3-030-98756-5_8
3D-laser scanning: a new method to analyze coarse tree root systems
Gärtner, H., Wagner, B., Heinrich, I., & Denier, C. (2009). 3D-laser scanning: a new method to analyze coarse tree root systems. Forest Snow and Landscape Research, 82(1), 95-106.
Natural frequencies and damping ratios of Norway spruce (<em>Picea abies</em> (L.) Karst) growing on subalpine forested slopes
Jonsson, M. J., Foetzki, A., Kalberer, M., Lundström, T., Ammann, W., & Stöckli, V. (2007). Natural frequencies and damping ratios of Norway spruce (Picea abies (L.) Karst) growing on subalpine forested slopes. Trees: Structure and Function, 21(5), 541-548. https://doi.org/10.1007/s00468-007-0147-x
Mechanische Eigenschaften der Fichte: Experimente zur Analyse von Naturgefahren
Kalberer, M., Ammann, M., & Jonsson, M. (2007). Mechanische Eigenschaften der Fichte: Experimente zur Analyse von Naturgefahren. Schweizerische Zeitschrift für Forstwesen, 158(6), 166-175. https://doi.org/10.3188/szf.2007.0166
Root-soil rotation stiffness of Norway spruce (<i>Picea abies</i> (L.) Karst) growing on subalpine forested slopes
Jonsson, M. J., Foetzki, A., Kalberer, M., Lundström, T., Ammann, W., & Stöckli, V. (2006). Root-soil rotation stiffness of Norway spruce (Picea abies (L.) Karst) growing on subalpine forested slopes. Plant and Soil, 285(1-2), 267-277. https://doi.org/10.1007/s11104-006-9013-7
Wurzelhabitus und Standfestigkeit der Waldbäume
Polomski, J., & Kuhn, N. (2001). Wurzelhabitus und Standfestigkeit der Waldbäume. Forstwissenschaftliches Centralblatt, 120(1-6), 303-317. https://doi.org/10.1007/BF02796102