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Embodied aerial physical interaction: combining body and brain for robust interaction with unstructured environments
Aucone, E., & Mintchev, S. (2025). Embodied aerial physical interaction: combining body and brain for robust interaction with unstructured environments. Science Robotics, 10(102), eads0200 (3 pp.). https://doi.org/10.1126/scirobotics.ads0200
Optical Tactile sensing for aerial multi-contact interaction: design, integration, and evaluation
Aucone, E., Sferrazza, C., Gregor, M., D'andrea, R., & Mintchev, S. (2025). Optical Tactile sensing for aerial multi-contact interaction: design, integration, and evaluation. IEEE Transactions on Robotics, 41, 364-377. https://doi.org/10.1109/TRO.2024.3508140
Der Zitronenseitling und die Risiken verwilderter Zuchtpilze. <em>Pleurotus citrinopileatus</em> Singer (Familie: Pleurotaceae)
Auf der Maur, B., Brännhage, J., Oggier, A., & Gross, A. (2025). Der Zitronenseitling und die Risiken verwilderter Zuchtpilze. Pleurotus citrinopileatus Singer (Familie: Pleurotaceae). Factsheet Neomyceten. Birmensdorf: Eidg. Forschungsanstalt für Wald, Schnee und Landschaft WSL.
Pleuroto dorato e i rischi dei funghi coltivati inselvatichiti. <em>Pleurotus citrinopileatus</em> Singer (famiglia: Pleurotaceae)
Auf der Maur, B., Brännhage, J., Oggier, A., & Gross, A. (2025). Pleuroto dorato e i rischi dei funghi coltivati inselvatichiti. Pleurotus citrinopileatus Singer (famiglia: Pleurotaceae). Schede informative sui Neomiceti. Birmensdorf: Istituto federale di ricerca per la foresta, la neve e il paesaggio WSL.
High transpirational cooling by urban trees despite extreme summer heatwaves
Bachofen, C., Peillon, M., Meili, N., Bourgeois, I., & Grossiord, C. (2025). High transpirational cooling by urban trees despite extreme summer heatwaves. Urban Forestry and Urban Greening, 107, 128819 (11 pp.). https://doi.org/10.1016/j.ufug.2025.128819
The impacts of multiple anthropogenic environmental drivers on plant–soil feedbacks: a systematic review protocol
Beyene, M. S., Roberto, A. N., Broadbent, A. A. D., Cordero, I., Johnson, D., Isaac, M. E., … Cadotte, M. W. (2025). The impacts of multiple anthropogenic environmental drivers on plant–soil feedbacks: a systematic review protocol. Ecological Solutions and Evidence, 6(1), e70009 (12 pp.). https://doi.org/10.1002/2688-8319.70009
Waldbrände vorbeugen
Boris Pezzatti, G., & Conedera, M. (2025). Waldbrände vorbeugen. Montagna: Zeitschrift für das Berggebiet, 35(4), 10-11.
Bois mort
Bütler, R., Gossner, M., Lachat, T., Abegg, M., & Lauper, B. (2025). Bois mort. In A. Strauss & C. Fischer (Eds.), Rapport forestier 2025. Évolution, état et utilisation de la forêt suisse (pp. 84-85). Office fédéral de l'environnement OFEV; Institut fédéral de recherches sur la forêt, la neige et le paysage WSL.
Deadwood
Bütler, R., Gossner, M., Lachat, T., Abegg, M., & Lauper, B. (2025). Deadwood. In A. Strauss & C. Fischer (Eds.), Forest Report 2025. Development, condition and use of Swiss forests (pp. 84-85). Federal Office for the Environment FOEN; Swiss Federal Institute for Forest, Snow and Landscape Research WSL.
Guia de campo para Microhabitats em Árvores. Descrições e limites de tamanho para inventário em florestas temperadas e mediterrânicas
Bütler, R., Lachat, T., Krumm, F., Kraus, D., & Larrieu, L. (2025). Guia de campo para Microhabitats em Árvores. Descrições e limites de tamanho para inventário em florestas temperadas e mediterrânicas (2nd ed.). Birmensdorf: Swiss Federal Institute for Forest, Snow and Landscape Research WSL.
Legno morto
Bütler, R., Gossner, M., Lachat, T., Abegg, M., & Lauper, B. (2025). Legno morto. In A. Strauss & C. Fischer (Eds.), Rapporto forestale 2025. Evoluzione, stato e utilizzazione del bosco svizzero (pp. 84-85). Ufficio federale dell'ambiente (UFAM); Istituto federale di ricerca per la foresta, la neve e il paesaggio (WSL).
Taschenführer der Baummikrohabitate. Beschreibung und Schwellenwerte für Feldaufnahmen in gemässigten und mediterranen Wäldern
Bütler, R., Lachat, T., Krumm, F., Kraus, D., & Larrieu, L. (2025). Taschenführer der Baummikrohabitate. Beschreibung und Schwellenwerte für Feldaufnahmen in gemässigten und mediterranen Wäldern (2nd ed.). Birmensdorf: Eidg. Forschungsanstalt für Wald, Schnee und Landschaft WSL.
Totholz
Bütler, R., Gossner, M., Lachat, T., Abegg, M., & Lauper, B. (2025). Totholz. In A. Strauss & C. Fischer (Eds.), Waldbericht 2025. Entwicklung, Zustand und Nutzung des Schweizer Waldes (pp. 84-85). Bundesamt für Umwelt BAFU; Eidg. Forschungsanstalt für Wald Schnee und Landschaft WSL.
Tree-related microhabitat assemblages in boreal forests depend more on local environmental conditions and tree species than on tree size
Bütler, R., Larrieu, L., & Martin, M. (2025). Tree-related microhabitat assemblages in boreal forests depend more on local environmental conditions and tree species than on tree size. Scandinavian Journal of Forest Research. https://doi.org/10.1080/02827581.2025.2497364
Frequent failure of nutrients to increase plant biomass supports the need for precision fertilization in agriculture
Carroll, O. H., Seabloom, E. W., Borer, E. T., Harpole, W. S., Wilfahrt, P., Arnillas, C. A., … MacDougall, A. S. (2025). Frequent failure of nutrients to increase plant biomass supports the need for precision fertilization in agriculture. Scientific Reports, 15(1), 14564 (12 pp.). https://doi.org/10.1038/s41598-025-99071-z
Soil nitrogen supply exerts largest influence on leaf nitrogen in environments with the greatest leaf nitrogen demand
Cheaib, A., Waring, E. F., McNellis, R., Perkowski, E. A., Martina, J. P., Seabloom, E. W., … Smith, N. G. (2025). Soil nitrogen supply exerts largest influence on leaf nitrogen in environments with the greatest leaf nitrogen demand. Ecology Letters, 28(1), e70015 (13 pp.). https://doi.org/10.1111/ele.70015
Local nutrient addition drives plant diversity losses but not biotic homogenization in global grasslands
Chen, Q., Blowes, S. A., Harpole, W. S., Ladouceur, E., Borer, E. T., MacDougall, A., … Chase, J. M. (2025). Local nutrient addition drives plant diversity losses but not biotic homogenization in global grasslands. Nature Communications, 16, 4903 (8 pp.). https://doi.org/10.1038/s41467-025-59166-7
Are high-severity burns in Alpine beech forests related to eruptive fire behavior?
Conedera, M., Pezzatti, G. B., Guglielmetti, A., Maringer, J., Gehring, E., & Krebs, P. (2025). Are high-severity burns in Alpine beech forests related to eruptive fire behavior? Forestry, 98(1), 50-58. https://doi.org/10.1093/forestry/cpad036
Essences non indigènes
Conedera, M., Streit, K., Abegg, M., Jenni, R., & Lauper, B. (2025). Essences non indigènes. In A. Strauss & C. Fischer (Eds.), Rapport forestier 2025. Évolution, état et utilisation de la forêt suisse (pp. 82-83). Office fédéral de l'environnement OFEV; Institut fédéral de recherches sur la forêt, la neige et le paysage WSL.
Nicht einheimische Baumarten
Conedera, M., Streit, K., Abegg, M., Jenni, R., & Lauper, B. (2025). Nicht einheimische Baumarten. In A. Strauss & C. Fischer (Eds.), Waldbericht 2025. Entwicklung, Zustand und Nutzung des Schweizer Waldes (pp. 82-83). Bundesamt für Umwelt BAFU; Eidg. Forschungsanstalt für Wald Schnee und Landschaft WSL.
 

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