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Tree volume estimation with terrestrial laser scanning - Testing for bias in a 3D virtual environment
Abegg, M., Bösch, R., Kükenbrink, D., & Morsdorf, F. (2023). Tree volume estimation with terrestrial laser scanning - Testing for bias in a 3D virtual environment. Agricultural and Forest Meteorology, 331, 109348 (16 pp.). https://doi.org/10.1016/j.agrformet.2023.109348
Traffic-regulated street lights to reduce impacts of light pollution: good news for nocturnal insects and bats?
Bolliger, J., Hennet, T., Wermelinger, B., Bösch, R., Pazur, R., Blum, S., … Obrist, M. K. (2022). Traffic-regulated street lights to reduce impacts of light pollution: good news for nocturnal insects and bats? TransportEcology.info (5 pp.).
Benchmarking laser scanning and terrestrial photogrammetry to extract forest inventory parameters in a complex temperate forest
Kükenbrink, D., Marty, M., Bösch, R., & Ginzler, C. (2022). Benchmarking laser scanning and terrestrial photogrammetry to extract forest inventory parameters in a complex temperate forest. International Journal of Applied Earth Observation and Geoinformation, 113, 102999 (15 pp.). https://doi.org/10.1016/j.jag.2022.102999
Der Weg zu einer operationellen Waldstrukturaufnahme in grossflächigen Waldinventuren mittels naher Fernerkundung
Kükenbrink, D., Marty, M., Bösch, R., & Ginzler, C. (2022). Der Weg zu einer operationellen Waldstrukturaufnahme in grossflächigen Waldinventuren mittels naher Fernerkundung. Geomatik Schweiz, Géomatique Suisse, Geomatica Svizzera, 120(9-10), 199-202.
Impact of beam diameter and scanning approach on point cloud quality of terrestrial laser scanning in forests
Abegg, M., Boesch, R., Schaepman, M. E., & Morsdorf, F. (2021). Impact of beam diameter and scanning approach on point cloud quality of terrestrial laser scanning in forests. IEEE Transactions on Geoscience and Remote Sensing, 59(10), 8153-8167. https://doi.org/10.1109/TGRS.2020.3037763
Effects of traffic-regulated street lighting on nocturnal insect abundance and bat activity
Bolliger, J., Hennet, T., Wermelinger, B., Bösch, R., Pazur, R., Blum, S., … Obrist, M. K. (2020). Effects of traffic-regulated street lighting on nocturnal insect abundance and bat activity. Basic and Applied Ecology, 47, 44-56. https://doi.org/10.1016/j.baae.2020.06.003
Mass movements of an alpine rock glacier
Boesch, R., & Graf, C. (2019). Mass movements of an alpine rock glacier. In G. Vosselman, S. J. Oude Elberink, & M. Y. Yang (Eds.), International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences: Vol. XLII-2/W13. ISPRS Geospatial Week 2019 (pp. 215-219). https://doi.org/10.5194/isprs-archives-XLII-2-W13-215-2019
Mehr Dunkelheit für nachtaktive Tiere. Nachtinsekten und Fledermäuse profitieren von dimmbaren LED-Strassenleuchten
Bolliger, J., Hennet, T., Wermelinger, B., Pazur, R., Bösch, R., Blum, S., … Obrist, M. K. (2019). Mehr Dunkelheit für nachtaktive Tiere. Nachtinsekten und Fledermäuse profitieren von dimmbaren LED-Strassenleuchten. Elektrotechnik: ET, 70(2), 28-31.
Transferability and the effect of colour calibration during multi-image classification of Arctic vegetation change
Kolyaie, S., Treier, U. A., Watmough, G. R., Madsen, B., Bøcher, P. K., Psomas, A., … Normand, S. (2019). Transferability and the effect of colour calibration during multi-image classification of Arctic vegetation change. Polar Biology, 42(7), 1227-1239. https://doi.org/10.1007/s00300-019-02491-7
Dimmbare LED Strassenleuchten: gute Aussichten für Nachtinsekten und Fledermäuse?. Éclairage public à LED d’intensité variable: bonne nouvelle pour les insectes nocturnes et les chauves-souris?
Bolliger, J., Hennet, T., Pazur, R., Wermelinger, B., Bösch, R., Blum, S., … Obrist, M. K. (2018). Dimmbare LED Strassenleuchten: gute Aussichten für Nachtinsekten und Fledermäuse? Éclairage public à LED d’intensité variable: bonne nouvelle pour les insectes nocturnes et les chauves-souris? Nature et Paysage. Natur und Landschaft: Inside (3), 16-21.
BatScope manages acoustic recordings, analyses calls, and classifies bat species automatically
Obrist, M. K., & Boesch, R. (2018). BatScope manages acoustic recordings, analyses calls, and classifies bat species automatically. Canadian Journal of Zoology, 96(9), 939-954. https://doi.org/10.1139/cjz-2017-0103
Thermal remote sensing with UAV-based workflows
Boesch, R. (2017). Thermal remote sensing with UAV-based workflows. In C. Stachniss, W. Förstner, & J. Schneider (Eds.), The international archives of the photogrammetry, remote sensing and spatial information sciences: Vol. XLII-2. The international archives of the photogrammetry, remote sensing and spatial information sciences (pp. 41-46). https://doi.org/10.5194/isprs-archives-XLII-2-W6-41-2017
Photogrammetric reconstruction of homogenous snow surfaces in alpine terrain applying near-infrared UAS imagery
Bühler, Y., Adams, M. S., Stoffel, A., & Boesch, R. (2017). Photogrammetric reconstruction of homogenous snow surfaces in alpine terrain applying near-infrared UAS imagery. International Journal of Remote Sensing, 38(8-10), 3135-3158. https://doi.org/10.1080/01431161.2016.1275060
Accuracy assessment of digital surface models from unmanned aerial vehicles' imagery on glaciers
Gindraux, S., Boesch, R., & Farinotti, D. (2017). Accuracy assessment of digital surface models from unmanned aerial vehicles' imagery on glaciers. Remote Sensing, 9(2), 186 (15 pp.). https://doi.org/10.3390/rs9020186
Investigating the potential of low-cost remotely piloted aerial systems for monitoring the alpine snow cover. RPAS4SNOW. Final project report
Adams, M. S., Fromm, R., Graf, A., Bühler, Y., Stoffel, A., Boesch, R., & Ginzler, C. (2016). Investigating the potential of low-cost remotely piloted aerial systems for monitoring the alpine snow cover. RPAS4SNOW. Final project report. ÖAW - Austrian Academy of Sciences. https://doi.org/10.1553/ESS-01
Comparison of digital surface models for snow depth mapping with UAV and aerial cameras
Boesch, R., Bühler, Y., Marty, M., & Ginzler, C. (2016). Comparison of digital surface models for snow depth mapping with UAV and aerial cameras. In L. Halounova, V. Šafář, P. L. N. Raju, L. Plánka, V. Ždímal, T. Srinivasa Kumar, … Q. Weng (Eds.), The international archives of the photogrammetry, remote sensing and spatial information sciences: Vol. XLI-B8. XXIII ISPRS congress, commission VIII (pp. 453-458). https://doi.org/10.5194/isprs-archives-XLI-B8-453-2016
Mapping snow depth in alpine terrain with unmanned aerial systems (UASs): potential and limitations
Bühler, Y., Adams, M. S., Bösch, R., & Stoffel, A. (2016). Mapping snow depth in alpine terrain with unmanned aerial systems (UASs): potential and limitations. Cryosphere, 10(3), 1075-1088. https://doi.org/10.5194/tc-10-1075-2016
UAS photogrammetry of homogenous snow cover
Bühler, Y., Stoffel, A., Adams, M., Bösch, R., & Ginzler, C. (2016). UAS photogrammetry of homogenous snow cover. In T. P. Kersten (Ed.), Publikationen der DGPF: Vol. 25. Beiträge. 36. Wissenschaftlich-technische Jahrestagung der DGPF (pp. 306-316). DGPF.
Geodatenerfassung im hochalpinen Gelände mittels Drohnen
Bühler, Y., Bösch, R., Stoffel, A., & Adams, M. (2015). Geodatenerfassung im hochalpinen Gelände mittels Drohnen. Geomatik Schweiz, Géomatique Suisse, Geomatica Svizzera, 113(9), 366-370. https://doi.org/10.5169/seals-513923
Assessing habitat connectivity for ground-dwelling animals in an urban environment
Braaker, S., Moretti, M., Boesch, R., Ghazoul, J., Obrist, M. K., & Bontadina, F. (2014). Assessing habitat connectivity for ground-dwelling animals in an urban environment. Ecological Applications, 24(7), 1583-1595. https://doi.org/10.1890/13-1088.1