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Regeneration potential of a degraded alpine mountain bog: complex regeneration patterns after grazing cessation and partial rewetting
Graf, U. H., Bergamini, A., Bedolla, A., Boch, S., Küchler, H., Küchler, M., & Ecker, K. (2022). Regeneration potential of a degraded alpine mountain bog: complex regeneration patterns after grazing cessation and partial rewetting. Mires and Peat, 28, 01 (24 pp.). https://doi.org/10.19189/MaP.2021.SNPG.StA.2246
How to predict plant functional types using imaging spectroscopy: linking vegetation community traits, plant functional types and spectral response
Schweiger, A. K., Schütz, M., Risch, A. C., Kneubühler, M., Haller, R., & Schaepman, M. E. (2017). How to predict plant functional types using imaging spectroscopy: linking vegetation community traits, plant functional types and spectral response. Methods in Ecology and Evolution, 8(1), 86-95. https://doi.org/10.1111/2041-210X.12642
Growth adjustments of conifers to drought and to century-long irrigation
Feichtinger, L. M., Eilmann, B., Buchmann, N., & Rigling, A. (2014). Growth adjustments of conifers to drought and to century-long irrigation. Forest Ecology and Management, 334, 96-105. https://doi.org/10.1016/j.foreco.2014.08.008
Natural avalanche disturbance shapes plant diversity and species composition in subalpine forest belt
Rixen, C., Haag, S., Kulakowski, D., & Bebi, P. (2007). Natural avalanche disturbance shapes plant diversity and species composition in subalpine forest belt. Journal of Vegetation Science, 18(5), 735-742. https://doi.org/10.1111/j.1654-1103.2007.tb02588.x
A new numerical solution to traditional phytosociological tabular classification
Wildi, O. (1989). A new numerical solution to traditional phytosociological tabular classification. Vegetatio, 81(1-2), 95-106. https://doi.org/10.1007/BF00045515