Detecting the nitrogen critical loads on European forests by means of epiphytic lichens : a signal-to-noise evaluation
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Giordani P, Calatayud V, Stofer S, Seidling W, Granke O, Fischer R (2014) Detecting the nitrogen critical loads on European forests by means of epiphytic lichens : a signal-to-noise evaluation. Forest Ecol Manag 311(1):29-40, DOI:10.1016/j.foreco.2013.05.048
Impact of climate and drought events on the Growth of Scots pine (Pinus sylvestris L.) provenances
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Taeger S, Zang C, Liesebach M, Schneck V, Menzel A (2013) Impact of climate and drought events on the Growth of Scots pine (Pinus sylvestris L.) provenances. Forest Ecol Manag 307:30-42, DOI:10.1016/j.foreco.2013.06.053
Climate responses and interrelations of stem increment and crown transparency in Norway spruce, Scots pine, and common beech
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Seidling W, Ziche D, Beck W (2012) Climate responses and interrelations of stem increment and crown transparency in Norway spruce, Scots pine, and common beech. Forest Ecol Manag 284:196-204, DOI:10.1016/j.foreco.2012.07.015
No rapid soil carbon loss after a windthrow event in the High Tatra
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Don A, Bärwolff M, Kalbitz K, Andruschkewitsch R, Jungkunst HF, Schulze E-D (2012) No rapid soil carbon loss after a windthrow event in the High Tatra. Forest Ecol Manag 276:239-246, DOI:10.1016/j.foreco.2012.04.010
Spatial interpolation of in situ data by self-organizing map algorithms (neural networks) for the assessment of carbon stocks in European forests
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Stümer W, Kenter B, Köhl M (2010) Spatial interpolation of in situ data by self-organizing map algorithms (neural networks) for the assessment of carbon stocks in European forests. Forest Ecol Manag 260(3):287-293, DOI:10.1016/j.foreco.2010.04.008
Modelling exploration of the future of European beech (Fagus sylvatica L.) under climate change - Range abundance, genetic diversity and adaptive response
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Kramer K, Degen B, Buschbom J, Hickler T, Thuiller W, Sykes MT, De Winter W (2010) Modelling exploration of the future of European beech (Fagus sylvatica L.) under climate change - Range abundance, genetic diversity and adaptive response. Forest Ecol Manag 259(11):2213-2222, DOI:10.1016/j.foreco.2009.12.023
High levels of pollen dispersal detected through paternity analysis from a continuous Symphonia globulifera population in the Brazilian Amazon
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Da Silva Carneiro F, Degen B, Kanashiro M, Lacerda AEB, Sebbenn AM (2009) High levels of pollen dispersal detected through paternity analysis from a continuous Symphonia globulifera population in the Brazilian Amazon. Forest Ecol Manag 258(7):1260-1266, DOI:10.1016/j.foreco.2009.06.019
Modelling the long-term impacts of selective logging on genetic diversity and demographic structure of four tropical tree species in the Amazon forest
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Sebbenn AM, Degen B, Azevedo VCR, Silva MB , Lacerda AEB, Ciampi AY, Kanashiro M, Carneiro FD, Thompson I, Loveless MD (2008) Modelling the long-term impacts of selective logging on genetic diversity and demographic structure of four tropical tree species in the Amazon forest. Forest Ecol Manag 254(2):335-349, DOI:10.1016/j.foreco.2007.08.009
Effect of the estimation of forest management and decay of dead woody material on the reliability of carbon stock and carbon stock changes : a simulation study
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Köhl M, Stümer W, Kenter B, Riedel T (2008) Effect of the estimation of forest management and decay of dead woody material on the reliability of carbon stock and carbon stock changes : a simulation study. Forest Ecol Manag 256(3):229-236, DOI:10.1016/j.foreco.2008.04.004
Genetic structure of the green oak leaf roller (Tortrix viridana L.) and one of its hosts, Quercus robur L.
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Schröder H, Degen B (2008) Genetic structure of the green oak leaf roller (Tortrix viridana L.) and one of its hosts, Quercus robur L.. Forest Ecol Manag 256(6):1270-1279, DOI:10.1016/j.foreco.2008.06.051