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In order to better understand the present status of mountain ecosystems it is necessary to explore changes changes over a long-term period i.e. centuries to millennia. While pollen analyses have provided a strong needed. Obtaining such estimates is challenging due to the complexity of mountain landscapes resulting from e. the first module of the LRA scheme which aims to reconstruct vegetation at a regional scale. For this REVEALS estimates and a contemporary vegetation map. Our results demonstrate that REVEALS greatly improves cover estimates compared to raw pollen data, despite challenges related to insect pollination and the Performance of the REVEALS model to reconstruct present mountain vegetation cover in the North-Western
dependence is well-suited to network-constrained environments. We applied this model to a semi-aquatic mammal development and additional applications to other taxa difficult-to-survey or network-constrained environments We then assessed the efficiency of the PA network to protect suitable streams for G. pyrenaicus by combining the most suitable sections benefit from a moderate to strong level of protection. Some highly suitable dependence occupancy models and conservation gap analyses to promote species conservation: A case study with a
which we will couple to ORCHIDEE C-lateral to simulate lake C burial and GHG emissions in response to climate best tool to extrapolate from site-level observations to regional and finally global scales to quantify set-up will first be used to better constrain contemporary large-scale lake GHG emissions and to disentangle estimates will be revolutionary as they will allow attributing part of lake GHG emissions to anthropogenic on these fluxes and to reconstruct long-term shifts in emissions and burial due to changes in land cover Dowload pdf version Keywords Land to ocean aquatic continuum lentic waters lakes and reservoirs C stocks sensors integrated approaches temporal trends centuries to millennia Page perso de E.Chapron Page perso de D Consortium: Carbon sink or methane source – local to global scale assessment of lentic waters’ role in