method and its application to European pollen data at 0 and 6 ka.
Climate Dynamics, 12, 185–194.
Rousseau, D., Hatté, C., Guiot, J., Duzer, D., Schevin, P. and Kukla, G.
(2006). Reconstruction of the Grande Pile Eemian Using Inverse
Modeling of Biomes and d13C. Quaternary Science Reviews, 25, 2
806–2 819.
Sugita, S. (2007). Theory of quantitative reconstruction of vegetation I:
Pollen from Large Sites REVEALS regional vegetation composition. The Holocene, 17, 229–241.
Tarasov, P. E. et al. (1998). Present-Day and Mid-Holocene Biomes
reconstructed from pollen and plant macrofossil data from the
Former Soviet Union and Mongolia. Journal of Biogeography,
25, 1 029–1 054.
Tinner, W., & Lotter, A. (2006). Holocene expansions of Fagus
silvatica and Abies alba in Central Europe: where are we after eight
decades of debate? Quaternary Science Reviews, 25(5–6), 526–549.
https://doi.org/10.1016/j.quascirev.2005.03.017.
Trondman, A. K., Gaillard, M. J., Mazier, F., Sugita, S., Fyfe, R.,
Nielsen, A. B., et al. (2015). Pollen-based quantitative reconstructions of Holocene regional vegetation cover (plant-functional types
and land-cover types) in Europe suitable for climate modelling.
Glob. Chang. Biol. 21. https://doi.org/10.1111/gcb.12737.
Tzedakis, P. C., Andrieu, V., de Beaulieu, J.-L., Crowhurst, S., Follieri,
M., Hooghiemstra, H., et al. (1997). Comparison of terrestrial and
marine record of changing climate of the last 500,000 years. Earth
and Planetary Science Letters, 50, 171–176.
12 Air-Vegetation Interface: Pollen
155
Climate Dynamics, 12, 185–194.
Rousseau, D., Hatté, C., Guiot, J., Duzer, D., Schevin, P. and Kukla, G.
(2006). Reconstruction of the Grande Pile Eemian Using Inverse
Modeling of Biomes and d13C. Quaternary Science Reviews, 25, 2
806–2 819.
Sugita, S. (2007). Theory of quantitative reconstruction of vegetation I:
Pollen from Large Sites REVEALS regional vegetation composition. The Holocene, 17, 229–241.
Tarasov, P. E. et al. (1998). Present-Day and Mid-Holocene Biomes
reconstructed from pollen and plant macrofossil data from the
Former Soviet Union and Mongolia. Journal of Biogeography,
25, 1 029–1 054.
Tinner, W., & Lotter, A. (2006). Holocene expansions of Fagus
silvatica and Abies alba in Central Europe: where are we after eight
decades of debate? Quaternary Science Reviews, 25(5–6), 526–549.
https://doi.org/10.1016/j.quascirev.2005.03.017.
Trondman, A. K., Gaillard, M. J., Mazier, F., Sugita, S., Fyfe, R.,
Nielsen, A. B., et al. (2015). Pollen-based quantitative reconstructions of Holocene regional vegetation cover (plant-functional types
and land-cover types) in Europe suitable for climate modelling.
Glob. Chang. Biol. 21. https://doi.org/10.1111/gcb.12737.
Tzedakis, P. C., Andrieu, V., de Beaulieu, J.-L., Crowhurst, S., Follieri,
M., Hooghiemstra, H., et al. (1997). Comparison of terrestrial and
marine record of changing climate of the last 500,000 years. Earth
and Planetary Science Letters, 50, 171–176.
12 Air-Vegetation Interface: Pollen
155
