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Coughlan MR, Gragson TL and Leigh DS
Past Global Changes Magazine
2022
Johnson LB, Larson ER, Gill KG and Savage J
Past Global Changes Magazine
2022
Mariani M, Connor S, Fletcher M-S, Romano A and Maezumi SY
Past Global Changes Magazine
2022
Colombaroli D and Larson E
Past Global Changes Magazine
2022
Jones J, Kohfeld KE, Bostock H, Crosta X, Liston M, Dunbar G, Chase Z…
Climate of the Past
2022
img-fig-CSIDE-Jones-Mar-2022
Githumbi E, Pirzamanbein B, Lindström J, Poska A, Fyfe R, Mazier F,…
Frontiers in Ecology and Evolution
2022
Figure 3. Validation datasets of major land-cover types (LCTs: B, broad-leaved forest; C, coniferous forest; O, open land), area of confidence region (CR) and compositional distance (CD) estimates. (A) CR (100 BP–present): area of confidence regions for 100 BP–present time-window (smaller values are better, see Figure 2 for examples of CRs); (B) 100 BP–present: reconstructed proportions of LCTs in Europe for the most recent time window; (C) EFI-FM: observed modern LCT proportions according to the European f
Strandberg G, Lindstrom J, Poska A, Zhang Q, Fyfe R, Githumbi E,…
Quaternary Science Reviews
2022
Fig. 1. Description of the model chain for 6 ka. All RCM simulations read boundary conditions from EC-Earth. A first set of simulations are made with current land cover (0), these climate scenarios are used in LPJ-GUESS to provide the 6 ka potential natural land cover (L1, L2) subsequently used in the RCMs. A Bayesian spatial model is used to reconstruct 6 ka land cover (R) that is also used in the RCMs.
Mariani M, Connor SE, Theuerkauf M, Herbert A, Kuneš P, Bowman D,…
Frontiers in Ecology and the Environment
2022
Mariani M, Connor SE, Theuerkauf M, Herbert A, Kuneš P, Bowman D,…
Frontiers in Ecology and the Environment
2022
Img 1: Disruption of cultural burning promotes shrub encroachment and unprecedented wildfires
Plunkett G, Sigl M, Schwaiger HF, Tomlinson EL, Toohey M, McConnell…
Climate of the Past
2022
Key sites and ice-core records referred to in the paper
García-García A, Cuesta-Valero FJ, Beltrami H, González-Rouco JF, and…
Geoscientific Model Development
2022
García-García1 A, Cuesta-Valero1 FJ, Beltrami H, González-Rouco JF, and García-Bustamante E
Ludwig P and Hochman A
Environmental Research Letters
2022
Exemplary presentation of mean sea level pressure distribution
Stadelmaier KH, Ludwig P, Bertran P, Antoine P, Shi X, Lohmann G and…
Climate of the Past
2021
img-fig-2kNetwork-Stadelmaier-Dec-2022
Stoffel M, Corona C, Ludlow F, Sigl M, Huhtamaa H, Garnier E, Helama…
Climate of the Past
2021
Figure 1: Monthly resolution non-sea-salt sulfur records from ice cores in (a) Greenland and (b) Antarctica, with (c) stratospheric aerosol optical depth (SAOD) and estimated radiative forcing (RF) between 1630-1650 (data: Toohey & Sigl, 2017).
Pei Y, Pei Q, Lee HF, Qiu M and Yang Y
Anthropocene
2021
Gaillard M-J, Githumbi E, Achoundong G, Lézine A-M, Hély C, Lebamba J…
2021
Gao C, Ludlow F, Matthews JA, Stine AR, Robock A, Pan Y, Breen R,…
Communications Earth & Environment
2021
Img 1: Volcanic climate impacts can act as ultimate and proximate causes of Chinese dynastic collapse
Crick L, Burke A, Hutchison W, Kohno M, Moore KA, Savarino J, Doyle…
Climate of the Past
2021
Hawthorne D et al.
Proceedings of the Geologists' Association
2021
Zhang Y, Cui Q, Huang Y, Wu D and Zhou A
Frontiers in Ecology and Evolution
2021
Sluyter A.
Advances in Environmental and Engineering Research
2021
GIS of Middle America
Huhtamaa H and Ljungqvist FC
Scandinavian Journal of History
2021
Morrison KD, Hammer E, Boles O, Madella M, Whitehouse N, Gaillard M-J…
PLoS One
2021
Cortina-Guerra A, Gomez-Navarro JJ, Martrat B, Montávez JP, Incarbona…
Climate of the Past
2021