We present new high-resolution pollen records combined with palaeoceanographic proxies from the same samples in deep-sea cores SHAK06-5K and MD01-2444 on the southwestern Iberian Margin, documenting regional vegetation responses to orbital and millennial-scale climate changes over the last 28 ka. The chronology of these records is based on high-resolution radiocarbon dates of monospecific samples of the planktonic foraminifera Globigerina bulloides, measured from SHAK06-5K and MD01-2444 and aligned using an automated stratigraphical alignment method. Changes in temperate and steppe vegetation during Marine Isotope Stage 2 are closely coupled with sea surface temperature (SST) and global ice-volume changes. The peak expansion of thermophilou...
High-resolution pollen analysis of Alborán Sea core MD95-2043 provides a 48-ka continuous vegetation...
A deep-sea sediment core from the western Portuguese margin has provided a continuous, high-resoluti...
Climatic variability of Marine Isotope Stage (MIS) 11 is examined using a new high-resolution direct...
We present new high-resolution pollen records combined with palaeoceanographic proxies from the same...
This thesis aims to enhance the current understanding of the response of SW Iberian ecosystems to ab...
International audienceWe present a new high-resolution marine pollen record from NW Iberian margin s...
A new high-resolution combined marine proxy-pollen sequence from the Portuguese margin, MD01-2443, e...
Pollen and oceanographic data from deep ocean core MD95-2039 provide a centennial to millennial scal...
AbstractWhile a growing body of evidence indicates that North Atlantic millennial-scale climate vari...
Pollen and oceanographic data from deep ocean core MD95-2039 provide a centennial to millennial scal...
While a growing body of evidence indicates that North Atlantic millennial-scale climate variability ...
High-resolution terrestrial (pollen) and marine (planktic and benthic isotopes, coarse fraction, and...
Marine Isotope Stage 31 (MIS 31) is an important analogue for ongoing and projected global warming, ...
High-resolution pollen analysis of Alborán Sea core MD95-2043 provides a 48-ka continuous vegetation...
A deep-sea sediment core from the western Portuguese margin has provided a continuous, high-resoluti...
Climatic variability of Marine Isotope Stage (MIS) 11 is examined using a new high-resolution direct...
We present new high-resolution pollen records combined with palaeoceanographic proxies from the same...
This thesis aims to enhance the current understanding of the response of SW Iberian ecosystems to ab...
International audienceWe present a new high-resolution marine pollen record from NW Iberian margin s...
A new high-resolution combined marine proxy-pollen sequence from the Portuguese margin, MD01-2443, e...
Pollen and oceanographic data from deep ocean core MD95-2039 provide a centennial to millennial scal...
AbstractWhile a growing body of evidence indicates that North Atlantic millennial-scale climate vari...
Pollen and oceanographic data from deep ocean core MD95-2039 provide a centennial to millennial scal...
While a growing body of evidence indicates that North Atlantic millennial-scale climate variability ...
High-resolution terrestrial (pollen) and marine (planktic and benthic isotopes, coarse fraction, and...
Marine Isotope Stage 31 (MIS 31) is an important analogue for ongoing and projected global warming, ...
High-resolution pollen analysis of Alborán Sea core MD95-2043 provides a 48-ka continuous vegetation...
A deep-sea sediment core from the western Portuguese margin has provided a continuous, high-resoluti...
Climatic variability of Marine Isotope Stage (MIS) 11 is examined using a new high-resolution direct...