Graciela Gil Romera
Gil-Romera, Graciela M.
VIAF ID: 240152079141807111028 (Personal)
Permalink: http://viaf.org/viaf/240152079141807111028
Preferred Forms
- 100 1 _ ‡a Gil-Romera, Graciela M.
- 100 0 _ ‡a Graciela Gil Romera
4xx's: Alternate Name Forms (3)
Works
Title | Sources |
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50,000 years of vegetation and climate change in the Namib Desert | |
Biomass-modulated fire dynamics during the Last Glacial–Interglacial Transition at the Central Pyrenees (Spain) | |
The case of a southern European glacier which survived Roman and medieval warm periods but is disappearing under recent warming | |
Circum-Mediterranean fire activity and climate changes during the mid-Holocene environmental transition (8500-2500 cal. BP) | |
Climate changes in interior semi-arid Spain from the last interglacial to the late Holocene | |
Diatom and vegetation responses to Late Glacial and Early Holocene climate changes at Lake Estanya (Southern Pyrenees, NE Spain) | |
Ecological memory at millennial time-scales: the importance of data constraints, species longevity and niche features | |
The ecological niche and distribution of Neanderthals during the Last Interglacial | |
Escenarios, tempo e indicadores paleoambientales para la identificación del Antropoceno en el paisaje vegetal del Pirineo Central (NE Iberia) | |
The European Pollen Database: past efforts and current activities | |
Expected trends and surprises in the Lateglacial and Holocene vegetation history of the Iberian Peninsula and Balearic Islands | |
The future of ecology is collaborative, inclusive and deconstructs biases | |
The historical origins of aridity and vegetation degradation in southeastern Spain | |
Holocene climates of the Iberian Peninsula: pollen-based reconstructions of changes in the west–east gradient of temperature and moisture | |
Holocene fire activity and vegetation response in South-Eastern Iberia | |
The Holocene pollen record in the Villaviciosa Estuary (Asturias, North Spain) | |
A Holocene temperature (brGDGT) record from Garba Guracha, a high-altitude lake in Ethiopia | |
Human–landscape interactions in the Conquezuela–Ambrona Valley (Soria, continental Iberia): From the early Neolithic land use to the origin of the current oak woodland | |
Humans take control of fire-driven diversity changes in Mediterranean Iberia’s vegetation during the mid–late Holocene | |
Ice cave reveals environmental forcing of long-term Pyrenean tree line dynamics | |
Interpreting Resilience through Long-Term Ecology: Potential Insights in Western Mediterranean Landscapes~!2010-01-13~!2010-01-22~!2010-04-07~! | |
Landscape change in the lower Omo valley, southwestern Ethiopia: burning patterns and woody encroachment in the savanna | |
Last deglaciation and Holocene environmental change at high altitude in the Pyrenees: the geochemical and paleomagnetic record from Marboré Lake (N Spain) | |
Late-glacial and Holocene European pollen data | |
The Late-Glacial and Holocene Marboré Lake sequence (2612 m a.s.l., Central Pyrenees, Spain): Testing high altitude sites sensitivity to millennial scale vegetation and climate variability | |
The late Holocene palaeoecological sequence of Serranía de las Villuercas (southern Meseta, western Spain) | |
Late Quaternary palaeoenvironments in the central semi-arid region of South Africa from pollen in cave, pan, spring, stream and dung deposits | |
Long-term fire resilience of the Ericaceous Belt, Bale Mountains, Ethiopia | |
Long-term resilience, bush encroachment patterns and local knowledge in a Northeast African savanna | |
The Marboré Symphony: a Science - Art Collaborative Project to increase Global Change Awareness based on a Deglaciation and Holocene Pyrenean high altitude lake sediment sequence | |
Mid and late Holocene forest fires and deforestation in the subalpine belt of the Iberian range, northern Spain | |
Middle-to late-Holocene moisture changes in the desert of northwest Namibia derived from fossil hyrax dung pollen | |
A multi-dating approach to age-modelling long continental records: The 135 ka El Cañizar de Villarquemado sequence (NE Spain) | |
Pleistocene landscapes in central Iberia inferred from pollen analysis of hyena coprolites | |
Pollen in fossil hyrax dung from Marine Isotope Stages 2 and 3 reveals past environments in Namibia | |
Pollen taphonomy from hyaena scats and coprolites: preservation and quantitative differences | |
The potential of palynology in fossil bat-dung from Arnhem Cave, Namibia | |
Primer simposio sobre Paleoecología en el encuentro XIV de MEDECOS y XIII de la AEET | |
Primeras jornadas Iperinas: presentación de nuevas líneas de investigación del Instituto Pirenaico de Ecología (CSIC) | |
Quaternary pollen analysis in the Iberian Peninsula: the value of negative results | |
Rapid climatic changes and resilient vegetation during the Lateglacial and Holocene in a continental region of south-western Europe | |
The Reading Palaeofire Database: an expanded global resource to document changes in fire regimes from sedimentary charcoal records | |
Reconstructions of biomass burning from sediment-charcoal records to improve data–model comparisons | |
Revisiting afro-alpine Lake Garba Guracha in the Bale Mountains of Ethiopia: rationale, chronology, geochemistry, and paleoenvironmental implications | |
Rock hyrax middens: A palaeoenvironmental archive for southern African drylands | |
Strong continentality and effective moisture drove unforeseen vegetation dynamics since the last interglacial at inland Mediterranean areas: The Villarquemado sequence in NE Iberia | |
Testing the Effect of Relative Pollen Productivity on the REVEALS Model: A Validated Reconstruction of Europe-Wide Holocene Vegetation | |
Testing the reliability of detrital cave sediments as recorders of paleomagnetic secular variations, Seso Cave System (Central Pyrenees, Spain) | |
Time to better integrate paleoecological research infrastructures with neoecology to improve understanding of biodiversity long-term dynamics and to inform future conservation | |
Towards a multidisciplinary approach to long-term ecology of climate-–plant-–fire interactions across the Mediterranean Biome | |
Towards mapping the late Quaternary vegetation change of Europe |