Mirco Migliavacca
Biographic Data
| ID | 6821675 |
|---|---|
| NAME | Mirco Migliavacca |
| GIVEN NAMES | Mirco |
| FAMILY NAME | Migliavacca |
| SIGNATURE | MIGLIAVACCA M |
| AFFILIATIONS | Joint Research Centre |
| ORCID | 0000-0003-3546-8407 |
| VERIFIED | Yes |
| TOTAL WORKS | 9 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 9 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2010 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 0 |
A sustainable basket of vegetable oils for the European Union: Conservation trade-offs among consumption alternatives in the context of the EU deforestation regulation
Globally synchronized changes in the biosphere, atmosphere, and society identified using public data
Contains fulltext : 328688.pdf (Publisher’s version ) (Open Access)
Reconciling the different uses and values of deadwood in the European Green Deal
The growing demand for woody biomass to meet the environmental and climate objectives of the European \nGreen Deal raises concerns about the capacity of forest ecosystems to sustain their diverse services and \nfunctions. Deadwood, an often-overlooked source of biomass, exemplifies this dilemma, yet the evidence \nneeded to enhance its management is sparse. Here, we put the role of deadwood into perspective through \na literature review and compa…
Regulation of the global carbon and water cycles through vegetation structural and physiological dynamics
Vegetation plays an essential role in regulating carbon and water cycles, e.g. by taking up atmospheric CO 2 through photosynthesis and by transferring soil water to the atmosphere through transpiration. Vegetation function is shaped by its structure and physiology: vegetation structure is determined by the amount of materials for plants and how it is organised in space and time, while vegetation physiology controls the instantaneous response of …
The role of scientists in EU forest-related policy in the Green Deal era
Decoupling between ecosystem photosynthesis and transpiration: A last resort against overheating
Ecosystems are projected to face extreme high temperatures more frequently in the near future. Various biotic coping strategies exist to prevent heat stress. Controlled experiments have recently provided evidence for continued transpiration in woody plants during high air temperatures, even when photosynthesis is inhibited. Such a decoupling of photosynthesis and transpiration would represent an effective strategy (‘known as leaf or canopy coolin…
Contrasting responses of forest growth and carbon sequestration to heat and drought in the Alps
Climate change is expected to increase both the frequency and the intensity of climate extremes, consequently increasing the risk of forest role transition from carbon sequestration to carbon emission. These changes are occurring more rapidly in the Alps, with important consequences for tree species adapted to strong climate seasonality and short growing season. In this study, we aimed at investigating the responses of a high-altitude Larix decid…
Phenology and carbon dioxide source/sink strength of a subalpine grassland in response to an exceptionally short snow season
Changes in snow cover depth and duration predicted by climate change scenarios are expected to strongly affect high-altitude ecosystem processes. This study investigates the effect of an exceptionally short snow season on the phenology and carbon dioxide source/sink strength of a subalpine grassland. An earlier snowmelt of more than one month caused a considerable advancement (40 days) of the beginning of the carbon uptake period (CUP) and, toget…
Climate control of terrestrial carbon exchange across biomes and continents
Understanding the relationships between climate and carbon exchange by terrestrial ecosystems \nis critical to predict future levels of atmospheric carbon dioxide because of the potential \naccelerating effects of positive climate–carbon cycle feedbacks. However, directly observed \nrelationships between climate and terrestrial CO2 exchange with the atmosphere across biomes \nand continents are lacking. Here we present data describing the relatio…
No prominent works on this page.
Climate control of terrestrial carbon exchange across biomes and continents
Understanding the relationships between climate and carbon exchange by terrestrial ecosystems \nis critical to predict future levels of atmospheric carbon dioxide because of the potential \naccelerating effects of positive climate–carbon cycle feedbacks. However, directly observed \nrelationships between climate and terrestrial CO2 exchange with the atmosphere across biomes \nand continents are lacking. Here we present data describing the relatio…
Phenology and carbon dioxide source/sink strength of a subalpine grassland in response to an exceptionally short snow season
Changes in snow cover depth and duration predicted by climate change scenarios are expected to strongly affect high-altitude ecosystem processes. This study investigates the effect of an exceptionally short snow season on the phenology and carbon dioxide source/sink strength of a subalpine grassland. An earlier snowmelt of more than one month caused a considerable advancement (40 days) of the beginning of the carbon uptake period (CUP) and, toget…
The role of scientists in EU forest-related policy in the Green Deal era
Decoupling between ecosystem photosynthesis and transpiration: A last resort against overheating
Ecosystems are projected to face extreme high temperatures more frequently in the near future. Various biotic coping strategies exist to prevent heat stress. Controlled experiments have recently provided evidence for continued transpiration in woody plants during high air temperatures, even when photosynthesis is inhibited. Such a decoupling of photosynthesis and transpiration would represent an effective strategy (‘known as leaf or canopy coolin…
Contrasting responses of forest growth and carbon sequestration to heat and drought in the Alps
Climate change is expected to increase both the frequency and the intensity of climate extremes, consequently increasing the risk of forest role transition from carbon sequestration to carbon emission. These changes are occurring more rapidly in the Alps, with important consequences for tree species adapted to strong climate seasonality and short growing season. In this study, we aimed at investigating the responses of a high-altitude Larix decid…
Reconciling the different uses and values of deadwood in the European Green Deal
The growing demand for woody biomass to meet the environmental and climate objectives of the European \nGreen Deal raises concerns about the capacity of forest ecosystems to sustain their diverse services and \nfunctions. Deadwood, an often-overlooked source of biomass, exemplifies this dilemma, yet the evidence \nneeded to enhance its management is sparse. Here, we put the role of deadwood into perspective through \na literature review and compa…
Regulation of the global carbon and water cycles through vegetation structural and physiological dynamics
Vegetation plays an essential role in regulating carbon and water cycles, e.g. by taking up atmospheric CO 2 through photosynthesis and by transferring soil water to the atmosphere through transpiration. Vegetation function is shaped by its structure and physiology: vegetation structure is determined by the amount of materials for plants and how it is organised in space and time, while vegetation physiology controls the instantaneous response of …
Globally synchronized changes in the biosphere, atmosphere, and society identified using public data
Contains fulltext : 328688.pdf (Publisher’s version ) (Open Access)
A sustainable basket of vegetable oils for the European Union: Conservation trade-offs among consumption alternatives in the context of the EU deforestation regulation
Ecology (6 works) · Environmental Science (6 works) · Atmospheric sciences (5 works) · Biology (5 works) · Climate change (5 works) · Ecosystem (5 works) · Plant Water Relations and Carbon Dynamics (5 works) · Geology (4 works) · Climate variability and models (3 works) · Eddy covariance (3 works)