Climate change is expected to alter vegetation and carbon cycle processes, with implications for ecosystems. Notably, understanding the sensitivity of vegetation to the anomalies of precipitation and temperature over different land cover classes and the corresponding temporal response is essential for improved climate prediction. In this paper, we analyze vegetation response to hydroclimatic forcings using the Fraction of Absorbed Photosynthetically Active Radiation (FAPAR) derived from SeaWiFS (Sea-viewing Wide Field-of-view Sensor) (1998–2002) and (Medium Resolution Imaging Spectrometer) (2003–2011) satellite sensors at ∼1-km resolution. Based on land cover and pixel-wise analysis, we quantify the extent of the dependence of the FAPAR and...
peer reviewedMany studies already investigated the impact of climate change and climate variability ...
Emerging drought stress on vegetation over western Eurasia is linked to varying teleconnection patte...
The Earth is experiencing unprecedented climate change. Vegetation phenology has already showed stro...
Climate change is expected to alter vegetation and carbon cycle processes, with implications for eco...
Climate change is expected to alter vegetation and carbon cycle processes, with implications for eco...
Climate change is expected to alter vegetation and carbon cycle processes, with implications for eco...
It has been hypothesized that vegetation phenology may play an important role for the midlatitude cl...
International audienceThe extraordinarily warm and dry summer experienced in SW Europe in 2003 provi...
Quantifying environmental controls on vegetation is critical to predict the net effect of climate ch...
The climate-vegetation coupling exerts a strong control on terrestrial carbon budgets and will affec...
Temperature is a key factor controlling plant growth and vitality in the temperate climates of the m...
In 2018, central and northern parts of Europe experienced heat and drought conditions over many mont...
The climate-vegetation coupling exerts a strong control on terrestrial carbon budgets and will affec...
Predicting how increasing atmospheric carbon dioxide concentration will affect the hydrologic cycle ...
peer reviewedMany studies already investigated the impact of climate change and climate variability ...
Emerging drought stress on vegetation over western Eurasia is linked to varying teleconnection patte...
The Earth is experiencing unprecedented climate change. Vegetation phenology has already showed stro...
Climate change is expected to alter vegetation and carbon cycle processes, with implications for eco...
Climate change is expected to alter vegetation and carbon cycle processes, with implications for eco...
Climate change is expected to alter vegetation and carbon cycle processes, with implications for eco...
It has been hypothesized that vegetation phenology may play an important role for the midlatitude cl...
International audienceThe extraordinarily warm and dry summer experienced in SW Europe in 2003 provi...
Quantifying environmental controls on vegetation is critical to predict the net effect of climate ch...
The climate-vegetation coupling exerts a strong control on terrestrial carbon budgets and will affec...
Temperature is a key factor controlling plant growth and vitality in the temperate climates of the m...
In 2018, central and northern parts of Europe experienced heat and drought conditions over many mont...
The climate-vegetation coupling exerts a strong control on terrestrial carbon budgets and will affec...
Predicting how increasing atmospheric carbon dioxide concentration will affect the hydrologic cycle ...
peer reviewedMany studies already investigated the impact of climate change and climate variability ...
Emerging drought stress on vegetation over western Eurasia is linked to varying teleconnection patte...
The Earth is experiencing unprecedented climate change. Vegetation phenology has already showed stro...