The detection of global land change via satellite observation is a major challenge in improving the understanding of global environmental change. In this study, we develop a new vegetation index which can be used as a proxy for the fractions of tree canopy and short vegetation, based on the simple linear regression between microwave vegetation optical depth (VOD) and optical leaf area index (LAI). Although we use no high-resolution reference data, the newly developed vegetation index successfully detects global land change which has been reported by previous estimations based on high-resolution reference data. We find that the relationship between VOD and LAI is non-stationary and the temporal change in the VOD-LAI relationship is an import...
International audienceThe vegetation optical depth (VOD), a vegetation index retrieved from passive ...
Vegetation phenology characterizes seasonal life-cycle events that influence the carbon cycle and la...
Vegetation optical depth (VOD) retrievals from three satellite-based passive microwave instruments w...
International audienceVegetation is a key element in the energy, water and carbon balances over the ...
International audienceEnvironmental change is a consequence of many interrelated factors. How vegeta...
International audienceThe main objective of this study is to detect and quantify changes in the vege...
Drylands, covering nearly 30% of the global land surface, are characterized by high climate variabil...
Drylands, covering nearly 30% of the global land surface, are characterized by high climate variabil...
Aim: Vegetation optical depth (VOD) is an indicator of the water content of both woody and leaf comp...
Vegetation growth has been profoundly affected by global climate change. It is important to investig...
Vegetation optical depth (VOD) retrievals from three satellite-based passive microwave instruments w...
International audienceThe vegetation optical depth (VOD), a vegetation index retrieved from passive ...
Vegetation phenology characterizes seasonal life-cycle events that influence the carbon cycle and la...
Vegetation optical depth (VOD) retrievals from three satellite-based passive microwave instruments w...
International audienceVegetation is a key element in the energy, water and carbon balances over the ...
International audienceEnvironmental change is a consequence of many interrelated factors. How vegeta...
International audienceThe main objective of this study is to detect and quantify changes in the vege...
Drylands, covering nearly 30% of the global land surface, are characterized by high climate variabil...
Drylands, covering nearly 30% of the global land surface, are characterized by high climate variabil...
Aim: Vegetation optical depth (VOD) is an indicator of the water content of both woody and leaf comp...
Vegetation growth has been profoundly affected by global climate change. It is important to investig...
Vegetation optical depth (VOD) retrievals from three satellite-based passive microwave instruments w...
International audienceThe vegetation optical depth (VOD), a vegetation index retrieved from passive ...
Vegetation phenology characterizes seasonal life-cycle events that influence the carbon cycle and la...
Vegetation optical depth (VOD) retrievals from three satellite-based passive microwave instruments w...