Semi-arid ecosystems play an important role in regulating global climate with the fate of these ecosystems in the Anthropocene depending upon interactions among temperature, precipitation, and CO2. However, in cool-arid environments, precipitation is not the only limitation to forest productivity. Interactions between changes in precipitation and air temperature may enhance soil moisture stress while simultaneously extending growing season length, with unclear consequences for net carbon uptake. This study evaluates recent trends in productivity and phenology of Inner Asian forests (in Mongolia and Northern China) using satellite remote sensing, dendrochronology, and dynamic global vegetation model (DGVM) simulations to quantify the sensiti...
Gaining a deep understanding of how climate change affects the carbon cycle in dryland vegetation is...
Global warming and intense human activity are altering the net primary productivity (NPP) of vegetat...
Forests around the world are subject to risk of high rates of tree growth decline and increased tree...
Semi-arid ecosystems play an important role in regulating global climate with the fate of these ecos...
Understanding vegetation dynamics and their responses to climate change are essential to enhance the...
Vegetation phenology is a sensitive indicator of climate change. With the intensification of global ...
International audienceOver the last century, precipitation has shown significant changes, reflecting...
Over the last century, precipitation has shown significant changes, reflecting both natural variabil...
This study investigates vegetation responses to climate changes by analyzing 19 years (1982-2000) of...
Northern Eurasia experienced anomalous weather conditions in the 2003 summer. We examined how forest...
The response of vegetation growth to current climate change in Inner Asia (35-55 degrees N, 45-120 d...
Many studies on global climate have forecast major changes in the amounts and spatial patterns of pr...
As the global climate has changed, studies on the relationship between vegetation and climate have b...
International audienceAfforestation in China provides carbon sequestration and prevents soil erosion...
Gaining a deep understanding of how climate change affects the carbon cycle in dryland vegetation is...
Global warming and intense human activity are altering the net primary productivity (NPP) of vegetat...
Forests around the world are subject to risk of high rates of tree growth decline and increased tree...
Semi-arid ecosystems play an important role in regulating global climate with the fate of these ecos...
Understanding vegetation dynamics and their responses to climate change are essential to enhance the...
Vegetation phenology is a sensitive indicator of climate change. With the intensification of global ...
International audienceOver the last century, precipitation has shown significant changes, reflecting...
Over the last century, precipitation has shown significant changes, reflecting both natural variabil...
This study investigates vegetation responses to climate changes by analyzing 19 years (1982-2000) of...
Northern Eurasia experienced anomalous weather conditions in the 2003 summer. We examined how forest...
The response of vegetation growth to current climate change in Inner Asia (35-55 degrees N, 45-120 d...
Many studies on global climate have forecast major changes in the amounts and spatial patterns of pr...
As the global climate has changed, studies on the relationship between vegetation and climate have b...
International audienceAfforestation in China provides carbon sequestration and prevents soil erosion...
Gaining a deep understanding of how climate change affects the carbon cycle in dryland vegetation is...
Global warming and intense human activity are altering the net primary productivity (NPP) of vegetat...
Forests around the world are subject to risk of high rates of tree growth decline and increased tree...