Pasture ecosystems may be particularly vulnerable to land degradation due to the high risk of human disturbance (e.g., overgrazing, burning, etc.), especially when compared with natural ecosystems (non-pasture, non-cultivated) where direct human impacts are minimal. Using maximum annual leaf area index (LAImax) as a proxy for standing biomass and peak annual aboveground productivity, we analyze greening and browning trends in pasture areas from 1982–2008. Inter-annual variability in pasture productivity is strongly controlled by precipitation (positive correlation) and, to a lesser extent, temperature (negative correlation). Linear temporal trends are significant in 23% of pasture cells, with the vast majority of these areas showing positiv...
Global environmental change is rapidly altering the dynamics of terrestrial vegetation, with consequ...
Understanding spatial-temporal patterns of terrestrial vegetation response to climate change (long-t...
Global terrestrial vegetation dynamics have been rapidly altered by climate change. A widespread veg...
Pasture ecosystems may be particularly vulnerable to land degradation due to the high risk of human ...
Pasturelands are globally extensive, sensitive to climate, and support livestock production systems ...
Pasturelands are globally extensive, sensitive to climate, and support livestock production systems...
Global greening trends have been widely reported based on long‐term remote sensing data of terrestri...
Field observations and time series of vegetation greenness data from satellites provide evidence of ...
Open, Grass- and Forb-Dominated (OGFD) ecosystems, including tundra, tropical grasslands and savanna...
International audienceAbstract. Satellite data reveal widespread changes in Earth's vegetation cover...
Detection and identification of the impacts of climate change on ecosystems have been core issues in...
Open, Grass- and Forb-Dominated (OGFD) ecosystems, including tundra, tropical grasslands and savanna...
Global environmental change is rapidly altering the dynamics of terrestrial vegetation, with consequ...
Understanding spatial-temporal patterns of terrestrial vegetation response to climate change (long-t...
Global terrestrial vegetation dynamics have been rapidly altered by climate change. A widespread veg...
Pasture ecosystems may be particularly vulnerable to land degradation due to the high risk of human ...
Pasturelands are globally extensive, sensitive to climate, and support livestock production systems ...
Pasturelands are globally extensive, sensitive to climate, and support livestock production systems...
Global greening trends have been widely reported based on long‐term remote sensing data of terrestri...
Field observations and time series of vegetation greenness data from satellites provide evidence of ...
Open, Grass- and Forb-Dominated (OGFD) ecosystems, including tundra, tropical grasslands and savanna...
International audienceAbstract. Satellite data reveal widespread changes in Earth's vegetation cover...
Detection and identification of the impacts of climate change on ecosystems have been core issues in...
Open, Grass- and Forb-Dominated (OGFD) ecosystems, including tundra, tropical grasslands and savanna...
Global environmental change is rapidly altering the dynamics of terrestrial vegetation, with consequ...
Understanding spatial-temporal patterns of terrestrial vegetation response to climate change (long-t...
Global terrestrial vegetation dynamics have been rapidly altered by climate change. A widespread veg...