Changing trends in ecosystem productivity can be quantified using satellite observations of Normalized Difference Vegetation Index (NDVI). However, the estimation of trends from NDVI time series differs substantially depending on analyzed satellite dataset, the corresponding spatiotemporal resolution, and the applied statistical method. Here we compare the performance of a wide range of trend estimation methods and demonstrate that performance decreases with increasing inter-annual variability in the NDVI time series. Trend slope estimates based on annual aggregated time series or based on a seasonal-trend model show better performances than methods that remove the seasonal cycle of the time series. A breakpoint detection analysis reveals t...
Abstract: A 30-year series of global monthly Normalized Difference Vegetation Index (NDVI) imagery d...
Satellite-derived indices of photosynthetic activity are the primary data source used to study chang...
The use of time series of Normalized Difference Vegetation Index (NDVI), obtained from satellite sen...
Changing trends in ecosystem productivity can be quantified using satellite observations of Normaliz...
Understanding trends in vegetation phenology and growing season productivity at a regional scale is ...
Remotely sensed vegetation indices are widely used to detect greening and browning trends; especiall...
A 30-year series of global monthly Normalized Difference Vegetation Index (NDVI) imagery derived fro...
Land degradation is a global issue on a par with climate change and loss of biodiversity, but ...
Climate change affects plant dynamics and functioning of terrestrial ecosystems. This study aims to ...
Analysing changes in vegetation seasonality of terrestrial ecosystems is important to understand eco...
A 30-year series of global monthly Normalized Difference Vegetation Index (NDVI) imagery derived fro...
Field observations and time series of vegetation greenness data from satellites provide evidence of ...
Satellite-derived indices of photosynthetic activity are the primary data source used to study chang...
Changes in vegetation activity are driven by multiple natural and anthropogenic factors, which can b...
Monitoring and quantifying changes in vegetation cover over large areas using remote sensing can be ...
Abstract: A 30-year series of global monthly Normalized Difference Vegetation Index (NDVI) imagery d...
Satellite-derived indices of photosynthetic activity are the primary data source used to study chang...
The use of time series of Normalized Difference Vegetation Index (NDVI), obtained from satellite sen...
Changing trends in ecosystem productivity can be quantified using satellite observations of Normaliz...
Understanding trends in vegetation phenology and growing season productivity at a regional scale is ...
Remotely sensed vegetation indices are widely used to detect greening and browning trends; especiall...
A 30-year series of global monthly Normalized Difference Vegetation Index (NDVI) imagery derived fro...
Land degradation is a global issue on a par with climate change and loss of biodiversity, but ...
Climate change affects plant dynamics and functioning of terrestrial ecosystems. This study aims to ...
Analysing changes in vegetation seasonality of terrestrial ecosystems is important to understand eco...
A 30-year series of global monthly Normalized Difference Vegetation Index (NDVI) imagery derived fro...
Field observations and time series of vegetation greenness data from satellites provide evidence of ...
Satellite-derived indices of photosynthetic activity are the primary data source used to study chang...
Changes in vegetation activity are driven by multiple natural and anthropogenic factors, which can b...
Monitoring and quantifying changes in vegetation cover over large areas using remote sensing can be ...
Abstract: A 30-year series of global monthly Normalized Difference Vegetation Index (NDVI) imagery d...
Satellite-derived indices of photosynthetic activity are the primary data source used to study chang...
The use of time series of Normalized Difference Vegetation Index (NDVI), obtained from satellite sen...