Vegetation seasonality assessment through remote sensing data is crucial to understand ecosystem responses to climatic variations and human activities at large-scales. Whereas the study of the timing of phenological events showed significant advances, their recurrence patterns at different periodicities has not been widely study, especially at global scale. In this work, we describe vegetation oscillations by a novel quantitative approach based on the spectral analysis of Normalized Difference Vegetation Index (NDVI) time series. A new set of global periodicity indicators permitted to identify different seasonal patterns regarding the intra-annual cycles (the number, amplitude, and stability) and to evaluate the existence of pluri-annual cy...
Using the AVHRR product provided by NOAA, the NDVI time series has been calculated, a periodogram ha...
A 30-year series of global monthly Normalized Difference Vegetation Index (NDVI) imagery derived fro...
A 30-year series of global monthly Normalized Difference Vegetation Index (NDVI) imagery derived fro...
Vegetation seasonality assessment through remote sensing data is crucial to understand ecosystem res...
To evaluate human impacts on forests and other carbon-storing ecosystems, temporal patterns of veget...
To evaluate human impacts on forests and other carbon-storing ecosystems, temporal patterns of veget...
Climate change affects plant dynamics and functioning of terrestrial ecosystems. This study aims to ...
Abstract The leaf phenology (i.e. the seasonality of leaf amount and leaf demography) of ecosystems ...
Remotely sensed vegetation indices are widely used to detect greening and browning trends; especiall...
Land degradation is a global issue on a par with climate change and loss of biodiversity, but its e...
Agricultural intensification is defined in terms as cropping intensity, which is the numbers of crop...
Climate variability has a large impact on the vegetation dynamics. To quantify this impact a study i...
A 30-year series of global monthly Normalized Difference Vegetation Index (NDVI) imagery derived fro...
Climate variability has a large impact on the vegetation dynamics. To quantify this impact a study i...
Time series of vegetation indices (VIs) obtained by remote sensing are widely used to study phenolog...
Using the AVHRR product provided by NOAA, the NDVI time series has been calculated, a periodogram ha...
A 30-year series of global monthly Normalized Difference Vegetation Index (NDVI) imagery derived fro...
A 30-year series of global monthly Normalized Difference Vegetation Index (NDVI) imagery derived fro...
Vegetation seasonality assessment through remote sensing data is crucial to understand ecosystem res...
To evaluate human impacts on forests and other carbon-storing ecosystems, temporal patterns of veget...
To evaluate human impacts on forests and other carbon-storing ecosystems, temporal patterns of veget...
Climate change affects plant dynamics and functioning of terrestrial ecosystems. This study aims to ...
Abstract The leaf phenology (i.e. the seasonality of leaf amount and leaf demography) of ecosystems ...
Remotely sensed vegetation indices are widely used to detect greening and browning trends; especiall...
Land degradation is a global issue on a par with climate change and loss of biodiversity, but its e...
Agricultural intensification is defined in terms as cropping intensity, which is the numbers of crop...
Climate variability has a large impact on the vegetation dynamics. To quantify this impact a study i...
A 30-year series of global monthly Normalized Difference Vegetation Index (NDVI) imagery derived fro...
Climate variability has a large impact on the vegetation dynamics. To quantify this impact a study i...
Time series of vegetation indices (VIs) obtained by remote sensing are widely used to study phenolog...
Using the AVHRR product provided by NOAA, the NDVI time series has been calculated, a periodogram ha...
A 30-year series of global monthly Normalized Difference Vegetation Index (NDVI) imagery derived fro...
A 30-year series of global monthly Normalized Difference Vegetation Index (NDVI) imagery derived fro...