Autumn phenology, commonly represented by the end of season (EOS), is considered to be the most sensitive and crucial productivity indicator of alpine and cold grassland in the Qinghai-Tibetan Plateau. Previous studies typically assumed that the rates of EOS changes remain unchanged over long time periods. However, pixel-scale analysis indicates the existence of turning points and differing EOS change rates before and after these points. The spatial heterogeneity and controls of these turning points remain unclear. In this study, the EOS turning point changes are extracted and their controls are explored by integrating long time-series remote sensing images and piecewise regression methods. The results indicate that the EOS changed over tim...
Abstract Land surface temperature (LST) is often a direct control on herbaceous plants but has been ...
Plant phenology is a key link for controlling interactions between climate change and biogeochemical...
BACKGROUND: Monitoring vegetation dynamics and their responses to climate change has been the subjec...
The spatial and temporal variations in the end date of the vegetation growing season (EGS) and their...
Land surface phenology is a highly sensitive and simple indicator of vegetation dynamics and climate...
Vegetation phenology is an important indicator of global climate change, and the response of grassla...
Grasslands occupy nearly three quarters of the land surface of the Qinghai-Tibet plateau (QTP) and p...
Detecting spatial patterns of land surface phenology (LSP) with high spatial and temporal resolution...
Studying on the response of vegetation phenology to climate change at different temporal and spatial...
Abstract. The Qinghai-Tibetan Plateau has been experiencing a distinct warming trend, and climate wa...
A growing number of studies have focused on variations in vegetation phenology and their correlation...
Background: Monitoring vegetation dynamics and their responses to climate change has been the subjec...
Vegetation phenology in temperate grasslands is highly sensitive to climate change. However, it is s...
Worldwide, many plant species are experiencing an earlier onset of spring phenophases due to climate...
The Tibetan Plateau is the highest and largest plateau in the world, hosting unique alpine grassland...
Abstract Land surface temperature (LST) is often a direct control on herbaceous plants but has been ...
Plant phenology is a key link for controlling interactions between climate change and biogeochemical...
BACKGROUND: Monitoring vegetation dynamics and their responses to climate change has been the subjec...
The spatial and temporal variations in the end date of the vegetation growing season (EGS) and their...
Land surface phenology is a highly sensitive and simple indicator of vegetation dynamics and climate...
Vegetation phenology is an important indicator of global climate change, and the response of grassla...
Grasslands occupy nearly three quarters of the land surface of the Qinghai-Tibet plateau (QTP) and p...
Detecting spatial patterns of land surface phenology (LSP) with high spatial and temporal resolution...
Studying on the response of vegetation phenology to climate change at different temporal and spatial...
Abstract. The Qinghai-Tibetan Plateau has been experiencing a distinct warming trend, and climate wa...
A growing number of studies have focused on variations in vegetation phenology and their correlation...
Background: Monitoring vegetation dynamics and their responses to climate change has been the subjec...
Vegetation phenology in temperate grasslands is highly sensitive to climate change. However, it is s...
Worldwide, many plant species are experiencing an earlier onset of spring phenophases due to climate...
The Tibetan Plateau is the highest and largest plateau in the world, hosting unique alpine grassland...
Abstract Land surface temperature (LST) is often a direct control on herbaceous plants but has been ...
Plant phenology is a key link for controlling interactions between climate change and biogeochemical...
BACKGROUND: Monitoring vegetation dynamics and their responses to climate change has been the subjec...