Climate change has significantly influenced vegetation dynamics on the Tibetan Plateau (TP). Past research mainly focused on vegetation responses to temperature variation and water stress, but the influence of sunshine duration on NDVI and vegetation phenology on the TP is not well understood. In this study, NDVI time series from 1982-2008 were used to retrieve spatiotemporal vegetation dynamics on the TP. Empirical orthogonal function (EOF) analysis was conducted to understand the spatiotemporal variations of NDVI. The Start of Season (SOS) was estimated from NDVI time series with a local threshold method. The first EOF, accounting for 35.1% of NDVI variations on the TP, indicates that NDVI variations are larger in areas with shorter sunsh...
Global environmental change is rapidly altering the dynamics of terrestrial vegetation, and phenolog...
Research in phenology change has been one heated topic of current ecological and climate change stud...
The effects of the growing season climatic factors (i.e., temperature, precipitation, vapor pressure...
Understanding the dynamics of vegetation system change is often limited by relatively brief data seq...
The Tibetan Plateau (TP) vegetation plays an important role in the local ecosystem, which responds s...
The study of vegetation phenology changes is important because it is a sensitive indicator of climat...
BACKGROUND: Monitoring vegetation dynamics and their responses to climate change has been the subjec...
The spatiotemporal variability of the seasonal dynamics of the climate and vegetation index was anal...
The influence of climate change on vegetation phenology is a heated issue in current climate change ...
Under the context of global climate change, vegetation on the Tibetan Plateau (TP) has experienced s...
The spatiotemporal variation characteristics of the Normalized Difference Vegetation Index (NDVI) an...
Background: Monitoring vegetation dynamics and their responses to climate change has been the subjec...
<div><h3>Background</h3><p>Monitoring vegetation dynamics and their responses to climate change has ...
The spatiotemporal variability of the Normalized Difference Vegetation Index (NDVI) of three vegetat...
Temperatures over the past three decades have exhibited an asymmetric warming pattern between night ...
Global environmental change is rapidly altering the dynamics of terrestrial vegetation, and phenolog...
Research in phenology change has been one heated topic of current ecological and climate change stud...
The effects of the growing season climatic factors (i.e., temperature, precipitation, vapor pressure...
Understanding the dynamics of vegetation system change is often limited by relatively brief data seq...
The Tibetan Plateau (TP) vegetation plays an important role in the local ecosystem, which responds s...
The study of vegetation phenology changes is important because it is a sensitive indicator of climat...
BACKGROUND: Monitoring vegetation dynamics and their responses to climate change has been the subjec...
The spatiotemporal variability of the seasonal dynamics of the climate and vegetation index was anal...
The influence of climate change on vegetation phenology is a heated issue in current climate change ...
Under the context of global climate change, vegetation on the Tibetan Plateau (TP) has experienced s...
The spatiotemporal variation characteristics of the Normalized Difference Vegetation Index (NDVI) an...
Background: Monitoring vegetation dynamics and their responses to climate change has been the subjec...
<div><h3>Background</h3><p>Monitoring vegetation dynamics and their responses to climate change has ...
The spatiotemporal variability of the Normalized Difference Vegetation Index (NDVI) of three vegetat...
Temperatures over the past three decades have exhibited an asymmetric warming pattern between night ...
Global environmental change is rapidly altering the dynamics of terrestrial vegetation, and phenolog...
Research in phenology change has been one heated topic of current ecological and climate change stud...
The effects of the growing season climatic factors (i.e., temperature, precipitation, vapor pressure...