Alpine ecosystems are particularly sensitive to climate change, and therefore it is of significant interest to understand the relationships between phenology and its seasonal drivers in mountain areas. However, no alpine-wide assessment on the relationship between land surface phenology (LSP) patterns and its climatic drivers including snow exists. Here, an assessment of the influence of snow cover variations on vegetation phenology is presented, which is based on a 17-year time-series of MODIS data. From this data snow cover duration (SCD) and phenology metrics based on the Normalized Difference Vegetation Index (NDVI) have been extracted at 250 m resolution for the entire European Alps. The combined influence of additional climate drivers...
ABSTRACT: snow cover is a critical factor among environmental variables in mountainous ecosystems. I...
In high-elevation mountains, seasonal snow cover affects land surface phenology and the functioning ...
Land surface phenology is frequently derived from remotely sensed data. However, over regions with s...
Alpine ecosystems are particularly sensitive to climate change, and therefore it is of significant i...
Snow cover impacts alpine land surface phenology in various ways, but our knowledge about the effect...
Timing and accumulation of snow are among the most important phenomena influencing land surface phen...
Shifts in phenology are important traces of climate change affecting mountainous ecosystems. We pres...
Shifts in phenology are important traces of climate change affecting mountainous ecosystems. We pres...
Monitoring the inter-annual variability of phenology under varying site conditions in mountain areas...
The role of temperature as a key driver for plant phenology is well established. However, an increas...
Linking climate variability and change to the phenological response of species is particularly chal...
Snow accumulation and melt have multiple impacts on Land Surface Phenology (LSP) and greenness in Al...
Snow cover dynamics in the alpine region are of great importance for the regional climate, fresh wat...
A long-lasting, thick snow cover and a relatively high humidity and low temperatures characterize sn...
Seasonal snow-cover is a significant environmental factor influencing the vegetative phenology of al...
ABSTRACT: snow cover is a critical factor among environmental variables in mountainous ecosystems. I...
In high-elevation mountains, seasonal snow cover affects land surface phenology and the functioning ...
Land surface phenology is frequently derived from remotely sensed data. However, over regions with s...
Alpine ecosystems are particularly sensitive to climate change, and therefore it is of significant i...
Snow cover impacts alpine land surface phenology in various ways, but our knowledge about the effect...
Timing and accumulation of snow are among the most important phenomena influencing land surface phen...
Shifts in phenology are important traces of climate change affecting mountainous ecosystems. We pres...
Shifts in phenology are important traces of climate change affecting mountainous ecosystems. We pres...
Monitoring the inter-annual variability of phenology under varying site conditions in mountain areas...
The role of temperature as a key driver for plant phenology is well established. However, an increas...
Linking climate variability and change to the phenological response of species is particularly chal...
Snow accumulation and melt have multiple impacts on Land Surface Phenology (LSP) and greenness in Al...
Snow cover dynamics in the alpine region are of great importance for the regional climate, fresh wat...
A long-lasting, thick snow cover and a relatively high humidity and low temperatures characterize sn...
Seasonal snow-cover is a significant environmental factor influencing the vegetative phenology of al...
ABSTRACT: snow cover is a critical factor among environmental variables in mountainous ecosystems. I...
In high-elevation mountains, seasonal snow cover affects land surface phenology and the functioning ...
Land surface phenology is frequently derived from remotely sensed data. However, over regions with s...