Land Surface Phenology (LSP) and Leaf Area Index (LAI) are important variables that describe the photosynthetically active phase and capacity of vegetation. Both are derived on the global scale from optical satellite sensors and require robust validation based on in situ sensors at high temporal resolution. This study assesses the PAI Autonomous System from Transmittance Sensors at 57? (PASTiS-57) instrument as a low-cost transmittance sensor for simultaneous monitoring of LSP and LAI in forest ecosystems. In a field experiment, spring leaf flush and autumn senescence in a Dutch beech forest were observed with PASTiS-57 and illumination independent, multi-temporal Terrestrial Laser Scanning (TLS) measurements in five plots. Both time series...
We present an evaluation of the operational MODIS Leaf Area Index (LAI) product over two temperate d...
Phenology monitoring allows a better understanding of forest functioning and climate impacts. Satell...
Monitoring plant phenology is one of the means of detecting the response of vegetation to changing e...
Land Surface Phenology (LSP) and Leaf Area Index (LAI) are important variables that describe the pho...
Land Surface Phenology (LSP) and Leaf Area Index (LAI) are important variables that describe the pho...
Since several years, more and more studies aim at developing phenology products from satellite time-...
Since several years, more and more studies aim at developing phenology products from satellite time-...
Leaf area index (LAI) or plant area index (PAI) are commonly used to represent canopy structure and ...
Vegetation phenology studies the timing of recurring seasonal dynamics and can be monitored through ...
The leaf area index (LAI) is a key characteristic of forest ecosystems. Estimations of LAI from sate...
Monitoring vegetation structure and functioning is critical for modelling terrestrial ecosystems and...
Quantitative monitoring of vegetation change over time is essential in understanding the environment...
We present an evaluation of the operational MODIS Leaf Area Index (LAI) product over two temperate d...
Phenology monitoring allows a better understanding of forest functioning and climate impacts. Satell...
Monitoring plant phenology is one of the means of detecting the response of vegetation to changing e...
Land Surface Phenology (LSP) and Leaf Area Index (LAI) are important variables that describe the pho...
Land Surface Phenology (LSP) and Leaf Area Index (LAI) are important variables that describe the pho...
Since several years, more and more studies aim at developing phenology products from satellite time-...
Since several years, more and more studies aim at developing phenology products from satellite time-...
Leaf area index (LAI) or plant area index (PAI) are commonly used to represent canopy structure and ...
Vegetation phenology studies the timing of recurring seasonal dynamics and can be monitored through ...
The leaf area index (LAI) is a key characteristic of forest ecosystems. Estimations of LAI from sate...
Monitoring vegetation structure and functioning is critical for modelling terrestrial ecosystems and...
Quantitative monitoring of vegetation change over time is essential in understanding the environment...
We present an evaluation of the operational MODIS Leaf Area Index (LAI) product over two temperate d...
Phenology monitoring allows a better understanding of forest functioning and climate impacts. Satell...
Monitoring plant phenology is one of the means of detecting the response of vegetation to changing e...