Radiative transfer models have seldom been applied for studying heterogeneous grassland canopies. Here, the potential of radiative transfer modeling to predict LAI and leaf and canopy chlorophyll contents in a heterogeneous Mediterranean grassland is investigated. The widely used PROSAIL model was inverted with canopy spectral reflectance measurements by means of a look-up table (LUT). Canopy spectral measurements were acquired in the field using a GER 3700 spectroradiometer, along with simultaneous in situ measurements of LAI and leaf chlorophyll content. We tested the impact of using multiple solutions, stratification (according to species richness), and spectral subsetting on parameter retrieval. To assess the performance of the model in...
The inversion of canopy reflectance models is a procedure widely employed for the retrieval of LAI f...
This paper presents a design for improving the predictive power of a growth model for grasslands by ...
Automated, image based methods for the retrieval of vegetation biophysical and biochemical variables...
Radiative transfer models have seldom been applied for studying heterogeneous grassland canopies. He...
Radiative transfer models have seldom been applied for studying heterogeneous grassland canopies. He...
The study shows that leaf area index (LAI), leaf chlorophyll content (LCC) and canopy chlorophyll co...
Accurate quantitative estimation of vegetation biochemical characteristics is necessary for a large ...
The study shows that leaf area index (LAI) and canopy chlorophyll content can be mapped in a heterog...
The Leaf Area Index (LAI) is a key parameter controlling biophysical exchange processes in the veget...
The amount of leaf area and canopy absorbed photosynthetically active radiation (APAR) (often expres...
Statistical and physical models have seldom been compared in studying grasslands. In this paper, bot...
Natural vegetation is complex and its reflectance is not easy to model. The aim of this study was to...
The coupling of radiative transfer, energy balance, and photosynthesis models has brought new opport...
Seasonal changes in leaf chlorophyll across the canopy vertical profile provide information on ecosy...
Vegetation is the main source of primary production and plays an important role inmodeling the excha...
The inversion of canopy reflectance models is a procedure widely employed for the retrieval of LAI f...
This paper presents a design for improving the predictive power of a growth model for grasslands by ...
Automated, image based methods for the retrieval of vegetation biophysical and biochemical variables...
Radiative transfer models have seldom been applied for studying heterogeneous grassland canopies. He...
Radiative transfer models have seldom been applied for studying heterogeneous grassland canopies. He...
The study shows that leaf area index (LAI), leaf chlorophyll content (LCC) and canopy chlorophyll co...
Accurate quantitative estimation of vegetation biochemical characteristics is necessary for a large ...
The study shows that leaf area index (LAI) and canopy chlorophyll content can be mapped in a heterog...
The Leaf Area Index (LAI) is a key parameter controlling biophysical exchange processes in the veget...
The amount of leaf area and canopy absorbed photosynthetically active radiation (APAR) (often expres...
Statistical and physical models have seldom been compared in studying grasslands. In this paper, bot...
Natural vegetation is complex and its reflectance is not easy to model. The aim of this study was to...
The coupling of radiative transfer, energy balance, and photosynthesis models has brought new opport...
Seasonal changes in leaf chlorophyll across the canopy vertical profile provide information on ecosy...
Vegetation is the main source of primary production and plays an important role inmodeling the excha...
The inversion of canopy reflectance models is a procedure widely employed for the retrieval of LAI f...
This paper presents a design for improving the predictive power of a growth model for grasslands by ...
Automated, image based methods for the retrieval of vegetation biophysical and biochemical variables...