The retrieval of canopy biophysical variables is known to be affected by confounding factors such as plant type and background reflectance. The effects of soil type and plant architecture on the retrieval of vegetation leaf area index (LAI) from hyperspectral data were assessed in this study. In situ measurements of LAI were related to reflectances in the red and near-infrared and also to five widely used spectral vegetation indices (VIs). The study confirmed that the spectral contrast between leaves and soil background determines the strength of the LAI¿reflectance relationship. It was shown that within a given vegetation species, the optimum spectral regions for LAI estimation were similar across the investigated VIs, indicating that the ...
schlerf(at)uni-trier.de This study evaluated systematically linear predictive models between vegetat...
Leaf area index (LAI) estimates collected from a Ponderosa pine stand in Oregon were correlated with...
The study shows that leaf area index (LAI) and canopy chlorophyll content can be mapped in a heterog...
The retrieval of canopy biophysical variables is known to be affected by confounding factors such as...
The retrieval of canopy biophysical variables is known to be affected by confounding factors such as...
The aim of this study was to compare the performance of various narrow band vegetation indices in es...
The aim of this study was to compare the performance of various narrowband vegetation indices in est...
The study shows that leaf area index (LAI), leaf chlorophyll content (LCC) and canopy chlorophyll co...
Specific leaf area (SLA), which is defined as the leaf area per unit of dry leaf mass is an importan...
Understanding how biophysical and biochemical variables contribute to the spectral characteristics o...
Field spectrometer data and leaf area index (LAI) measurements were collected on the same day as the...
The estimation of Leaf Area Index (LAI) is a key parameter controlling biophysical processes of the ...
Leaf area index (LAI) is an important biophysical variable for understanding the radiation use effic...
Leaf Area Index (LAI) is a crucial biophysical variable for agroecosystems monitoring. Conventional ...
AbstractThe leaf area index (LAI) is an important vegetation parameter, which is used widely in many...
schlerf(at)uni-trier.de This study evaluated systematically linear predictive models between vegetat...
Leaf area index (LAI) estimates collected from a Ponderosa pine stand in Oregon were correlated with...
The study shows that leaf area index (LAI) and canopy chlorophyll content can be mapped in a heterog...
The retrieval of canopy biophysical variables is known to be affected by confounding factors such as...
The retrieval of canopy biophysical variables is known to be affected by confounding factors such as...
The aim of this study was to compare the performance of various narrow band vegetation indices in es...
The aim of this study was to compare the performance of various narrowband vegetation indices in est...
The study shows that leaf area index (LAI), leaf chlorophyll content (LCC) and canopy chlorophyll co...
Specific leaf area (SLA), which is defined as the leaf area per unit of dry leaf mass is an importan...
Understanding how biophysical and biochemical variables contribute to the spectral characteristics o...
Field spectrometer data and leaf area index (LAI) measurements were collected on the same day as the...
The estimation of Leaf Area Index (LAI) is a key parameter controlling biophysical processes of the ...
Leaf area index (LAI) is an important biophysical variable for understanding the radiation use effic...
Leaf Area Index (LAI) is a crucial biophysical variable for agroecosystems monitoring. Conventional ...
AbstractThe leaf area index (LAI) is an important vegetation parameter, which is used widely in many...
schlerf(at)uni-trier.de This study evaluated systematically linear predictive models between vegetat...
Leaf area index (LAI) estimates collected from a Ponderosa pine stand in Oregon were correlated with...
The study shows that leaf area index (LAI) and canopy chlorophyll content can be mapped in a heterog...