The leaf area index (LAI) of plant canopies is an important structural parameter that controls energy, water, and gas exchanges of plant ecosystems. Remote sensing techniques may offer an alternative for measuring and mapping forest LAI at a landscape scale. Given the characteristics of high spatial/spectral resolution of the WorldView-2 (WV2) sensor, it is of significance that the textural information extracted from WV2 multispectral (MS) bands will be first time used in estimating and mapping forest LAI. In this study, LAI mapping accuracies would be compared from (a) spatial resolutions between 2-m WV2 MS data and 30-m Landsat TM imagery, (b) the nature of variables between spectrum-based features and texture-based features, and (c) sens...
To accurately estimate leaf area index (LAI) in mangrove areas, the selection of appropriate models ...
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 leaf area index (LAI) of plant canopies is an important structural parameter that controls energ...
The leaf area index (LAI) of plant canopies is an important structural parameter that controls energ...
The forest canopy leaf area index (LAI) is an important structural variable directly affecting funct...
The forest canopy leaf area index (LAI) is an important structural variable directly affecting funct...
Leaf area index (LAI) is an important structural parameter in terrestrial ecosystem modelling and ma...
Leaf area index (LAI) is an important structural parameter in terrestrial ecosystem modelling and ma...
Abstract: Leaf Area Index (LAI) is an important input variable for forest ecosystem modeling as it i...
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...
Leaf area index (LAI) estimates collected from a Ponderosa pine stand in Oregon were correlated with...
Leaf area index (LAI) estimates collected from a Ponderosa pine stand in Oregon were correlated with...
With the launch of the Sentinel-2 satellites, a European capacity has been created to ensure continu...
To accurately estimate leaf area index (LAI) in mangrove areas, the selection of appropriate models ...
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 leaf area index (LAI) of plant canopies is an important structural parameter that controls energ...
The leaf area index (LAI) of plant canopies is an important structural parameter that controls energ...
The forest canopy leaf area index (LAI) is an important structural variable directly affecting funct...
The forest canopy leaf area index (LAI) is an important structural variable directly affecting funct...
Leaf area index (LAI) is an important structural parameter in terrestrial ecosystem modelling and ma...
Leaf area index (LAI) is an important structural parameter in terrestrial ecosystem modelling and ma...
Abstract: Leaf Area Index (LAI) is an important input variable for forest ecosystem modeling as it i...
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...
Leaf area index (LAI) estimates collected from a Ponderosa pine stand in Oregon were correlated with...
Leaf area index (LAI) estimates collected from a Ponderosa pine stand in Oregon were correlated with...
With the launch of the Sentinel-2 satellites, a European capacity has been created to ensure continu...
To accurately estimate leaf area index (LAI) in mangrove areas, the selection of appropriate models ...
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...