In the present study, we aimed to map canopy heights in the Brazilian Amazon mainly on the basis of spaceborne LiDAR and cloud-free MODIS imagery with a new method (the Self-Organizing Relationships method) for spatial modeling of the LiDAR footprint. To evaluate the general versatility, we compared the created canopy height map with two different canopy height estimates on the basis of our original field study plots (799 plots located in eight study sites) and a previously developed canopy height map. The compared canopy height estimates were obtained by: (1) a stem diameter at breast height (D) - tree height (H) relationship specific to each site on the basis of our original field study, (2) a previously developed D-H model involving envi...
Aim: The size structure of a forest canopy is an important descriptor of the forest environment that...
LiDAR data has been successfully used to estimate forest parameters such as canopy heights and bioma...
Accurate estimates of aboveground biomass (AGB) in tropical forests are critical for supporting stra...
Canopy height models derived from LiDAR data collected across the Brazilian Amazon. The files are pr...
Canopy height is a key variable in tropical forest functioning and for regional carbon inventories. ...
International audienceCanopy height is a key variable in tropical forest functioning and for regiona...
Between 2016 and 2018, the EBA airborne missions (conducted by the Brazilian National Institute for ...
LiDAR data has been successfully used to estimate forest parameters such as canopy heights and bioma...
Canopy height is a key variable in tropical forest functioning and for regional carbon inventories. ...
LiDAR data has been successfully used to estimate forest parameters such as canopy heights and bioma...
Leaf area index (LAI) is an important parameter to describe the capacity of forests to intercept lig...
[Departement_IRSTEA]Territoires [TR1_IRSTEA]SYNERGIE [Axe_IRSTEA]TETIS-ATTOSInternational audienceLi...
Canopy structural data can be used for biomass estimation and studies of carbon cycling, disturbance...
The Amazon Forest, the largest contiguous tropical forest in the world, stores a significant fractio...
Aim: The size structure of a forest canopy is an important descriptor of the forest environment that...
LiDAR data has been successfully used to estimate forest parameters such as canopy heights and bioma...
Accurate estimates of aboveground biomass (AGB) in tropical forests are critical for supporting stra...
Canopy height models derived from LiDAR data collected across the Brazilian Amazon. The files are pr...
Canopy height is a key variable in tropical forest functioning and for regional carbon inventories. ...
International audienceCanopy height is a key variable in tropical forest functioning and for regiona...
Between 2016 and 2018, the EBA airborne missions (conducted by the Brazilian National Institute for ...
LiDAR data has been successfully used to estimate forest parameters such as canopy heights and bioma...
Canopy height is a key variable in tropical forest functioning and for regional carbon inventories. ...
LiDAR data has been successfully used to estimate forest parameters such as canopy heights and bioma...
Leaf area index (LAI) is an important parameter to describe the capacity of forests to intercept lig...
[Departement_IRSTEA]Territoires [TR1_IRSTEA]SYNERGIE [Axe_IRSTEA]TETIS-ATTOSInternational audienceLi...
Canopy structural data can be used for biomass estimation and studies of carbon cycling, disturbance...
The Amazon Forest, the largest contiguous tropical forest in the world, stores a significant fractio...
Aim: The size structure of a forest canopy is an important descriptor of the forest environment that...
LiDAR data has been successfully used to estimate forest parameters such as canopy heights and bioma...
Accurate estimates of aboveground biomass (AGB) in tropical forests are critical for supporting stra...