Carbon stocks and fluxes in tropical forests remain large sources of uncertainty in the global carbon budget. Airborne lidar remote sensing is a powerful tool for estimating aboveground biomass, provided that lidar measurements penetrate dense forest vegetation to generate accurate estimates of surface topography and canopy heights. Tropical forest areas with complex topography present a challenge for lidar remote sensing
Airborne lidar is a technology well-suited for mapping many forest attributes, including aboveground...
The scientific community involved in the UN-REDD program is still reporting large uncertainties abo...
The UNFCCC and interest in the source of the missing terrestrial carbon sink are prompting research ...
Carbon stocks and fluxes in tropical forests remain large sources of uncertainty in the global carbo...
Background: Carbon stocks and fluxes in tropical forests remain large sources of uncertainty in the ...
Mapping aboveground carbon density in tropical forests can support CO2 emissionmonitoring and provid...
Airborne light detection and ranging (LiDAR) is fast turning the corner from demonstration technolog...
Graduation date: 2015Access restricted to the OSU Community, at author's request, from Jan. 23, 2015...
Unprecedented deforestation and forest degradation in recent decades have severely depleted the carb...
Forest biomass and carbon are critical for ecological monitoring, and yet poorly modelled in complex...
Quantification of tropical forest above-ground biomass (AGB) over large areas as input for Reduced E...
Tropical forests store more than half of the world’s forest carbon and are particularly threatened b...
Unmanned aerial vehicles are increasingly used to monitor forests. Three-dimensional models of tropi...
Background: Accurate estimation of aboveground forest biomass (AGB) and its dynamics is of paramount...
BACKGROUND: Accurate estimation of aboveground forest biomass (AGB) and its dynamics is of paramount...
Airborne lidar is a technology well-suited for mapping many forest attributes, including aboveground...
The scientific community involved in the UN-REDD program is still reporting large uncertainties abo...
The UNFCCC and interest in the source of the missing terrestrial carbon sink are prompting research ...
Carbon stocks and fluxes in tropical forests remain large sources of uncertainty in the global carbo...
Background: Carbon stocks and fluxes in tropical forests remain large sources of uncertainty in the ...
Mapping aboveground carbon density in tropical forests can support CO2 emissionmonitoring and provid...
Airborne light detection and ranging (LiDAR) is fast turning the corner from demonstration technolog...
Graduation date: 2015Access restricted to the OSU Community, at author's request, from Jan. 23, 2015...
Unprecedented deforestation and forest degradation in recent decades have severely depleted the carb...
Forest biomass and carbon are critical for ecological monitoring, and yet poorly modelled in complex...
Quantification of tropical forest above-ground biomass (AGB) over large areas as input for Reduced E...
Tropical forests store more than half of the world’s forest carbon and are particularly threatened b...
Unmanned aerial vehicles are increasingly used to monitor forests. Three-dimensional models of tropi...
Background: Accurate estimation of aboveground forest biomass (AGB) and its dynamics is of paramount...
BACKGROUND: Accurate estimation of aboveground forest biomass (AGB) and its dynamics is of paramount...
Airborne lidar is a technology well-suited for mapping many forest attributes, including aboveground...
The scientific community involved in the UN-REDD program is still reporting large uncertainties abo...
The UNFCCC and interest in the source of the missing terrestrial carbon sink are prompting research ...