We present a new application of terrestrial laser scanning and mathematical modelling for the quantitative change detection of tree biomass, volume, and structure. We investigate the feasibility of the approach with two case studies on trees, assess the accuracy with laboratory reference measurements, and identify the main sources of error, and the ways to mitigate their effect on the results. We show that the changes in the tree branching structure can be reproduced with about ±10% accuracy. As the current biomass detection is based on destructive sampling, and the change detection is based on empirical models, our approach provides a non-destructive tool for monitoring important forest characteristics without laborious biomass sampling. T...
Forests play a central role in the management of the Earth’s climate. Airborne laser scanning (ALS) ...
Terrestrial laser scanning (TLS) is providing exciting new ways to quantify tree and forest structur...
Terrestrial laser scanning (TLS) accompanied by quantitative tree-modeling algorithms can potentiall...
Understanding the structure and dynamics of trees and forest is key in studying the environment and ...
The assessment of aboveground tree biomass (AGB) is essential to the evaluation of tree populations ...
AbstractThe assessment of aboveground tree biomass (AGB) is essential to the evaluation of tree popu...
Terrestrial laser scanning (TLS) technology is a powerful tool for assessing tree growth based on ti...
Background: Laser scanning technology has opened new horizons for the research of forest dynamics, b...
New laser scanning technologies are set to revolutionize the way in which we measure and understand ...
Growing stock volume and biomass are among the most important attributes in forest-related decision ...
This study explored the feasibility of using the terrestrial laser scanner (TLS) and quantitative st...
This paper investigates the application of a ground-based laser scanning system for providing quanti...
Terrestrial laser scanning (TLS) is providing exciting new ways to quantify tree and forest structur...
Requirements for describing coniferous forests are changing in response to wildfire concerns, bio-en...
Forests play a central role in the management of the Earth’s climate. Airborne laser scanning (ALS) ...
Forests play a central role in the management of the Earth’s climate. Airborne laser scanning (ALS) ...
Terrestrial laser scanning (TLS) is providing exciting new ways to quantify tree and forest structur...
Terrestrial laser scanning (TLS) accompanied by quantitative tree-modeling algorithms can potentiall...
Understanding the structure and dynamics of trees and forest is key in studying the environment and ...
The assessment of aboveground tree biomass (AGB) is essential to the evaluation of tree populations ...
AbstractThe assessment of aboveground tree biomass (AGB) is essential to the evaluation of tree popu...
Terrestrial laser scanning (TLS) technology is a powerful tool for assessing tree growth based on ti...
Background: Laser scanning technology has opened new horizons for the research of forest dynamics, b...
New laser scanning technologies are set to revolutionize the way in which we measure and understand ...
Growing stock volume and biomass are among the most important attributes in forest-related decision ...
This study explored the feasibility of using the terrestrial laser scanner (TLS) and quantitative st...
This paper investigates the application of a ground-based laser scanning system for providing quanti...
Terrestrial laser scanning (TLS) is providing exciting new ways to quantify tree and forest structur...
Requirements for describing coniferous forests are changing in response to wildfire concerns, bio-en...
Forests play a central role in the management of the Earth’s climate. Airborne laser scanning (ALS) ...
Forests play a central role in the management of the Earth’s climate. Airborne laser scanning (ALS) ...
Terrestrial laser scanning (TLS) is providing exciting new ways to quantify tree and forest structur...
Terrestrial laser scanning (TLS) accompanied by quantitative tree-modeling algorithms can potentiall...