Abstract Background Individual tree extraction from terrestrial laser scanning (TLS) data is a prerequisite for tree-scale estimations of forest biophysical properties. This task currently is undertaken through laborious and time-consuming manual assistance and quality control. This study presents a new fully automatic approach to extract single trees from large-area TLS data. This data-driven method operates exclusively on a point cloud graph by path finding, which makes our method computationally efficient and universally applicable to data from various forest types. Results We demonstrated the proposed method on two openly available datasets. First, we achieved state-of-the-art performance on locating single trees on a benchmark dataset ...
Terrestrial laser scanning (TLS) can provide accurate and detailed three-dimensional (3D) structure ...
This paper presents a method for fitting cylinders into a point cloud, derived from a terrestrial la...
Extracting 3D tree models based on terrestrial laser scanning (TLS) point clouds is a challenging ta...
International audienceBackground: Individual tree extraction from terrestrial laser scanning (TLS) d...
Laser scanning technology plays an important role in forest inventory, as it enables accurate 3D inf...
Terrestrial laser scanning (TLS) is a ground-based approach to rapidly acquire 3D point clouds via L...
Using a terrestrial laser scanner (TLS) in single-scan mode for achieving plot level reference data ...
Recent technological developments, which has reliable accuracy and quality for all engineering works...
Using terrestrial laser scanning (TLS) technology, forests can be digitized at the centimeter-level ...
The present study introduces an advanced method for 3D segmentation of terrestrial laser scanning da...
With the increasing use of terrestrial laser scanning (TLS) technology in the field of forest ecolog...
Extracting 3D tree models based on terrestrial laser scanning (TLS) point clouds is a challenging t...
Tree-level information can be estimated based on light detection and ranging (LiDAR) point clouds. W...
Laser scanning from different acquisition platforms enables the collection of 3D point clouds from d...
Individual tree (IT) segmentation is crucial for forest management, supporting forest inventory, bio...
Terrestrial laser scanning (TLS) can provide accurate and detailed three-dimensional (3D) structure ...
This paper presents a method for fitting cylinders into a point cloud, derived from a terrestrial la...
Extracting 3D tree models based on terrestrial laser scanning (TLS) point clouds is a challenging ta...
International audienceBackground: Individual tree extraction from terrestrial laser scanning (TLS) d...
Laser scanning technology plays an important role in forest inventory, as it enables accurate 3D inf...
Terrestrial laser scanning (TLS) is a ground-based approach to rapidly acquire 3D point clouds via L...
Using a terrestrial laser scanner (TLS) in single-scan mode for achieving plot level reference data ...
Recent technological developments, which has reliable accuracy and quality for all engineering works...
Using terrestrial laser scanning (TLS) technology, forests can be digitized at the centimeter-level ...
The present study introduces an advanced method for 3D segmentation of terrestrial laser scanning da...
With the increasing use of terrestrial laser scanning (TLS) technology in the field of forest ecolog...
Extracting 3D tree models based on terrestrial laser scanning (TLS) point clouds is a challenging t...
Tree-level information can be estimated based on light detection and ranging (LiDAR) point clouds. W...
Laser scanning from different acquisition platforms enables the collection of 3D point clouds from d...
Individual tree (IT) segmentation is crucial for forest management, supporting forest inventory, bio...
Terrestrial laser scanning (TLS) can provide accurate and detailed three-dimensional (3D) structure ...
This paper presents a method for fitting cylinders into a point cloud, derived from a terrestrial la...
Extracting 3D tree models based on terrestrial laser scanning (TLS) point clouds is a challenging ta...