Recently, imaged-based approaches have developed rapidly for high-throughput plant phenotyping (HTPP). Imaging reduces a 3D plant into 2D images, which makes the retrieval of plant morphological traits challenging. We developed a novel LiDAR-based phenotyping instrument to generate 3D point clouds of single plants. The instrument combined a LiDAR scanner with a precision rotation stage on which an individual plant was placed. A LabVIEW program was developed to control the scanning and rotation motion, synchronize the measurements from both devices, and capture a 360° view point cloud. A data processing pipeline was developed for noise removal, voxelization, triangulation, and plant leaf surface reconstruction. Once the leaf digital surf...
BackgroundMaize (Zea mays L.) is the third most consumed grain in the world and improving maize yiel...
High-throughput phenotyping technologies have become an increasingly important topic of crop science...
3D crop reconstruction with a high temporal resolution and by the use of non-destructive measuring t...
Recently, imaged-based approaches have developed rapidly for high-throughput plant phenotyping (HTPP...
Recently, imaged-based high-throughput phenotyping methods have gained popularity in plant phenotypi...
Currently, there are no free databases of 3D point clouds and images for seedling phenotyping. There...
Accurate and high throughput extraction of crop phenotypic traits, as a crucial step of molecular br...
With the growing population and the reducing arable land, breeding has been considered as an effecti...
Plant breeding programs and a wide range of plant science applications would greatly benefit from th...
International audiencePlant phenomics is a new avenue for linking plant genomics and environmental s...
Traditional plant phenotyping usually relies on manual measurement of selected traits from a small n...
In recent years, LIDAR (light detection and ranging) sensors have been widely used to measure enviro...
Spatio–temporal determination of phenotypic traits, such as height, leaf angles, and leaf area, is i...
Geometric shoot properties of single plants and plant populations reflect the genetic variability of...
The ever-growing world population brings the challenge for food security in the current world. The g...
BackgroundMaize (Zea mays L.) is the third most consumed grain in the world and improving maize yiel...
High-throughput phenotyping technologies have become an increasingly important topic of crop science...
3D crop reconstruction with a high temporal resolution and by the use of non-destructive measuring t...
Recently, imaged-based approaches have developed rapidly for high-throughput plant phenotyping (HTPP...
Recently, imaged-based high-throughput phenotyping methods have gained popularity in plant phenotypi...
Currently, there are no free databases of 3D point clouds and images for seedling phenotyping. There...
Accurate and high throughput extraction of crop phenotypic traits, as a crucial step of molecular br...
With the growing population and the reducing arable land, breeding has been considered as an effecti...
Plant breeding programs and a wide range of plant science applications would greatly benefit from th...
International audiencePlant phenomics is a new avenue for linking plant genomics and environmental s...
Traditional plant phenotyping usually relies on manual measurement of selected traits from a small n...
In recent years, LIDAR (light detection and ranging) sensors have been widely used to measure enviro...
Spatio–temporal determination of phenotypic traits, such as height, leaf angles, and leaf area, is i...
Geometric shoot properties of single plants and plant populations reflect the genetic variability of...
The ever-growing world population brings the challenge for food security in the current world. The g...
BackgroundMaize (Zea mays L.) is the third most consumed grain in the world and improving maize yiel...
High-throughput phenotyping technologies have become an increasingly important topic of crop science...
3D crop reconstruction with a high temporal resolution and by the use of non-destructive measuring t...