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Yan Guo
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Quantification of the Cumulative Shading Capacity in a Maize–Soybean Intercropping System Using an Unmanned Aerial Vehicle
Comparison of Modelling Strategies to Estimate Phenotypic Values from an Unmanned Aerial Vehicle with Spectral and Temporal Vegetation Indexes
Pixel size of aerial imagery constrains the applications of unmanned aerial vehicle in crop breeding
Estimation of aboveground biomass and leaf area for a wheat trial index using unmanned aerial vehicle
Estimation of plant height using a high throughput phenotyping platform based on unmanned aerial vehicle and self-calibration: Example for sorghum breeding
The big impacts of image resolution on the estimation of ground coverage for wheat in UAV survey
Optimizing soil-coring strategies to quantify root-length-density distribution in field-grown maize: virtual coring trials using 3-D root architecture models
Estimation of canopy height using an unmanned aerial vehicle in the field during wheat growth season
Dynamic monitoring of NDVI in wheat agronomy and breeding trials using an unmanned aerial vehicle
Comparison of ground cover estimates from experiment plots in cotton, sorghum and sugarcane based on images and ortho-mosaics captured by UAV
Dynamic monitoring of canopy structure by time serial photography of early stage growth of wheat
Improvement of the model capacity and assessment traits related with water use efficiency for wheat in Australia
Dynamic quantification of canopy structure to characterize early plant vigour in wheat genotypes
Simplification of leaf surfaces from scanned data: Effects of two algorithms on leaf morphology
Assessment of the influence of global dimming on the photosynthetic production of rice based on three-dimensional modeling
Assessment of the effects of leaf angle combinations on potential photosynthesis capacity of rice with 3-D models using high performance computing
Three-dimensional digitization in situ of rice canopies and virtual stratified-clipping method.
Comparison of architecture among different cultivars of hybrid rice using spatial light model based on 3D digitizing
Canopy Architecture Quantification and Spatial Direct Light Interception Modeling of Hybrid Rice
A field-based high-throughput method for acquiring canopy architecture using unmanned aerial vehicle images
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