Enhancing the nitrogen (N) efficiency of maize hybrids is a common goal of researchers, but involves repeated field and laboratory measurements that are laborious and costly. Hyperspectral remote sensing has recently been investigated for measuring and predicting biomass, N content, and grain yield in maize. We hypothesized that vegetation indices (HSI) obtained mid-season through hyperspectral remote sensing could predict whole-plant biomass per unit of N taken up by plants (i.e., N conversion efficiency: NCE) and grain yield per unit of plant N (i.e., N internal efficiency: NIE). Our objectives were to identify the best mid-season HSI for predicting end-of-season NCE and NIE, rank hybrids by the selected HSI, and evaluate the effect of de...
The growing use of commercial unmanned aerial vehicles (UAV) and the need to adjust N fertilization ...
This study used hyperspectral data to determine nitrogen, weed, and water stresses in a corn (Zea m...
The growing use of commercial unmanned aerial vehicles (UAV) and the need to adjust N fertilization ...
Increasing the capability of maize hybrids to use nitrogen (N) more efficiently is a common goal tha...
This paper presents a method for mapping the nitrogen (N) status in a maize field using hyperspectra...
Significant portions of nitrogen (40–60%), phosphorus (80–90%) and potash (30–50%) applied in agricu...
Vegetation indices (VIs) derived from active or passive sensors have been used for maize growth moni...
Estimating crop nitrogen (N) status with sensors can be useful to adjust fertilizer levels to crop r...
Vegetation indices (VIs) derived from active or passive sensors have been used for maize growth moni...
Remote sensing allows fast assessment of crop monitoring over large areas; however, questions regard...
Nitrogen (N) is a limiting nutrient in maize that is an environmental issue; the result of over or a...
Mapping crop within-field yield variability provide an essential piece of information for precision ...
Maize crop production is constrained worldwide by nitrogen (N) availability and particularly in poor...
Maize crop production is constrained worldwide by nitrogen (N) availability and particularly in poor...
Advanced remote sensing techniques for estimating crop nitrogen (N) are crucial for optimizing N fer...
The growing use of commercial unmanned aerial vehicles (UAV) and the need to adjust N fertilization ...
This study used hyperspectral data to determine nitrogen, weed, and water stresses in a corn (Zea m...
The growing use of commercial unmanned aerial vehicles (UAV) and the need to adjust N fertilization ...
Increasing the capability of maize hybrids to use nitrogen (N) more efficiently is a common goal tha...
This paper presents a method for mapping the nitrogen (N) status in a maize field using hyperspectra...
Significant portions of nitrogen (40–60%), phosphorus (80–90%) and potash (30–50%) applied in agricu...
Vegetation indices (VIs) derived from active or passive sensors have been used for maize growth moni...
Estimating crop nitrogen (N) status with sensors can be useful to adjust fertilizer levels to crop r...
Vegetation indices (VIs) derived from active or passive sensors have been used for maize growth moni...
Remote sensing allows fast assessment of crop monitoring over large areas; however, questions regard...
Nitrogen (N) is a limiting nutrient in maize that is an environmental issue; the result of over or a...
Mapping crop within-field yield variability provide an essential piece of information for precision ...
Maize crop production is constrained worldwide by nitrogen (N) availability and particularly in poor...
Maize crop production is constrained worldwide by nitrogen (N) availability and particularly in poor...
Advanced remote sensing techniques for estimating crop nitrogen (N) are crucial for optimizing N fer...
The growing use of commercial unmanned aerial vehicles (UAV) and the need to adjust N fertilization ...
This study used hyperspectral data to determine nitrogen, weed, and water stresses in a corn (Zea m...
The growing use of commercial unmanned aerial vehicles (UAV) and the need to adjust N fertilization ...