Variable-rate technologies and site-specific crop nutrient management require real-time spatial information about the potential for response to in-season crop management interventions. Thermal and spectral properties of canopies can provide relevant information for non-destructive measurement of crop water and nitrogen stresses. In previous studies, foliage temperature was successfully estimated from canopy-scale (mixed foliage and soil) temperatures and the multispectral Canopy Chlorophyll Content Index (CCCI) was effective in measuring canopy-scale N status in rainfed wheat (Triticum aestivum L.) systems in Horsham, Victoria, Australia. In the present study, results showed that under irrigated wheat systems in Maricopa, Arizona, USA, the ...
This work addresses the need for meaningful spatial indices of the physiological condition of field ...
Availability of water is one of the most limiting factors in crop production. Current technologies f...
Remote sensing technology to study vegetative canopies by measuring optical, thermal, and microwave ...
Variable-rate technologies and site-specific crop nutrient management require real-time spatial info...
Nitrogen (N) is the largest agricultural input in many Australian cropping systems and applying the ...
We tested the capacity of several published multispectral indices to estimate the nitrogen nutrition...
Remote sensing is a valuable tool for reducing the environmental impact of agricultural practices by...
Varying the spatial distribution of applied nitrogen (N) fertilizer to match demand in crops has bee...
Estimation of canopy N content in rainfed environments early in the growing season and across differ...
Varying the spatial distribution of applied nitrogen (N) fertilizer to match demand in crops has bee...
Free to read at publisher Estimation of canopy N content in rainfed environments early in the growin...
Water and nitrogen (N) are undoubtedly the two largest agricultural inputs globally. Coupled with ad...
Water and nitrogen (N) are undoubtedly the two largest agricultural inputs globally. Coupled with ad...
For this study we hypothesise that the use of canopy chlorophyll content index (CCCI) and crop green...
Abstract Field spectroscopy was used to assess the nitrogen status and monitor crop growth and produ...
This work addresses the need for meaningful spatial indices of the physiological condition of field ...
Availability of water is one of the most limiting factors in crop production. Current technologies f...
Remote sensing technology to study vegetative canopies by measuring optical, thermal, and microwave ...
Variable-rate technologies and site-specific crop nutrient management require real-time spatial info...
Nitrogen (N) is the largest agricultural input in many Australian cropping systems and applying the ...
We tested the capacity of several published multispectral indices to estimate the nitrogen nutrition...
Remote sensing is a valuable tool for reducing the environmental impact of agricultural practices by...
Varying the spatial distribution of applied nitrogen (N) fertilizer to match demand in crops has bee...
Estimation of canopy N content in rainfed environments early in the growing season and across differ...
Varying the spatial distribution of applied nitrogen (N) fertilizer to match demand in crops has bee...
Free to read at publisher Estimation of canopy N content in rainfed environments early in the growin...
Water and nitrogen (N) are undoubtedly the two largest agricultural inputs globally. Coupled with ad...
Water and nitrogen (N) are undoubtedly the two largest agricultural inputs globally. Coupled with ad...
For this study we hypothesise that the use of canopy chlorophyll content index (CCCI) and crop green...
Abstract Field spectroscopy was used to assess the nitrogen status and monitor crop growth and produ...
This work addresses the need for meaningful spatial indices of the physiological condition of field ...
Availability of water is one of the most limiting factors in crop production. Current technologies f...
Remote sensing technology to study vegetative canopies by measuring optical, thermal, and microwave ...