This paper presents a method for mapping water stress in a maize field using hyperspectral remote sensing imagery. An airborne survey using AISA (Specim, Finland) was performed in July 2008 over an experimental farm in Italy. Hyperspectral data were acquired over a maize field with three different irrigation regimes. An intensive field campaign was also conducted concurrently with imagery acquisition to measure relative leaf water content (RWC), active chlorophyll fluorescence (δF/Fm'), leaf temperature (Tl) and Leaf Area Index (LAI). The analysis of the field data showed that at the time of the airborne overpass the maize plots with irrigation deficits were experiencing a moderate water stress, affecting the plant physiological status (δF/...
Remotely sensed estimation of leaf water content (LWC) using optical data at early crop growth stage...
This paper outlines the ways in which thermal and spectral remote sensing can be used to monitor the...
China is one the largest maize (Zea mays L.) producer worldwide. Considering water deficit as one of...
This paper presents a method for mapping water stress in a maize field using hyperspectral remote se...
This paper presents a method for mapping water stress in a maize field using hyperspectral remote se...
This study evaluates the potential of airborne remote sensing images to detect water stress in maize...
ABSTRACT: Water stress is the major growth limiting factor in rainfall dependent agriculture regions...
In this study, we evaluated the effectiveness of photochemical reflectance index (PRI) and non-photo...
Mapping maize water stress status and monitoring its spatial variability at a farm scale are a prere...
ABSTRACT Spectral remote sensing offers the potential to provide more information for making better-...
Plants frequently suffer from different types of stress and their combination. Timely and effective ...
Progress made on the detection of stress in heterogeneous crop canopies with hyperspectral remote se...
This study used hyperspectral data to determine nitrogen, weed, and water stresses in a corn (Zea m...
Many applications require a timely acquisition of high spatial and spectral resolution remote sensin...
High-resolution airborne thermal infrared (TIR) together with sun-induced fluorescence (SIF) and hyp...
Remotely sensed estimation of leaf water content (LWC) using optical data at early crop growth stage...
This paper outlines the ways in which thermal and spectral remote sensing can be used to monitor the...
China is one the largest maize (Zea mays L.) producer worldwide. Considering water deficit as one of...
This paper presents a method for mapping water stress in a maize field using hyperspectral remote se...
This paper presents a method for mapping water stress in a maize field using hyperspectral remote se...
This study evaluates the potential of airborne remote sensing images to detect water stress in maize...
ABSTRACT: Water stress is the major growth limiting factor in rainfall dependent agriculture regions...
In this study, we evaluated the effectiveness of photochemical reflectance index (PRI) and non-photo...
Mapping maize water stress status and monitoring its spatial variability at a farm scale are a prere...
ABSTRACT Spectral remote sensing offers the potential to provide more information for making better-...
Plants frequently suffer from different types of stress and their combination. Timely and effective ...
Progress made on the detection of stress in heterogeneous crop canopies with hyperspectral remote se...
This study used hyperspectral data to determine nitrogen, weed, and water stresses in a corn (Zea m...
Many applications require a timely acquisition of high spatial and spectral resolution remote sensin...
High-resolution airborne thermal infrared (TIR) together with sun-induced fluorescence (SIF) and hyp...
Remotely sensed estimation of leaf water content (LWC) using optical data at early crop growth stage...
This paper outlines the ways in which thermal and spectral remote sensing can be used to monitor the...
China is one the largest maize (Zea mays L.) producer worldwide. Considering water deficit as one of...