Here, we conducted drought stress gradient experiments of maize, and used ten water content related vegetation indices (VIs) to estimate widely variable canopy water content (CWC) and mean leaf equivalent water thickness at canopy level (({overline{EWT}})) based on in situ measurements of Lambertian equivalent reflectance and important biological and environmental factors during the 2013−2014 growing seasons in the North China Plain. Among ten VIs, the performances of green chlorophyll index (CIgreen), red edge chlorophyll index (CIred edge), and the red edge normalized ratio (NRred edge) were most sensitive to the variations of CWC and ({overline{EWT}}). Simulated drought in two differently managed irrigation years did not affect the sensi...
In this study, an ASD spectrometer made in USA is used to derive the hyperspectral data of cotton le...
This paper presents a method for mapping water stress in a maize field using hyperspectral remote se...
We estimated the light use efficiency (LUE) via vegetation canopy chlorophyll content (CCCcanopy) ba...
Here, we conducted drought stress gradient experiments of maize, and used ten water content related ...
BackgroundVegetation water content is one of the important biophysical features of vegetation health...
Abstract—Monitoring crop water content by remote sensing has been an important problem for agricultu...
This study evaluates the performance of structural, chlorophyll-based, and photochemical indices to ...
In this study, we evaluated the effectiveness of photochemical reflectance index (PRI) and non-photo...
China is one the largest maize (Zea mays L.) producer worldwide. Considering water deficit as one of...
Drought is the leading cause of crop loss globally. Breeding for drought tolerance is difficult due ...
During water stress, crops undertake adjustments in functional, structural, and biochemical traits. ...
ABSTRACT: Water stress is the major growth limiting factor in rainfall dependent agriculture regions...
International audienceThe deployment of novel technologies in the field of precision farming has ris...
Water is an important component of vegetation canopies and the timely monitoring of vegetation moist...
International audienceThis study used hyperspectral reflectance data to evaluate the crop physiologi...
In this study, an ASD spectrometer made in USA is used to derive the hyperspectral data of cotton le...
This paper presents a method for mapping water stress in a maize field using hyperspectral remote se...
We estimated the light use efficiency (LUE) via vegetation canopy chlorophyll content (CCCcanopy) ba...
Here, we conducted drought stress gradient experiments of maize, and used ten water content related ...
BackgroundVegetation water content is one of the important biophysical features of vegetation health...
Abstract—Monitoring crop water content by remote sensing has been an important problem for agricultu...
This study evaluates the performance of structural, chlorophyll-based, and photochemical indices to ...
In this study, we evaluated the effectiveness of photochemical reflectance index (PRI) and non-photo...
China is one the largest maize (Zea mays L.) producer worldwide. Considering water deficit as one of...
Drought is the leading cause of crop loss globally. Breeding for drought tolerance is difficult due ...
During water stress, crops undertake adjustments in functional, structural, and biochemical traits. ...
ABSTRACT: Water stress is the major growth limiting factor in rainfall dependent agriculture regions...
International audienceThe deployment of novel technologies in the field of precision farming has ris...
Water is an important component of vegetation canopies and the timely monitoring of vegetation moist...
International audienceThis study used hyperspectral reflectance data to evaluate the crop physiologi...
In this study, an ASD spectrometer made in USA is used to derive the hyperspectral data of cotton le...
This paper presents a method for mapping water stress in a maize field using hyperspectral remote se...
We estimated the light use efficiency (LUE) via vegetation canopy chlorophyll content (CCCcanopy) ba...