Publications
, “Close-range hyperspectral image analysis for the early detection of plant stress responses in individual plants in a high-throughput phenotyping platform”, ISPRS Journal of Photogrammetry and Remote Sensing , vol. 138, pp. 121-138, 2018.
, “Analysis of hyperspectral images for detection of drought stress and recovery in maize plants in a high-throughput phenotyping platform”, Computers and Electronics in Agriculture, vol. 162, pp. 749-758, 2019. shahrimie_2019.pdf (3.12 MB)
 shahrimie_2019.pdf (3.12 MB)
 shahrimie_2019.pdf (3.12 MB)
 shahrimie_2019.pdf (3.12 MB), “Analysis of Plant Stress Response Using Hyperspectral Imaging and Kernel Ridge Regression”, in 11th International Conference on Robotics, Vision, Signal Processing and Power Applications, Singapore, 2022, vol. 829.
, “Non-Destructive Analysis of Plant Physiological Traits Using Hyperspectral Imaging: A Case Study on Drought Stress”, Computers and Electronics in Agriculture, vol. 195, no. 106806, 2022. 1-s2.0-s0168169922001235-main.pdf (5.53 MB)
 1-s2.0-s0168169922001235-main.pdf (5.53 MB)
 1-s2.0-s0168169922001235-main.pdf (5.53 MB)
 1-s2.0-s0168169922001235-main.pdf (5.53 MB), “Non-destructive analysis of plant physiological traits using hyperspectral imaging: A case study on drought stress”, Computers and Electronics in Agriculture, vol. 195, p. 106806, 2022. non-destructive_analysis_of_plant_physiological_traits_using_hyperspectral.pdf (5.53 MB)
 non-destructive_analysis_of_plant_physiological_traits_using_hyperspectral.pdf (5.53 MB)
 non-destructive_analysis_of_plant_physiological_traits_using_hyperspectral.pdf (5.53 MB)
 non-destructive_analysis_of_plant_physiological_traits_using_hyperspectral.pdf (5.53 MB)

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