Non-destructive detection of defective maize kernels using hyperspectral imaging and convolutional neural network with attention module
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Elsevier BV
Reference43 articles.
1. Analysis of genetic variability for retention of kernel carotenoids in sub-tropically adapted biofortified maize under different storage conditions;Dutta;J. Cereal Sci.,2020
2. Moisture content, insect pests and mycotoxin levels of maize on farms in Tamale environs in the northern region of Ghana;Manu;J. Stored Prod. Res.,2019
3. Automated quantification of defective maize kernels by means of multivariate image analysis;Orlandi;Food Control,2018
4. Identification of slightly sprouted wheat kernels using hyperspectral imaging technology and different deep convolutional neural networks;Zhu;Food Control,2023
5. Challenges facing the biological control strategies for the management of Fusarium head blight of cereals caused by F. graminearum;Legrand;Biol. Control,2017
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