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Feasibility of detecting Aflatoxin B-1 in single maize kernels using hyperspectral imaging

机译:利用高光谱成像技术检测单个玉米粒中黄曲霉毒素B-1的可行性

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The feasibility of detecting Aflatoxin B-1 (AFB(1)) in single maize kernel inoculated with Aspergillus flavus conidia in the field, as well as its spatial distribution in the kernels, was assessed using near-infrared hyperspectral imaging (HSI) technique. Firstly, an image mask was applied to a pixel-based image mosaic to remove background and shading. Secondly, bad lines in spectra imaging caused by inherent defects of Mercury Cadmium Telluride (MCT) detector were removed through an interactive analysis based on principal component analysis (PCA). Then a PCA procedure was carried out again on the cleaned image, key wavelengths such as 1729 and 2344 nm were shown clearly from the loading line plot of the seventh principal component (PC7). And the pixel of AFB(1) extracted from the 5-dimensional scatter plot space formed by five principal components (PCs) from PC4 to PC8 (especially PC7 and PC5) were taken as the input of the spectral angle mapper (SAM) classifier, accuracies of the three varieties of kernels reached 96.15%, 80%, and 82.61% respectively if kernels containing either high (>= 100 ppb) or low (<10 ppb) levels of aflatoxin. A slightly better test result could be got if the kernels placed with different germ orientation. Finally, the repeatability was verified using the fourth variety of kernels. (C) 2015 Elsevier Ltd. All rights reserved.
机译:使用近红外高光谱成像(HSI)技术评估了在田间接种黄曲霉分生孢子的单个玉米粒中检测黄曲霉毒素B-1(AFB(1))的可行性及其在粒中的空间分布。首先,将图像蒙版应用于基于像素的图像镶嵌,以去除背景和阴影。其次,通过基于主成分分析(PCA)的交互式分析,消除了由碲化汞镉(MCT)检测器的固有缺陷引起的光谱成像中的不良线条。然后,再次对清洁后的图像执行PCA程序,从第七主成分(PC7)的装载线图中清楚地显示了关键波长(例如1729和2344 nm)。从由PC4到PC8的五个主要成分(PC)(尤其是PC7和PC5)形成的5维散点图空间中提取的AFB(1)像素用作光谱角映射器(SAM)分类器的输入,如果籽粒中含有较高(> = 100 ppb)或低(<10 ppb)黄曲霉毒素,则三种籽粒的准确度分别达到96.15%,80%和82.61%。如果将籽粒放置在不同的胚芽方向上,则可以获得稍微更好的测试结果。最后,使用第四种内核验证了可重复性。 (C)2015 Elsevier Ltd.保留所有权利。

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