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MULTISPECTRAL FLUORESCENCE IMAGING TECHNIQUE FOR DISCRIMINATION OF CUCUMBER SEED VIABILITY

机译:判别黄瓜种子活力的多光谱荧光成像技术

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摘要

In this study, we developed a nondestructive method for discriminating viable cucumber (Cucumis sativus) seeds based on hyperspectral fluorescence imaging. The fluorescence spectra of cucumber seeds in the 425-700 nm range were extracted from hyperspectral fluorescence images obtained using 365 nm ultraviolet excitation. Four kinds of algorithms, using single-waveband images or multi-waveband images, were developed to discriminate viable and nonviable seeds. The optimal wavebands for each algorithm to use were determined using correlation analysis. The single-waveband image (SWI) algorithm based on images at 684 nm yielded discrimination accuracies of 99.0% and 97.0% for viable seeds and nonviable seeds, respectively. The discrimination accuracies of the algorithms based on the subtraction image (S621-425), the ratio image (R-602/530), and the ratio-subtraction image (R520-698/602-698) were 100% and 99.0% for viable and non-viable seeds, respectively. The results demonstrate that hyperspectral fluorescence imaging has potential for quality sorting of cucumber seeds based on viability.
机译:在这项研究中,我们开发了一种基于高光谱荧光成像技术来鉴别黄瓜(Cucumis sativus)种子的非破坏性方法。从使用365 nm紫外线激发获得的高光谱荧光图像中提取425-700 nm范围内的黄瓜种子的荧光光谱。开发了使用单波段图像或多波段图像的四种算法来区分有生命和无生命的种子。通过相关分析确定每种算法要使用的最佳波段。基于684 nm图像的单波段图像(SWI)算法对活种子和非活种子分别产生99.0%和97.0%的分辨精度。基于减法图像(S621-425),比率图像(R-602 / 530)和比率减法图像(R520-698 / 602-698)的算法的判别准确性分别为100%和99.0%存活种子和非存活种子。结果表明,高光谱荧光成像具有基于生存力对黄瓜种子进行质量分类的潜力。

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