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Estimating percentages of fusarium-damaged kernels in hard wheat by near-infrared hyperspectral imaging

机译:近红外高光谱成像估算硬麦体损坏核心的百分比

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摘要

Fusarium head blight (FHB) is among the most common fungal diseases affecting wheat, resulting in decreased yield, low-density kernels, and production of the mycotoxin deoxynivalenol, a compound toxic to humans and livestock. Human visual analysis of representative wheat samples has been the traditional method for FHB assessment in both official inspection and plant breeding operations. While not requiring specialized equipment, visual analysis is dependent on a trained and consistent workforce, such that in the absence of these aspects, biases may arise among inspectors and evaluation dates. This research was intended to avoid such pitfalls by using longer wavelength radiation than the visible using hyperspectral imaging (HSI) on individual kernels. Linear discriminant analysis models to differentiate between sound and scab-damaged kernels were developed based on mean of reflectance values of the interior pixels of each kernel at four wavelengths (1100, 1197, 1308, and 1394 nm). Other input variables were examined, including kernel morphological properties and histogram features from the pixel responses of selected wavelengths of each kernel. The results indicate the strong potential of HSI in estimating fusarium damage. However, improvement in aligning this procedure to visual analysis is hampered by the inherent level of subjectivity in visual analysis.
机译:Fusarium Head Blight(FHB)是影响小麦的最常见的真菌疾病之一,导致产率降低,低密度仁和霉菌毒素脱辛酚的生产,对人类和牲畜的复合毒性。代表性小麦样品的人类视觉分析是官方检查和植物育种业务中的FHB评估方法。虽然不需要专门的设备,但可视化分析取决于培训和一致的劳动力,使得在没有这些方面的情况下,视察员和评估日期可能会出现偏见。该研究旨在避免使用较长波长辐射而不是在各个核上使用高光谱成像(HSI)的可见度的缺陷。基于四个波长(1100,1197,1308和1394nm)的每个核的内部像素的反射率值的平均值开发了用于区分声音和结痂损坏的核的线性判别分析模型。检查其他输入变量,包括来自每个内核的所选波长的像素响应的内核形态特性和直方图特征。结果表明HSI在估算镰刀菌损伤时强的潜力。然而,通过视觉分析中的内在性的内在性的固有水平阻碍了对准该过程对视觉分析的改进。

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