Agriculture Victoria, AgriBio, Centre for AgriBioscience, Bundoora, VIC 3083, Australia.
Agriculture Victoria Research, 110 Natimuk Road, Horsham, VIC 3400, Australia.
Sensors (Basel). 2022 Mar 3;22(5):1981. doi: 10.3390/s22051981.
Near-infrared (800-2500 nm; NIR) spectroscopy coupled to hyperspectral imaging (NIR-HSI) has greatly enhanced its capability and thus widened its application and use across various industries. This non-destructive technique that is sensitive to both physical and chemical attributes of virtually any material can be used for both qualitative and quantitative analyses. This review describes the advancement of NIR to NIR-HSI in agricultural applications with a focus on seed quality features for agronomically important seeds. NIR-HSI seed phenotyping, describing sample sizes used for building high-accuracy calibration and prediction models for full or selected wavelengths of the NIR region, is explored. The molecular interpretation of absorbance bands in the NIR region is difficult; hence, this review offers important NIR absorbance band assignments that have been reported in literature. Opportunities for NIR-HSI seed phenotyping in forage grass seed are described and a step-by-step data-acquisition and analysis pipeline for the determination of seed quality in perennial ryegrass seeds is also presented.
近红外(800-2500nm;NIR)光谱与高光谱成像(NIR-HSI)相结合,大大提高了其能力,从而拓宽了其在各个行业的应用和用途。这种对几乎任何材料的物理和化学属性都敏感的非破坏性技术可用于定性和定量分析。本综述介绍了近红外向近红外高光谱成像在农业应用中的发展,重点介绍了对农艺重要种子的种子质量特征。探讨了用于建立高准确度校准和预测模型的样本大小,这些模型适用于 NIR 区域的全波长或选定波长。NIR 区域中吸收带的分子解释很困难;因此,本综述提供了文献中报道的重要 NIR 吸收带分配。还描述了 NIR-HSI 牧草种子表型的机会,并提出了一个用于确定多年生黑麦草种子质量的逐步数据采集和分析管道。