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高光谱显微镜成像技术原理及其在食品质量与安全检测中的应用:综述

Principles of Hyperspectral Microscope Imaging Techniques and Their Applications in Food Quality and Safety Detection: A Review.

作者信息

Pu Hongbin, Lin Lian, Sun Da-Wen

机构信息

School of Food Science and Engineering, South China Univ. of Technology, Guangzhou, 510641, China.

Academy of Contemporary Food Engineering, South China Univ. of Technology, Guangzhou Higher Education Mega Center, Guangzhou, 510006, China.

出版信息

Compr Rev Food Sci Food Saf. 2019 Jul;18(4):853-866. doi: 10.1111/1541-4337.12432. Epub 2019 May 1.

Abstract

Hyperspectral imaging (HSI) techniques play an important role in the food industry for providing rapid, nondestructive, and chemical-free detection method, whereas a microscope can provide detailed information about the microstructure of a food item. As an emerging imaging spectroscopy technique, hyperspectral microscope imaging (HMI) technique combines the advantages of HSI with microscopic imaging and has been gradually applied in the food industry. This review introduces the principles of different kinds of HMI techniques, such as fluorescence HMI, visible/near-infrared HMI, Raman HMI, and infrared HMI. Moreover, detailed applications of HMI techniques are summarized, including evaluation of structures of nutrients, and detection of microorganisms and residues. On the other hand, some challenges and future trends in the applications of these techniques are also discussed. It is concluded that by integrating HSI with microscopy, HMI can not only provide both spectral and spatial information about food substances but also provide their chemical information at the molecular or cellular level. Therefore, HMI techniques have great potentials in nondestructive evaluation of structures of nutrients, and detection of microorganisms and residues for the food industry.

摘要

高光谱成像(HSI)技术在食品工业中发挥着重要作用,可提供快速、无损且无化学污染的检测方法,而显微镜能够提供有关食品微观结构的详细信息。作为一种新兴的成像光谱技术,高光谱显微镜成像(HMI)技术结合了HSI与微观成像的优点,并已逐渐应用于食品工业。本文综述介绍了不同类型的HMI技术的原理,如荧光HMI、可见/近红外HMI、拉曼HMI和红外HMI。此外,总结了HMI技术的详细应用,包括营养成分结构评估、微生物和残留物检测。另一方面,还讨论了这些技术应用中的一些挑战和未来趋势。得出的结论是,通过将HSI与显微镜技术相结合,HMI不仅可以提供食品物质的光谱和空间信息,还能在分子或细胞水平上提供其化学信息。因此,HMI技术在食品工业中对营养成分结构的无损评估、微生物和残留物检测方面具有巨大潜力。

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