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Evaluating carotenoid changes in tomatoes during postharvest ripening using Raman chemical imaging

机译:利用拉曼化学成像评价番茄番茄的类胡萝卜素变化

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Lycopene is a major carotenoid in tomatoes and its content varies considerably during postharvest ripening. Hence evaluating lycopene changes can be used to monitor the ripening of tomatoes. Raman chemical imaging technique is promising for mapping constituents of interest in complex food matrices. In this study, a benchtop point-scanning Raman chemical imaging system was developed to evaluate lycopene content in tomatoes at different maturity stages. The system consists of a 785 nm laser, a fiber optic probe, a dispersive imaging spectrometer, a spectroscopic CCD camera, and a two-axis positioning table. Tomato samples at different ripeness stages (i.e., green, breaker, turning, pink, light red, and red) were selected and cut before imaging. Hyperspectral Raman images were acquired from cross sections of the fruits in the wavenumber range of 200 to 2500 cm-1 with a spatial resolution of 1 mm. The Raman spectrum of pure lycopene was measured as reference for spectral matching. A polynomial curve-fitting method was used to correct for the underlying fluorescence background in the Raman spectra of the tomatoes. A hyperspectral image classification method was developed based on spectral information divergence to identify lycopene in the tomatoes. Raman chemical images were created to visualize quantity and spatial distribution of the lycopene at different ripeness stages. The lycopene patterns revealed the mechanism of lycopene generation during the postharvest development of the tomatoes. The method and findings of this study form a basis for the future development of a Raman-based nondestructive approach for monitoring internal maturity of the tomatoes.
机译:番茄红素是西红柿中的主要类胡萝卜素,其含量在采后成熟过程中变化很大。因此,评估番茄红素的变化可用于监测西红柿的成熟。拉曼化学成像技术是对复杂食品基质的兴趣的构成构成有前途。在该研究中,开发了一种基准点扫描拉曼化学成像系统,以评估在不同成熟阶段的西红柿中的番茄红素含量。该系统由785nm激光器,光纤探针,分散成像光谱仪,光谱CCD摄像机和双轴定位表组成。在成像前选择并切割了不同成熟阶段(即,绿色,断路器,转动,粉红色,浅红色和红色)的番茄样本。从200至2500cm-1的波数范围内的水果的横截面获取高光谱拉曼图像,其空间分辨率为1mm。测量纯番茄红素的拉曼光谱作为光谱匹配的参考。使用多项式曲线拟合方法来校正西红柿拉曼光谱中的底层荧光背景。基于光谱信息分歧开发了高光谱图像分类方法,以鉴定西红柿中的番茄红素。创建拉曼化学图像以在不同的成熟阶段可视化番茄红素的数量和空间分布。番茄红素图案揭示了西红柿采后发育过程中番茄红素的机制。本研究的方法和调查结果为未来发展拉曼的非破坏性方法,以监测西红柿内部成熟度的基础。

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