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利用可见-近红外光谱法对新鲜番茄中番茄红素含量及其他理化特性进行无损检测。

Nondestructive measurement of fresh tomato lycopene content and other physicochemical characteristics using visible-NIR spectroscopy.

作者信息

Clément Alain, Dorais Martine, Vernon Marcia

机构信息

Food Research and Development Centre, Agriculture and Agri-Food Canada, 3600 Casavant Boulevard West, St-Hyacinthe, QC J2S 8E3, Canada.

出版信息

J Agric Food Chem. 2008 Nov 12;56(21):9813-8. doi: 10.1021/jf801299r. Epub 2008 Sep 26.

Abstract

Measurement of fresh tomato fruit overall quality, and particularly lycopene content, is challenging in the context of high-volume production. An experiment was conducted to simultaneously measure various quality parameters of tomato in a nondestructive manner using vis-NIR reflectance spectroscopy and chemometrics. The sampling set included different cultivars that are obtainable from both retailers' shelves and two greenhouse producers. Results indicate that lycopene content was accurately predicted [r(2) = 0.98; root mean square error of cross-validation (RMSECV) = 3.15 mg/kg], along with color variables such as Hunter a (r(2) = 0.98), L, and b (r(2) = 0.92). Tomato color index (TCI) was better predicted (r(2) = 0.96) than the a/ b ratio (r(2) = 0.89). Firmness prediction, with an r(2) of 0.75, is comparable to what is reported in the literature for other fruits and may have a practical interest. Prediction of internal quality such as pH, soluble solids, titratable acidity, and electrical conductivity was less accurate, partly due to a low variability of these parameters among samples. Predictions were robust with regard to cultivars, except for pink variety tomato. The 400-1000 nm range gave results almost as accurate as the 400-1500 nm range.

摘要

在大规模生产背景下,测量新鲜番茄果实的整体品质,尤其是番茄红素含量,具有挑战性。开展了一项实验,使用可见-近红外反射光谱法和化学计量学以无损方式同时测量番茄的各种品质参数。采样集包括可从零售商货架和两家温室生产商处获得的不同品种。结果表明,番茄红素含量得到了准确预测[r(2)=0.98;交叉验证均方根误差(RMSECV)=3.15毫克/千克],同时还有颜色变量,如亨特a值(r(2)=0.98)、L值和b值(r(2)=0.92)。番茄颜色指数(TCI)的预测效果(r(2)=0.96)优于a/b比值(r(2)=0.89)。硬度预测的r(2)值为0.75,与文献中报道的其他水果相当,可能具有实际意义。对内部品质如pH值、可溶性固形物、可滴定酸度和电导率的预测不太准确,部分原因是这些参数在样品间的变异性较低。除粉色品种番茄外,预测结果在不同品种间具有稳健性。400-1000纳米范围给出的结果几乎与400-1500纳米范围一样准确。

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