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利用高光谱反射成像和人工神经网络检测桃的冷害。

Detection of cold injury in peaches by hyperspectral reflectance imaging and artificial neural network.

机构信息

College of Food Science and Technology, Nanjing Agricultural University, No. 1 Weigang Road, Nanjing 210095, PR China.

Chongming Food and Drug Administration, Shanghai, No. 128, Renmin Road, Chengqiao Town, Chongming County 202150, PR China.

出版信息

Food Chem. 2016 Feb 1;192:134-41. doi: 10.1016/j.foodchem.2015.06.106. Epub 2015 Jun 30.

Abstract

Peaches in cold storage may develop chill damage, as symptomized by deteriorated texture and lack of juice. To examine fruit quality, we established a hyperspectral imaging system to detect cold injury, and an artificial neural network (ANN) model was developed for which eight optimal wavelengths were selected. Between normal and chill-damaged peaches, significant differences in fruit quality parameters and the spectral response to correlating selected wavelengths were observed. Evidencing this relationship, the correlation coefficients between quality parameters and the respective spectral response of eight selected wavelengths were -0.587 to -0.700, 0.393 to 0.552, 0.510 to 0.751, and 0.574 to 0.773. With optimal representative wavelengths as inputs for the ANN model, the overall classification accuracy of chill damage was 95.8% for all cold-stored samples. The ANN prediction models for quality parameters performed well, with correlation coefficients from 0.6979 to 0.9026. This research demonstrates feasibility of hyperspectral reflectance imaging technique for detecting cold injury.

摘要

冷藏桃子可能会发生冷害,表现为质地恶化和缺乏汁液。为了检查水果的质量,我们建立了一个高光谱成像系统来检测冷害,并开发了一个人工神经网络(ANN)模型,从中选择了八个最佳波长。在正常和受冷害的桃子之间,观察到了水果质量参数和与所选波长相关的光谱响应之间的显著差异。证明了这种关系,质量参数与八个所选波长各自光谱响应之间的相关系数为-0.587 至-0.700、0.393 至 0.552、0.510 至 0.751 和 0.574 至 0.773。对于 ANN 模型,将最佳代表性波长作为输入,所有冷藏样本的冷害整体分类准确率为 95.8%。质量参数的 ANN 预测模型表现良好,相关系数为 0.6979 至 0.9026。这项研究证明了高光谱反射成像技术在检测冷害方面的可行性。

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