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首页> 外文期刊>Journal of Food Science >Determination of metmyoglobin in cooked tan mutton using Vis/NIR hyperspectral imaging system
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Determination of metmyoglobin in cooked tan mutton using Vis/NIR hyperspectral imaging system

机译:使用VIS / NIR高光谱成像系统测定煮熟的TAN羊肉中的甲状腺蛋白

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摘要

In this study, the ENVI 4.6 software was used to obtain the spectral reflection value of samples. The outlier samples were eliminated by the Monte Carlo method, and then SPXY (sample set partitioning based on be x-y distances) was used to divide the calibration set and prediction set. The spectral images were pretreated and characteristic wavelengths were extracted. The spectral models of full and pretreated spectra and characteristic bands were established by partial least squares regression (PLSR) and principle component regression (PCR), and the optimal modeling combination was selected. The results showed that the modeling effect of the original spectrum was the best. In full-PLSR model, the determination coefficient of the calibration set (Rc~2), the determination coefficient of prediction set (Rp~2), and the determination coefficient of interactive verification set (Rcv~2) were 0.8804, 0.7375, and 0.7422, and root-mean-square error of calibration set (RMSEC), root-mean-square error of prediction (RMSEP), and root mean square error of interactive validation set (RMSECV) were 2.3630, 2.9607, and 3.4209, respectively. PLSR and PCR models were established to obtain the optimal models of CARS-PLSR and PCR-PLSR. In the CARS-PLSR model, the Rc~2, Rp~2, and Rcv~2 were 0.9135, 0.7654, and 0.8171, respectively, while RMSEC, RMSEP, and RMSECV were 2.0275, 2.9306, and 2.9262, respectively. In the iRF-PCR model, Rc~2, Rp~2, and Rcv~2 were 0.7952, 0.7372, and 0.7280, respectively, while RMSEC, RMSEP, and RMSECV were 3.0207, 2.8278, and 3.4288, respectively. This study has demonstrated that visible and near-infrared hyperspectral imaging system can rapidly predict the content of metmyoglobin in cooked tan mutton.
机译:在本研究中,ENVI 4.6软件用于获得样品的光谱反射值。通过蒙特卡罗方法消除了异常样本,然后使用SPXY(基于X-Y距离的样品设置分区)来划分校准集和预测集。谱图像被预处理,提取特征波长。通过部分最小二乘回归(PLSR)和原理成分回归(PCR)建立了完整和预处理光谱和特征频带的光谱模型,并选择了最佳建模组合。结果表明,原始光谱的建模效果是最好的。在全PLSR模型中,校准组(RC〜2)的确定系数(RC〜2),预测集合(RP〜2)的确定系数,以及相互作用验证组(RCV〜2)的确定系数为0.8804,0.7375和0.7422,校准集(RMSEC)的根均方误差,预测(RMSEP)的根均方误差和交互式验证集(RMSECV)的根均线误差分别为2.3630,2.9607和3.4209。建立了PLSR和PCR模型,以获得CARS-PLSR和PCR-PLSR的最佳模型。在Cars-PLSR模型中,RC〜2,RP〜2和RCV〜2分别为0.9135,0.7654和0.8171,而RMSEC,RMSEP和RMSECV分别为2.0275,2.9306和2.9262。在IRF-PCR模型中,RC〜2,RP〜2和RCV〜2分别为0.7952,0.7372和0.7280,而RMSEC,RMSEP和RMSECV分别为3.0207,2.8278和3.4288。本研究表明,可见和近红外高光谱成像系统可以迅速预测熟坦羊肉中甲状腺蛋白的含量。

著录项

  • 来源
    《Journal of Food Science》 |2020年第6期|1403-1410|共8页
  • 作者单位

    Non-Destructive Detection Laboratory of Agricultural Products School of Agriculture Ningxia University Yinchuan 750021 China;

    Non-Destructive Detection Laboratory of Agricultural Products School of Agriculture Ningxia University Yinchuan 750021 China;

    Non-Destructive Detection Laboratory of Agricultural Products School of Agriculture Ningxia University Yinchuan 750021 China;

    School of Physics and Electrical and Electronic Engineering Ningxia University Yinchuan 750021 China;

    Non-Destructive Detection Laboratory of Agricultural Products School of Agriculture Ningxia University Yinchuan 750021 China;

    Non-Destructive Detection Laboratory of Agricultural Products School of Agriculture Ningxia University Yinchuan 750021 China;

    Non-Destructive Detection Laboratory of Agricultural Products School of Agriculture Ningxia University Yinchuan 750021 China;

    Non-Destructive Detection Laboratory of Agricultural Products School of Agriculture Ningxia University Yinchuan 750021 China;

    Non-Destructive Detection Laboratory of Agricultural Products School of Agriculture Ningxia University Yinchuan 750021 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    competitive adaptive reweighted sampling; hyperspectral imaging; metmyoglobin; partial least squares regression; tan mutton;

    机译:竞争自适应重复的抽样;高光谱成像;梅莫博林;部分最小二乘回归;谭羊肉;

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