食品科学

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MWPLS法在羊肉中TVB-N近红外定量分析中的应用

史智佳,田寒友,邹 昊,刘文营,乔晓玲*   

  1. 中国肉类食品综合研究中心,北京 100068
  • 出版日期:2015-10-25 发布日期:2015-10-20
  • 通讯作者: 乔晓玲
  • 基金资助:

    “十二五”农村领域国家科技计划课题(2012BAD28B01)

Quantitative Analysis of Total Volatile Basic Nitrogen (TVB-N) in Mutton by Near-Infrared (NIR) Spectroscopy with Moving Window Partial Least Squares (MWPLS)

SHI Zhijia, TIAN Hanyou, ZOU Hao, LIU Wenying, QIAO Xiaoling*   

  1. China Meat Research Centre, Beijing 100068, China
  • Online:2015-10-25 Published:2015-10-20
  • Contact: QIAO Xiaoling

摘要:

将移动窗口偏最小二乘(moving window partial least squares,MWPLS)法应用于羊肉中挥发性盐基氮(total volatile basic nitrogen,TVB-N)含量的近红外定量分析模型的构建中,通过改变MWPLS的窗口宽度,优选与羊肉中TVB-N含量高度相关的光谱区域。模型评价及验证结果显示,移动窗口宽度为160 个波长点时优选得到的光谱区域(1 325~1 484 nm)所构建的定量分析模型最佳,其预测相关系数、预测标准偏差、主因子数和预测偏差比率分别为0.856 84、0.564 29 mg/100 g、5和2.9,这说明MWPLS可以有效地筛选羊肉中TVB-N的近红外光谱信息区间,提高定量分析模型的预测能力,并降低数据的处理量(数据点由800 个减少为160 个)。

关键词: 近红外光谱, 波段选择, 移动窗口偏最小二乘法, 挥发性盐基氮

Abstract:

Moving window partial least squares (MWPLS) is a method of regional optimization, which is most frequently
used for selecting spectral region including large information related to the components to be determined in the samples.
In this study, MWPLS was used to select the appropriate frequency range for setting up a partial least squares (PLS) model
for quantitative analysis of the total volatile basic nitrogen (TVB-N) in mutton. The near infrared reflectance (NIR) spectra
were processed by MWPLS and different spectral regions relevant to TVB-N content in meat were selected by changing the
window width of MWPLS. The evaluation and validation results showed that the optimal region for setting up a best PLS
model was the original spectrum between 1 325 nm and 1 484 nm. and the corresponding correlation coefficient of prediction
(Rp), standard error of prediction (SEP), rank and residual prediction deviation (RPD) were 0.856 84, 0.564 29 mg/100 g,
5 and 2.9, separately, suggesting that MWPLS is a valid method to select the spectral feature that reduces spectral data (from
800 reduce to 160) and enhances the prediction ability of the quantitative analysis model of TVB-N in mutton.

Key words: NIR spectroscopy, wavelength region selection, moving window partial least squares, TVB-N

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