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近红外光谱和模式识别的菊花品种无损鉴别
引用本文:李嘉仪,余梅,李脉泉,郑郁,李跑.近红外光谱和模式识别的菊花品种无损鉴别[J].光谱学与光谱分析,2022,42(4):1129-1133.
作者姓名:李嘉仪  余梅  李脉泉  郑郁  李跑
作者单位:1. 湖南农业大学食品科学技术学院,湖南 长沙 410128
2. 湖南师范大学医学院,湖南 长沙 410013
3. 湖南省农业科学院,湖南省农产品加工研究所,湖南 长沙 410125
基金项目:国家自然科学基金项目(31601551,32001680);;湖南省自然科学基金青年科学基金项目(2019JJ50240);;湖南省教育厅科学研究项目(19C0933);;中国博士后科学基金面上项目(2019M650187)资助;
摘    要:菊花为菊科植物菊的头状花序,滁菊、贡菊、杭菊和亳菊是常见的几类药用品种菊花.不同品种菊花在外观上具有极大的相似性,非专业人员仅凭肉眼难以对其进行准确鉴别分析.常规仪器分析法检测成本较高,分析时间较长,且需要对样品进行破坏性处理,影响了产品的二次销售.近红外光谱技术作为近年来快速发展起来的一种绿色、简单、快速的新型检测技...

关 键 词:便携式近红外光谱仪  菊花  无损鉴别  Fisher线性判别分析
收稿时间:2021-03-01

Nondestructive Identification of Different Chrysanthemum Varieties Based on Near-Infrared Spectroscopy and Pattern Recognition Methods
LI Jia-yi,YU Mei,LI Mai-quan,ZHENG Yu,LI Pao.Nondestructive Identification of Different Chrysanthemum Varieties Based on Near-Infrared Spectroscopy and Pattern Recognition Methods[J].Spectroscopy and Spectral Analysis,2022,42(4):1129-1133.
Authors:LI Jia-yi  YU Mei  LI Mai-quan  ZHENG Yu  LI Pao
Institution:1. College of Food Science and Technology, Hunan Agricultural University, Changsha 410128, China 2. School of Medicine, Hunan Normal University, Changsha 410013, China 3. Hunan Agricultural Product Processing Institute, Hunan Academy of Agricultural Sciences, Changsha 410125, China
Abstract:Chrysanthemum is derived from the capitulum of Chrysanthemum. Chuju, Gongju, Hangju and Boju are common medicinal chrysanthemums. Different chrysanthemum varieties have great similarities in appearance, and it is difficult for laypeople to identify them accurately only by naked eyes. The conventional instrumental analysis method has the disadvantages of high detection cost, long analysis time, and destructive treatment of samples, which affects the secondary sales of the products. As a green, simple and rapid detection technology, near-infrared spectroscopy has made great progress in traditional Chinese medicine identification. This study established a nondestructive identification method of different Chrysanthemum varieties based on portable near-infrared spectrometer and chemometric methods. The spectra of complete and powder samples of Chuju, Gongju, Hangju and Boju were collected by grating portable near-infrared spectrometer. The single and combined spectral pretreatment methods were used to eliminate the interferences in the spectra. The identification models of different Chrysanthemum varieties were constructed by combining principal component analysis, soft independent modeling of class analogy and Fisher linear discriminant analysis methods. The results show that: due to the restrictions of the current measure instruments and the difference of sample particle size and distribution, there are obvious interferences of background, baseline drift and noise in the spectra. The baseline drift interference is particularly serious for the analysis of the complete samples. The principal component analysis combined with spectral pretreatment methods could not identify different varieties of chrysanthemum. The best identification accuracy of complete samples was only 8.33%, and that of powder samples was 52.38%. The soft independent modeling of class analogy can obtain more accurate identification results with preprocessing methods. The identification accuracy of complete sample data is 95% with first derivative+multiple scattering correction, while the identification accuracy of powder sample data is 92.5% with the original data. The results of Fisher linear discriminant analysis are the best. When the complete sample spectra were optimized by continuous wavelet transform, the identification accuracy was 97.5%. When the original spectra of powder samples were used, the identification accuracy could reach 100%. The above results show that the complete and powder samples’ identification results are consistent when the appropriate pretreatment and modeling methods are used. Based on the grating portable near-infrared spectrometer combined with chemometrics methods, the accurate identification of different Chrysanthemum varieties can be realized, which provides a new way for the nondestructive identification of food and drug homologous products.
Keywords:Portable near infrared spectrometer  Chrysanthemum  Nondestructive identification  Fisher linear discri-minant analysis  
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