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[Determination of soluble solids content in Nanfeng Mandarin by Vis/NIR spectroscopy and UVE-ICA-LS-SVM].
Guang Pu Xue Yu Guang Pu Fen Xi. 2013 Dec; 33(12):3235-9.GP

Abstract

The objective of the present research was to assess soluble solids content (SSC) of Nanfeng mandarin by visible/near infrared (Vis/NIR) spectroscopy combined with new variable selection method, simplify prediction model and improve the performance of prediction model for SSC of Nanfeng mandarin. A total of 300 Nanfeng mandarin samples were used, the numbers of Nanfeng mandarin samples in calibration, validation and prediction sets were 150, 75 and 75, respectively. Vis/NIR spectra of Nanfeng mandarin samples were acquired by a QualitySpec spectrometer in the wavelength range of 350-1000 nm. Uninformative variables elimination (UVE) was used to eliminate wavelength variables that had few information of SSC, then independent component analysis (ICA) was used to extract independent components (ICs) from spectra that eliminated uninformative wavelength variables. At last, least squares support vector machine (LS-SVM) was used to develop calibration models for SSC of Nanfeng mandarin using extracted ICs, and 75 prediction samples that had not been used for model development were used to evaluate the performance of SSC model of Nanfeng mandarin. The results indicate t hat Vis/NIR spectroscopy combinedwith UVE-ICA-LS-SVM is suitable for assessing SSC o f Nanfeng mandarin, and t he precision o f prediction ishigh. UVE--ICA is an effective method to eliminate uninformative wavelength variables, extract important spectral information, simplify prediction model and improve the performance of prediction model. The SSC model developed by UVE-ICA-LS-SVM is superior to that developed by PLS, PCA-LS-SVM or ICA-LS-SVM, and the coefficient of determination and root mean square error in calibration, validation and prediction sets were 0.978, 0.230%, 0.965, 0.301% and 0.967, 0.292%, respectively.

Authors+Show Affiliations

Optics-electronics Application of Biomaterials Lab Jiangxi Agricultural University Nanchang, China. suntong980@163.comOptics-electronics Application of Biomaterials Lab Jiangxi Agricultural University Nanchang, China.Optics-electronics Application of Biomaterials Lab Jiangxi Agricultural University Nanchang, China.Optics-electronics Application of Biomaterials Lab Jiangxi Agricultural University Nanchang, China.

Pub Type(s)

Journal Article

Language

chi

PubMed ID

24611377

Citation

Sun, Tong, et al. "[Determination of Soluble Solids Content in Nanfeng Mandarin By Vis/NIR Spectroscopy and UVE-ICA-LS-SVM]." Guang Pu Xue Yu Guang Pu Fen Xi = Guang Pu, vol. 33, no. 12, 2013, pp. 3235-9.
Sun T, Xu WL, Hu T, et al. [Determination of soluble solids content in Nanfeng Mandarin by Vis/NIR spectroscopy and UVE-ICA-LS-SVM]. Guang Pu Xue Yu Guang Pu Fen Xi. 2013;33(12):3235-9.
Sun, T., Xu, W. L., Hu, T., & Liu, M. H. (2013). [Determination of soluble solids content in Nanfeng Mandarin by Vis/NIR spectroscopy and UVE-ICA-LS-SVM]. Guang Pu Xue Yu Guang Pu Fen Xi = Guang Pu, 33(12), 3235-9.
Sun T, et al. [Determination of Soluble Solids Content in Nanfeng Mandarin By Vis/NIR Spectroscopy and UVE-ICA-LS-SVM]. Guang Pu Xue Yu Guang Pu Fen Xi. 2013;33(12):3235-9. PubMed PMID: 24611377.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - [Determination of soluble solids content in Nanfeng Mandarin by Vis/NIR spectroscopy and UVE-ICA-LS-SVM]. AU - Sun,Tong, AU - Xu,Wen-Li, AU - Hu,Tian, AU - Liu,Mu-Hua, PY - 2014/3/12/entrez PY - 2014/3/13/pubmed PY - 2015/7/15/medline SP - 3235 EP - 9 JF - Guang pu xue yu guang pu fen xi = Guang pu JO - Guang Pu Xue Yu Guang Pu Fen Xi VL - 33 IS - 12 N2 - The objective of the present research was to assess soluble solids content (SSC) of Nanfeng mandarin by visible/near infrared (Vis/NIR) spectroscopy combined with new variable selection method, simplify prediction model and improve the performance of prediction model for SSC of Nanfeng mandarin. A total of 300 Nanfeng mandarin samples were used, the numbers of Nanfeng mandarin samples in calibration, validation and prediction sets were 150, 75 and 75, respectively. Vis/NIR spectra of Nanfeng mandarin samples were acquired by a QualitySpec spectrometer in the wavelength range of 350-1000 nm. Uninformative variables elimination (UVE) was used to eliminate wavelength variables that had few information of SSC, then independent component analysis (ICA) was used to extract independent components (ICs) from spectra that eliminated uninformative wavelength variables. At last, least squares support vector machine (LS-SVM) was used to develop calibration models for SSC of Nanfeng mandarin using extracted ICs, and 75 prediction samples that had not been used for model development were used to evaluate the performance of SSC model of Nanfeng mandarin. The results indicate t hat Vis/NIR spectroscopy combinedwith UVE-ICA-LS-SVM is suitable for assessing SSC o f Nanfeng mandarin, and t he precision o f prediction ishigh. UVE--ICA is an effective method to eliminate uninformative wavelength variables, extract important spectral information, simplify prediction model and improve the performance of prediction model. The SSC model developed by UVE-ICA-LS-SVM is superior to that developed by PLS, PCA-LS-SVM or ICA-LS-SVM, and the coefficient of determination and root mean square error in calibration, validation and prediction sets were 0.978, 0.230%, 0.965, 0.301% and 0.967, 0.292%, respectively. SN - 1000-0593 UR - https://www.unboundmedicine.com/medline/citation/24611377/[Determination_of_soluble_solids_content_in_Nanfeng_Mandarin_by_Vis/NIR_spectroscopy_and_UVE_ICA_LS_SVM]_ DB - PRIME DP - Unbound Medicine ER -
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