SU Jun-yu,YANG Shao-bing,WANG Yuan-zhong.Geographical Origin Identification of Dendrobium officinale Based on FT-NIR and ATR-FTIR Spectroscopy[J].Journal of Instrumental Analysis,2025,44(06):1-11.
SU Jun-yu,YANG Shao-bing,WANG Yuan-zhong.Geographical Origin Identification of Dendrobium officinale Based on FT-NIR and ATR-FTIR Spectroscopy[J].Journal of Instrumental Analysis,2025,44(06):1-11. DOI: 10.12452/j.fxcsxb.250220105.
Geographical Origin Identification of Dendrobium officinale Based on FT-NIR and ATR-FTIR Spectroscopy
)is a precious plant with homology between medicine and food plant. Rapid and accurate identification of its geographical origin is essential to protect consumer rights and maintain market order. In order to realize rapid and effective identification of the geographical origin of
D. officinale
,a geographical traceability model of
D. officinale
was established based on attenuated total reflection Fourier transform infrared spectroscopy(ATR-FTIR) and Fourier transform near infrared spectroscopy(FT-NIR) technology,combined with data fusion strategy and chemometric methods. The results showed that the partial least squares discriminant analysis(PLS-DA) and support vector machine(SVM) models constructed on the FT-NIR and FT-NIR+ATR-FTIR fusion datasets after second derivative(2nd) preprocessing performed the best,with test set accuracy reaching 100.00%. The residual convolutional neural network(ResNet) model constructed based on two-dimensional correlation spectroscopy(2DCOS) achieved 100.00% accuracy on the training,testing and external validation sets. This study provides a scientific basis for geographical traceability of
D. officinale
and protection of geographical indication products.
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Li P Y , Li L , Wang Y Z . J. Ethnopharmacol. , 2023 , 310 : 116382 .
Yang J , Kuang M T , Yang L , Huang W , Hu J M . J. Ethnopharmacol. , 2023 , 302 : 115912 .
Lai C , Huo C Y , Xu J , Han Q B , Li L F . Int. J. Biol. Macromol. , 2024 , 263 : 130315 .
Zhao Y , Zhu S T , Li Y , Niu X , Shang G X , Zhou X Q , Yin J , Bao B H , Cao Y D , Cheng F F , Li Z P , Wang R , Yao W F . J. Pharm. Biomed. Anal. , 2024 , 243 : 116077 .
Dai J , Wang W D , He F F , Yu X X , Liu Z G , Wang Y J , Zou D L . Food Res. Int. , 2025 , 203 : 115888 .
Liu Y C , Odiba A S , Yu Q , Xie J , Okoro N O , Liao G Y , Zhu X C , He B , Jin C , Fang W X , Wang B . J. Future Foods , 2025 , 5 ( 6 ): 591 - 604 .
Liu W , Qiu X W , Jiang L W , Fan W , Li P , Zheng Y . J. Instrum. (柳薇,邱熙文,蒋立文,范伟,李跑,郑郁. 分析测试学报), 2025 , 44 ( 2 ): 246 - 252 .
Hu Y , Zhao M , Qiu Y X , Ye D B , Liu Y Q , Zhang C F , Wang H B , Cheng J M . J. Nanjing Univ. Tradit. Chin. Med . (胡杨,赵勉,邱雨轩,叶德宝,刘洋清,张朝凤,王海波,程建明. 南京中医药大学学报), 2024 , 40 ( 1 ): 94 - 108 .
Zhou D Y , Hou M Y , Leng C Y , Li R J , Xing Y M , Chen J . Ind. Crops. Prod. , 2025 , 226 : 120692 .
Yang Y , She X T , Cao X Q , Yang L C , Huang J M , Zhang X , Su L J , Wu M J , Tong H B , Ji X L . Spectrochim. Acta A , 2022 , 277 : 121249 .
Dang H L , Zhang X L , Ma C M , Zhao W L , Guo H Y , Huang G L , Xie L . Med. Novel Technol. Dev. , 2022 , 16 : 100163 .
Chen Y , Li S , Jia J , Sun C D , Cui E Z , Xu Y Y , Shi F C , Tang A F . Food Chem.:X , 2024 , 24 : 101798 .
Deng G M , Liu H G , Li J Q , Wang Y Z . Food Microbiol. , 2025 , 129 : 104743 .
Li G Y , Li J Q , Liu H G , Wang Y Z . Food Chem. , 2025 , 464 : 141529 .
Zheng C M , Li J Q , Liu H G , Wang Y Z . Food Biosci. , 2023 , 56 : 103308 .
Dong J E , Zhang J , Zuo Z T , Wang Y Z . Spectrochim. Acta A , 2021 , 249 : 119211 .
Aceña V , Martín De Diego I , Fernández R R , Moguerza J M . Pat. Recognit. , 2023 , 134 : 109117 .
He G , Yang S B , Wang Y Z . Comput. Electric. Agric. , 2024 , 223 : 109127 .
Li L , Zhao Y L , Li Z M , Wang Y Z . Microchem. J. , 2022 , 178 : 107430 .
Frizon C N T , Oliveira G A , Perussello C A , Peralta-Zamora P G , Camlofski A M O , Rossa Ü B , Hoffmann-Ribani R . LWT , 2015 , 60 ( 2 ): 795 - 801 .
Guo Z M , Barimah A O , Yin L M , Chen Q S , Shi J Y , El-Seedi H R , Zou X B . Food Chem. , 2021 , 353 : 129372 .
Song C Q , An Y L , Zhao W J , Huang Y S , Zhang L J , Li L , Tang Z J , Li Z W , Liu X K , Zhang D D , Guo D A . Microchem. J. , 2025 , 209 : 112671 .
Krysa M , Szymańska-Chargot M , Zdunek A . Food Chem. , 2022 , 393 : 133430 .
Brza M A , Aziz S B , Anuar H , Ali F , Dannoun E M A , Mohammed S J , Abdulwahid R T , Al-Zangana S . Sci. Rep. , 2020 , 10 ( 1 ): 18108 .
Herath A , Tiozon R J , Kretzschmar T , Sreenivasulu N , Mahon P , Butardo V . Food Chem. , 2024 , 460 : 140728 .
Song L Y , Han Z Q , Shum P , Lau W . Spectrochim. Acta A , 2025 , 327 : 125400 .
Wiercigroch E , Szafraniec E , Czamara K , Pacia M Z , Majzner K , Kochan K , Kaczor A , Baranska M , Malek K . Spectrochim. Acta A , 2017 , 185 : 317 - 335 .
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Related Author
SU Jun-yu
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Related Institution
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