Laser & Optoelectronics Progress, Volume. 58, Issue 5, 0526001(2021)
Portable Fluorescence Detection System for Measuring Pepsinogen I
[1] Schoeman M N, Tippett M D, Akkermans L M A et al. Mechanisms of gastroesophageal reflux in ambulant healthy human subjects. Gastroenterology, 108, 83-91(1995).
[2] Kohn G P, Price R R, DeMeester S R et al. Guidelines for the management of hiatal hernia. Surgical Endoscopy, 27, 4409-4428(2013).
[3] Trudgill N J, Riley S A. Transient lower esophageal sphincter relaxations are no more frequent in patients with gastroesophageal reflux disease than in asymptomatic volunteers. The American Journal of Gastroenterology, 96, 2569-2574(2001).
[4] Lin Y T, Xu J S, Xie S S et al. Research progress on fluorescence imaging and spectral analysis for liver fibrosis. Laser & Optoelectronics Progress, 57, 010002(2020).
[5] Li J R. The significance of pepsin detection in the saliva for diagnosis of laryngopharyngeal reflux diseases. Chinese Medical Digest: Otorhinolaryngology, 33, 2-4(2018).
[6] Li X P, Chen S, Wang L et al. Pepsin immunoassay in the sputum for detection of laryngopharyngeal reflux. Chinese Journal of Otorhinolaryngology Head and Neck Surgery, 44, 99-104(2009).
[7] Mao H, Qiu W D, Tang Y L et al. Correlation between the level of saliva pepsinogen and gastroesophageal reflux disease. The Journal of Practical Medicine, 29, 913-915(2013).
[8] Liang X. Study on diagnostic value of esophageal MII-pH monitoring for NERD and FH. Chinese Journal of Gastroenterology, 23, 482-485(2018).
[9] Huang S B, Huang Y L, Wang M et al. Fluorescent quantitative immunochromatography: a novel approach to ultrasensitive diagnosis. Journal of Tropical Medicine, 18, 1390-1393(2018).
[10] Zhang S W, Wang S F, Yao T Q et al. Microsphere-based fluorescence immunochromatographic assay for quantitative detection of tetrodotoxin. Food Science, 38, 312-317(2017).
[11] Yao Y H. Research on fluorescence detection system for quantitative PCR instruments, 22-34(2011).
[12] Ren B Q, Huang L H, Huang H J. Time-resolved fluorometer based on immunochromatography. Chinese Journal of Scientific Instrument, 30, 1330-1335(2009).
[13] Xu X H, Xia G, Jin S Q et al. Design of imaging detection system for fluorescent immune-chromatographic test strip. Chinese Journal of Lasers, 45, 0407005(2018).
[14] Yu X H, Liu C, Bai C et al. Progress in light-sheet fluorescence microscopy and applications. Laser & Optoelectronics Progress, 57, 100001(2020).
[15] Wang Z, Du J K, Kou H Y et al. A fast edge image interpolation algorithm based on Otsu threshold segmentation. Modern Electronics Technique, 42, 71-74, 79(2019).
[16] Li C H, Luo W, Xu H Y et al. Development of an immunochromatographic assay for rapid and quantitative detection of clenbuterol in swine urine. Food Control, 34, 725-732(2013).
[17] Yang Q H, Gong X Q, Song T et al. Quantum dot-based immunochromatography test strip for rapid, quantitative and sensitive detection of alpha fetoprotein. Biosensors and Bioelectronics, 30, 145-150(2011).
[18] Dong G Y, Zhao X, Zhang Y et al. Development of portable up-conversion photoluminescence strip detector. Optics and Precision Engineering, 25, 584-590(2017).
[19] Wang S L. Clinical application of flow fluorescence assay in detection of serum pepsinogen, 7-10(2015).
[20] Huang B, Xiao H L, Zhang X R et al. Time-resolved fluoroimmunoassay of pepsinogen Ⅰ. Chinese Journal of Microbiology and Immunology, 24, 492-495(2004).
Get Citation
Copy Citation Text
Mingming Xu, Wei Shen, Hua Xia, Yi Wu, Hui Xue, Sujuan Chen, Xiaole Luo, Jiapeng Gu. Portable Fluorescence Detection System for Measuring Pepsinogen I[J]. Laser & Optoelectronics Progress, 2021, 58(5): 0526001
Category: Physical Optics
Received: Jun. 3, 2020
Accepted: Aug. 3, 2020
Published Online: Apr. 19, 2021
The Author Email: Hua Xia (huaxia@aiofm.ac.cn)