Laser & Optoelectronics Progress, Volume. 60, Issue 23, 2306002(2023)

Optical Fiber Sensor for Online Monitoring of Aspergillus versicolor on Surfaces of Paper Cultural Relics

Qiuhui Yu1,2, Quanhua Xie2, Jianxu Wang2, Nianbing Zhong1,2, Tan Zeng1、*, Huan Tang1, Bin Tang1,2, and Mingfu Zhao1,2
Author Affiliations
  • 1Key Scientific Research Base of State Administration of Cultural Heritage for Pest Control of Cultural Relics, Chongqing China Three Gorges Museum, Chongqing 400013, China
  • 2Chongqing Key Laboratory of Optical Fiber Sensor and Photoelectric Detection, Chongqing Engineering Research Center of Intelligent Optical Fiber Sensing Technology, Chongqing University of Technology, Chongqing 400054, China
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    References(22)

    [1] Sterflinger K, Pinzari F. The revenge of time: fungal deterioration of cultural heritage with particular reference to books, paper and parchment[J]. Environmental Microbiology, 14, 559-566(2012).

    [2] Reichhardt C, Parsek M R. Confocal laser scanning microscopy for analysis of Pseudomonas aeruginosa biofilm architecture and matrix localization[J]. Frontiers in Microbiology, 10, 677(2019).

    [3] Targowski P, Pronobis-Gajdzis M, Surmak A et al. The application of macro-X-ray fluorescence and optical coherence tomography for examination of parchment manuscripts[J]. Studies in Conservation, 60, S167-S177(2015).

    [4] Hadwan M H. Simple spectrophotometric assay for measuring catalase activity in biological tissues[J]. BMC Biochemistry, 19, 7(2018).

    [5] Smith D, Starborg T. Serial block face scanning electron microscopy in cell biology: applications and technology[J]. Tissue and Cell, 57, 111-122(2019).

    [6] Kang X, Kirui A, Muszyński A et al. Molecular architecture of fungal cell walls revealed by solid-state NMR[J]. Nature Communications, 9, 2747(2018).

    [7] Chen Y, Li P, Liao L Y et al. Characteristic fingerprints and volatile flavor compound variations in Liuyang Douchi during fermentation via HS-GC-IMS and HS-SPME-GC-MS[J]. Food Chemistry, 361, 130055(2021).

    [8] Kumar S, Joshi D, Debbarma P et al. Denaturing gradient gel electrophoresis (DGGE) analysis of the fungi involved in biodegradation[M]. Udayanga D, Bhatt P, Manamgoda D, et al. Mycoremediation protocols. Springer protocols handbooks, 93-100(2022).

    [9] Wilson A D. Applications of electronic-nose technologies for noninvasive early detection of plant, animal and human diseases[J]. Chemosensors, 6, 45(2018).

    [10] Cucci C, Delaney J K, Picollo M. Reflectance hyperspectral imaging for investigation of works of art: old master paintings and illuminated manuscripts[J]. Accounts of Chemical Research, 49, 2070-2079(2016).

    [11] Liu D, Zhao C, Ji P et al. Acetone gas sensor based on two-photon polymerized micropillar on end face of fiber[J]. Chinese Journal of Lasers, 49, 1210002(2022).

    [12] Chen J L, Li L Y, Xin X et al. Reflective spiral plastic fiber-optic sensor for accurate detection of liquid level[J]. Acta Optica Sinica, 42, 0106005(2022).

    [13] de Ferri L, Tripodi R, Martignon A et al. Non-invasive study of natural dyes on historical textiles from the collection of Michelangelo Guggenheim[J]. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 204, 548-567(2018).

    [14] Ma J Y, Liu T G, Jiang J F et al. Progress in sensitivity enhancement for optical fibre surface plasmon resonance sensing[J]. Chinese Journal of Lasers, 48, 1906002(2021).

    [15] Zhong N B, Zhao M F, Li Y S. U-shaped, double-tapered, fiber-optic sensor for effective biofilm growth monitoring[J]. Biomedical Optics Express, 7, 335-351(2016).

    [16] Jiao L Z, Zhong N B, Zhao X D et al. Recent advances in fiber-optic evanescent wave sensors for monitoring organic and inorganic pollutants in water[J]. TrAC Trends in Analytical Chemistry, 127, 115892(2020).

    [17] Cui L J. Study on the reflective optical fiber bundle hydrogen sensor[D](2010).

    [18] Dai F, Li K W, Zhou W C et al. Highly sensitive optical nanofiber bio-chemical sensor based on magnetic nanoparticles amplication[J]. Acta Optica Sinica, 34, 1206003(2014).

    [19] Song Q, Luan F, Shi Z et al. Design of turbidity remote monitoring system based on FX-11A optical fiber sensor[C], 291-294(2020).

    [20] Zhu S Y, Cao H M. Theoretical modeling and simulation implementation of reflective optical fiber bundle probe[J]. Instrument Technique and Sensor, 75-78(2013).

    [21] Yu Q H, Xue Z D, Hu R et al. Reflective fiber-optic sensor for on-line nondestructive monitoring of Aspergillus on the surface of cultural paper relics[J]. Biomedical Optics Express, 13, 3324-3338(2022).

    [22] Qu L L, Jia Q, Liu C Y et al. Thin layer chromatography combined with surface-enhanced Raman spectroscopy for rapid sensing aflatoxins[J]. Journal of Chromatography A, 1579, 115-120(2018).

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    Qiuhui Yu, Quanhua Xie, Jianxu Wang, Nianbing Zhong, Tan Zeng, Huan Tang, Bin Tang, Mingfu Zhao. Optical Fiber Sensor for Online Monitoring of Aspergillus versicolor on Surfaces of Paper Cultural Relics[J]. Laser & Optoelectronics Progress, 2023, 60(23): 2306002

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    Paper Information

    Category: Fiber Optics and Optical Communications

    Received: Sep. 19, 2022

    Accepted: Dec. 19, 2022

    Published Online: Dec. 8, 2023

    The Author Email: Zeng Tan (zeng_tan@163.com)

    DOI:10.3788/LOP222572

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