Acta Optica Sinica, Volume. 45, Issue 6, 0600001(2025)
Research Progress and Prospects of Optical Technologies for Detecting Bioaerosols (Invited)
[11] Ma X Z, Wei Z H, Zheng F et al. Collection and analysis methods of bioaerosol and its future prospects[J]. Chinese Journal of Frontier Health and Quarantine, 45, 516-520(2022).
[14] Adar F. Monitoring chemical changes by Raman spectroscopy[J]. Spectroscopy, 39, 8-10(2024).
[17] Zhang Y Q. Detection of bioaerosols by magnetic nanoparticle enrichment combined with ATP bioluminescence reaction[D], 20-40(2022).
[18] Liu X F, Wang L, Qiu J R. Photoluminescence of plasmonic nanomaterials (invited)[J]. Laser & Optoelectronics Progress, 61, 0316001(2024).
[20] Zhu X Q, Zhang P, Wang G H et al. Study of aerosol classification technique based on normalized intrinsic fluorescence signal[J]. Chinese Journal of Lasers, 50, 1310005(2023).
[22] Lin M N. Imaging principles of fluorescence microscopy and its application in biomedicine[J]. Journal of Chinese Electron Microscopy Society, 40, 90-93(2021).
[23] Ren L Q. Research on depth of field and autofocus methods in fluorescence microscopy[D], 16-40(2012).
[25] Rigler R, Jr. Microfluorometric characterization of intracellular nucleic acids and nucleoproteins by acridine orange[J]. Acta Physiologica Scandinavica Supplementum, 267, 1-122(1966).
[27] Yang Z J. Construction and key technology research of bioaerosol monitoring system based on lidar technology[D], 19-50(2015).
[28] Huang Z W. Study of physical and optical properties of atmospheric aerosols using lidar[D], 20-60(2012).
[29] Rao Z M. Study on detection techniques and experiments of biological aerosols in the atmospheric boundary layer by fluorescence lidar[D], 26-57(2018).
[34] Wei Y, Wang G Q, Wang X D et al. Research on bioaerosol monitoring technology based on lidar and UAV[J]. China Port Science and Technology, 4, 11-19(2022).
[37] Zhao S T, Wu X D, Wang C et al. Principles, applications and latest developments of flow cytometer[J]. Progress in Modern Biomedicine, 11, 4378-4381(2011).
[44] Cheng B R. Characteristics of fluorescent bioaerosols in Tianjin during summer and winter[D], 13-43(2020).
[55] Fang L T, Liu W B, Ding Y B et al. Remote detection device for bioaerosol: research progress[J]. Academic Journal of Naval Medical University, 44, 1086-1094(2023).
[60] Wang J. Study on detection and recognition of bioaerosol based on Raman spectroscopy and fluorescence spectroscopy[D], 21-42(2019).
[61] Gao W Y, Zhao C H, Dou S X. Usage and maintenance of micro confocal Raman spectrometer[J]. Chemical Analysis and Meterage, 33, 100-105(2024).
[70] Li R H, Zhou D J, Li Q X et al. Study on coherent characteristics of pump laser light field in CARS technology[J]. Acta Optica Sinica, 14, 19-22(1994).
[81] Wang L Y, Li X, Yang J S et al. Research progress in rapid detection of microbial count based on ATP bioluminescence[J]. Microbiology China, 49, 3451-3468(2022).
[96] Zhang C, Lü J, Liu Y et al. Advances in rapid nucleic acid extraction from pathogenic microbes and associated microfluidic chips[J]. Journal of Food Safety & Quality, 14, 63-70(2023).
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Zhongwei Huang, Yuanzong Ji, Yongkai Wang, Tian Zhou, Wuren Li, Xuefei Huo. Research Progress and Prospects of Optical Technologies for Detecting Bioaerosols (Invited)[J]. Acta Optica Sinica, 2025, 45(6): 0600001
Category: Reviews
Received: Aug. 20, 2024
Accepted: Sep. 21, 2024
Published Online: Mar. 4, 2025
The Author Email: Huang Zhongwei (huangzhongwei@lzu.edu.cn)