• Infrared and Laser Engineering
  • Vol. 51, Issue 9, 20210915 (2022)
Jianan Xu, Ming Kong, Wei Liu*, Daodang Wang, and Zhongsi Xie
Author Affiliations
  • College of Metrology and Measurement Engineering, China Jiliang University, Hangzhou 310018, China
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    DOI: 10.3788/IRLA20210915 Cite this Article
    Jianan Xu, Ming Kong, Wei Liu, Daodang Wang, Zhongsi Xie. Holographic microscopy detection method of microfluidic chip channel[J]. Infrared and Laser Engineering, 2022, 51(9): 20210915 Copy Citation Text show less
    References

    [1] W Sun, M Lu, L Li, et al. Application progress on microfluidic chip technology. Chinese Journal of Frontier Health and Quarantine, 42, 221-224(2019).

    [2] H Yan, J Long, C Y Liu, et al. Review of the development and appilication of deformation measurement based on holography and digital speckle interferometry. Infrared and Laser Engineering, 48, 0603010(2019).

    [3] S Q Tu, Y H Wang, F Y Sun, et al. Fast detection of smooth surface deformation based on DSPI. Chinses Optics, 11, 248-254(2018).

    [4] Z Chen, H Z Jiang, X Liu, et al. Measurement of surface defects of optical elements using digital holography. Optics and Precision Engineering, 25, 576-583(2017).

    [5] Y Zeng, X Chang, H Lei, et al. Characteristics analysis of digital image-plane holographic microscop. Scanning, 38, 288-296(2016).

    [6] Q W Jin, J Guan, X C Wu. Experimental study on on-line monitoring pulverized coal fineness of 300 MW coal-fired plant by digital holography. Infrared and Laser Engineering, 50, 20200456(2021).

    [7] C B Carter, D B Williams. Transmission electron microscopy, diffraction, imaging, and spectroscopy. Journal of Materials Science, 52, 2989-2994(2017).

    [8] H T Zong, Y H Zhang, F M Wang, et al. Large field of view line-scanning confocal holographic microscopy. Optics and Precision Engineering, 29, 1-9(2021).

    [9] J W Zhao, Y H Zhang, F M Wang, et al. Line-scanning confocal microscopic imaging based on virtual structured modulation. Chinese Optics, 14, 431-445(2021).

    [10] G Meyer, N M Amer. Novel optical approach to atomic force microscopy. Applied Physics Letters, 53, 1045-1047(1988).

    [11] Wang Z. Quantitative microscopy tomography in microfluidics by digital holography[D]. Beijing: Beijing University of Technology, 2018: 2352. (in Chinese)

    [12] Y J Sung, N Lue, B Hamza, et al. Three-dimensional holographic refractive-index measurement of continuously flowing cells in a microfluidic channel. Physical Review Applied, 1, 014002(2014).

    [13] Y Liu, M X Jiao, J H Xing, et al. Automatic compensation of phase distortion based on Zernike surface fitting in digital holographic microscopy. Journal of Xi’an University of Technology, 33, 193-198(2017).

    [14] J L Di, J L Zhao, Q Fan, et al. Phase correction of wavefront reconstruction in digital holographic microscopy. Acta Optica Sinica, 28, 56-61(2008).

    [15] P Ferraro, D Alferi, S D Nicola, et al. Quantitative phase-contrast microscopy by a lateral shearapproach to digital holographic image reconstruction. Optics Letters, 31, 1405-1407(2006).

    [16] W Xiao, L Yang, F Pan, et al. Automatic phase aberration compensation for digital holographic microscopy combined with phase fitting and deep learning. Acta Photonica Sinica, 47, 164-173(2018).

    [17] L T OuYang, D Y Wang, J Zhao, et al. Experimental study on the phase-contrast imaging of the living hippocampal neuron cells by digital holographic microscopy. Chinese Journal of Lasers, 40, 0909001(2013).

    [18] P Ferraro, S D Nicola, A Finizio, et al. Compensation of the inherent wave front curvature in digital holographic coherent microscopy for quantitative phase-contrast imaging. Applied Optics, 42, 1938-1946(2003).

    [19] J P Fan, D S Zhang, X X Lv, et al. Phase Reconstruction and compensation of biological cell with digital holographic microscopy. Chinese Journal of Lasers, 42, 0209019(2014).

    Jianan Xu, Ming Kong, Wei Liu, Daodang Wang, Zhongsi Xie. Holographic microscopy detection method of microfluidic chip channel[J]. Infrared and Laser Engineering, 2022, 51(9): 20210915
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