• Infrared and Laser Engineering
  • Vol. 51, Issue 3, 20210231 (2022)
Hong Cheng, Li Wang, Rui Wang, Xinyu Xiang, Quanbing Zhang, and Xiaotian Zhu
Author Affiliations
  • National Engineering Research Center for Agro-Ecological Big Data Analysis & Application, Anhui University, Hefei 230601, China
  • show less
    DOI: 10.3788/IRLA20210231 Cite this Article
    Hong Cheng, Li Wang, Rui Wang, Xinyu Xiang, Quanbing Zhang, Xiaotian Zhu. Phase retrieval based on the transport of intensity equation under adaptive focus[J]. Infrared and Laser Engineering, 2022, 51(3): 20210231 Copy Citation Text show less
    References

    [1] Y Li, J Di, C Ma, et al. Quantitative phase microscopy for cellular dynamics based on transport of intensity equation. Optics Express, 26, 586-593(2018).

    [2] X L Tian, W Yu, X Meng, et al. Real-time quantitative phase imaging based on transport of intensity equation with dual simultaneously recorded field of view. Opt Lett, 41, 1427-1430(2016).

    [3] S S Cai, L F Zheng, B X Zeng, et al. Quantitative phase imaging based on transport-of-intensity equation and differential interference contrast microscope and its application in breast cancer diagnosis. Chinese Journal of Lasers, 45, 0307015(2018).

    [4] C Zuo, Q Chen, J S Sun, et al. Non-interferometric phase retrieval and quantitative phase microscopy based on transport of intensity equation: A review. Chinese Journal of Lasers, 43, 0609002(2016).

    [5] X Y Lu, C L Zhao, Y J Cai. Research progress on methods and applications for phase reconstruction under partially coherent illumination. Chinese Journal of Lasers, 47, 0500016(2020).

    [6] Komuro Koshi, Nomura Takanori. Quantitative phase imaging using transport of intensity equation with multiple bandpass filters. Appl Opt, 55, 5180-5186(2016).

    [7] H Cheng, B L Xiong, J C Wang, et al. Phase retrieval based on registration progressive compensation algorithm. Acta Photonica Sinica, 43, 0609002(2016).

    [8] H Cheng, Q Q Lv, S Wei. Rapid phase retrieval using SLM based on transport of intensity equation. Infrared and Laser Engineering, 47, 0722003(2018).

    [9] Q Zhang, F M Wang, Y Q Guo, et al. Design of microscope autofocus system. Mechanical Engineering & Automation, 181-183(2016).

    [10] Y Yang, Y Zhao, M Yang, et al. Research on the hardware automatic focusing system in microscope based on PSD. Journal of Mechanical & Electrical Engineering, 33, 47-51(2016).

    [11] X Tian, X Meng, M Yu, et al. In-focus quantitative intensity and phase imaging with the numerical focusing transport of intensity equation method. Journal of Optics, 18(2016).

    [12] H Cheng, R Wang, Y Q Ye, et al. Transport of intensity equation method based on edge detection and duty ratio fusion. Journal of Optics, 22(2020).

    [13] C Zuo, J Li, J Sun, et al. Transport of intensity equation: a tutorial. Optics and Lasers in Engineering, 135, 106187(2020).

    [14] B B Liu, Y J Yu, X Y Wu, et al. Applicable conditions of phase retrieval based on transport of intensity equation. Optics and Precision Engineering, 23, 77-84(2015).

    [15] H Cheng, J C Wang, Y L Gao, et al. Phase unwrapping based on transport of intensity equation with two wavelengths. Opt Eng, 58, 054103(2019).

    [16] Z Wang, A C Bovik, H R Sheikh, et al. Image quality assessment: from error visibility to structural similarity. IEEE Transactions on Image Processing, 13, 600-612(2004).

    Hong Cheng, Li Wang, Rui Wang, Xinyu Xiang, Quanbing Zhang, Xiaotian Zhu. Phase retrieval based on the transport of intensity equation under adaptive focus[J]. Infrared and Laser Engineering, 2022, 51(3): 20210231
    Download Citation