Accurate dynamic quantitative phase imaging using multi-wavelength multiplexing

被引:1
|
作者
Fan, Chen [1 ]
Li, Junxiang [1 ]
Du, Yijun [1 ]
Hu, Zirui [1 ]
Chen, Huan [1 ]
Zhang, Gaopeng [2 ]
Zhang, Lu [1 ]
Zhao, Zixin [1 ]
Zhao, Hong [1 ]
机构
[1] Xi An Jiao Tong Univ, Sch Mech Engn, State Key Lab Mfg Syst Engn, Xian 710049, Peoples R China
[2] Chinese Acad Sci, Xian Inst Opt & Precis Mech, Xian 710119, Peoples R China
基金
中国国家自然科学基金;
关键词
Quantitative phase imaging (QPI); Dynamic phase measurement; Computational imaging; Phase retrieval; DIGITAL HOLOGRAPHIC MICROSCOPY; OF-INTENSITY EQUATION; SHACK-HARTMANN; TRANSPORT; RETRIEVAL; FIELD; ALGORITHM; FILTER; CELLS;
D O I
10.1016/j.optlaseng.2023.107757
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
We present a novel, accurate, full-filed, dynamic quantitative phase imaging (QPI) technique by using multi-wavelength multiplexing and multi-plane iterative phase retrieval algorithm. In our method, a liquid crystal spatial light modulator is employed to flexibly generate multiple defocus intensity images at once, using its adjustable phase modulation characteristics of different wavelengths. Then these images contained at different wavelengths are captured by two color cameras with single exposure. To achieve accurate QPI, a multi-plane iterative phase reconstruction algorithm is also proposed based on transport of intensity equation (TIE). Finally, with these multiple defocus images, an accurate dynamic phase result can be provided by our approach. In addition, the errors caused by color coupling of color camera and chromatic aberration of the optical system are both analyzed and effectively compensated. Experiments conducted on the phase plate, living human colorectal cancer cells and human red blood cells well demonstrate the accuracy, dynamic measurement ability and flexibility of our method.
引用
收藏
页数:8
相关论文
共 50 条
  • [41] Multi-Wavelength Doppler Phase Shifting Interferometry
    Yatagai, Toyohiko
    2013 12TH WORKSHOP ON INFORMATION OPTICS (WIO), 2013,
  • [42] Single microparticle characterization using multi-wavelength lens-free imaging
    Marien, Jasper
    Jayapala, Murali
    Lambrechts, Andy
    Van Hoof, Chris
    Yurt, Abdulkadir
    OPTICS CONTINUUM, 2024, 3 (03): : 399 - 412
  • [43] Reducing artifacts in photoacoustic imaging by using multi-wavelength excitation and transducer displacement
    Nguyen, Ho Nhu Y.
    Steenbergen, Wiendelt
    BIOMEDICAL OPTICS EXPRESS, 2019, 10 (07): : 3124 - 3138
  • [44] Fast Multi-Wavelength Pyrometer for Dynamic Temperature Measurements
    R. Belikov
    D. Merges
    D. Varentsov
    Zs. Major
    P. Neumayer
    Ph. Hesselbach
    M. Schanz
    B. Winkler
    International Journal of Thermophysics, 2024, 45
  • [45] Robust autofocusing method for multi-wavelength lensless imaging
    Liu, Jian
    Zhao, Yixuan
    Guo, Cheng
    Zhao, Weisong
    Zhang, Yutian
    Guo, Changliang
    Li, Haoyu
    OPTICS EXPRESS, 2019, 27 (17) : 23814 - 23829
  • [46] Improve quality of ghost imaging with multi-wavelength source
    Yang X.
    Zhang Y.
    Yang C.
    Xu L.
    Wang Q.
    Liu Y.
    Zhao Y.
    Zhao, Yuan (zhaoyuan@hit.edu.cn), 2016, Science Press (43):
  • [47] Hybrid multi-wavelength nonlinear photoacoustic sensing and imaging
    Duan, Tingyang
    Lan, Hengrong
    Zhong, Hongtao
    Zhou, Meng
    Zhang, Ruochong
    Gao, Fei
    OPTICS LETTERS, 2018, 43 (22) : 5611 - 5614
  • [48] Multi-wavelength optical imaging of the cat visual cortex
    Cimponeriu, A
    Chen, Y
    Dinnerstein, E
    Kaplan, E
    INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2002, 43 : U1339 - U1339
  • [49] Multi-wavelength imaging system for the Dutch Open Telescope
    Bettonvil, FCM
    Hammerschlag, RH
    Sütterlin, P
    Jägers, APL
    Rutten, RJ
    INNOVATIVE TELESCOPES AND INSTRUMENTATION FOR SOLAR ASTROPHYSICS, 2003, 4853 : 306 - 317
  • [50] Fast Multi-Wavelength Pyrometer for Dynamic Temperature Measurements
    Belikov, R.
    Merges, D.
    Varentsov, D.
    Major, Zs.
    Neumayer, P.
    Hesselbach, Ph.
    Schanz, M.
    Winkler, B.
    INTERNATIONAL JOURNAL OF THERMOPHYSICS, 2024, 45 (02)