Chinese Journal of Lasers, Volume. 47, Issue 2, 207039(2020)

Characterization of Cell Distribution Based on Optical Coherence Tomography Scattering

Shen Renqiang1, Wang Ling1,2、*, Xu Ming''en1,2, and Peng Shichang2
Author Affiliations
  • 1School of Automated, Hangzhou Dianzi University, Hangzhou, Zhejiang 310018, China
  • 2Zhejiang Provincial Key Laboratory of Medical Information and Three-Dimensional Bio-Printing, Hangzhou, Zhejiang 310018, China
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    Figures & Tables(9)
    Reconstruction process of scattering coefficient distribution image
    OCT image and scattering coefficient distribution of the multilayer dielectric scattering model. (a) OCT intensity image; (b) scattering coefficient distribution calculated by the proposed method; (c) scattering curve corresponding to the model at the white dotted frame in Fig.2(b)
    OCT intensity images and scattering images of C3A cell suspension with different concentrations. (a1)-(a4) OCT intensity images; (b1)-(b4) OCT scattering images
    Frequency distribution histograms of OCT intensity and scattering coefficient for cell suspension with different concentrations. (a1)-(a4) Signal intensity; (b1)-(b4) scattering coefficient
    Relationship between the parameters of the maximum frequency of the distribution histograms and the cell concentration. (a) Relationship between intensity and cell concentration; (b) relationship among scattering coefficient, distance between background peak and cell characteristic peak, and cell concentration
    OCT intensity images and scattering images of cell-free and cell-containing hydrogel scaffolds. (a1) OCT intensity image of cell-free scaffold; (a2) OCT intensity image of cell-containing scaffold; (b1) scattering image of cell-free scaffold; (b2) scattering image of cell-containing scaffold
    Histogram of signal intensity and scattering coefficient of hydrogel scaffold. (a) Intensity distribution of the PBS buffer solution; (b) intensity distribution of cell-free scaffold; (c) intensity distribution of cell-containing scaffold; (d) scattering corefficient distribution of PBS buffer solution; (e) scattering corefficient distribution of cell-free scaffold; (f) Scattering corefficient distribution cell-containing scaffold
    Comparison of OCT intensity images, scattering images and H&E stained sections for hydrogel scaffolds. (a1) OCT intensity image of cell-free hydrogel scaffold; (a2) OCT intensity image of cell-containing hydrogel scaffold; (b1) scattering image of cell-free hydrogel scaffold; (b2) scattering image of cell-containing hydrogel scaffold; (c1) stained sections image of cell-free hydrogel scaffold; (c2) stained sections image of cell-containing hydrogel scaffold
    • Table 1. Intensity and scattering coefficient, and their standard deviation at the peak of frequency of histogram

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      Table 1. Intensity and scattering coefficient, and their standard deviation at the peak of frequency of histogram

      SampleIntensity /dBScattering coefficient μs/mm-1
      Background peakCharacteristic peak
      PBS buffer solution28.7500(0.0000)0.1700(0.0000)0.0000(0.0000)
      Cell-free hydrogel scaffold29.2500(0.0000)0.1150(0.0070)0.2150(0.0070)
      Cell-containing hydrogel scaffold29.2500(0.0000)0.1125(0.0050)0.2700(0.0294)
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    Shen Renqiang, Wang Ling, Xu Ming''en, Peng Shichang. Characterization of Cell Distribution Based on Optical Coherence Tomography Scattering[J]. Chinese Journal of Lasers, 2020, 47(2): 207039

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    Paper Information

    Category: biomedical photonics and laser medicine

    Received: Nov. 6, 2019

    Accepted: --

    Published Online: Feb. 21, 2020

    The Author Email: Ling Wang (lingw@hdu.edu.cn)

    DOI:10.3788/CJL202047.0207039

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