• Advanced Imaging
  • Vol. 1, Issue 1, 011002 (2024)
Haogong Feng, Runze Zhu, and Fei Xu*
Author Affiliations
  • College of Engineering and Applied Sciences and Collaborative Innovation Center of Advanced Microstructures, Nanjing University, Nanjing, China
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    DOI: 10.3788/AI.2024.10002 Cite this Article
    Haogong Feng, Runze Zhu, Fei Xu. Feature-enhanced fiber bundle imaging based on light field acquisition[J]. Advanced Imaging, 2024, 1(1): 011002 Copy Citation Text show less

    Abstract

    Optical fiber bundles frequently serve as crucial components in flexible miniature endoscopes, transmitting end-to-end images directly for medical and industrial applications. Each core usually acts as a single pixel, and the resolution of the image is limited by the core size and core spacing. We propose a method that exploits the hidden information embedded in the pattern within each core to break the limitation and obtain high-dimensional light field information and more features of the original image including edges, texture, and color. Intra-core patterns are mainly related to the spatial angle of captured light rays and the shape of the core. A convolutional neural network is used to accelerate the extraction of in-core features containing the light field information of the whole scene, achieve the transformation of in-core features to real details, and enhance invisible texture features and image colorization of fiber bundle images.
    PlPi=4(kρsniθi)2ll!(r0ρsr02+ρs2)2l+2exp[(kρsniθir0)2r02+ρs2].

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    P0Pi=[2r0ρs(r02+ρs2)]2exp[rd2(r02+ρs2)],

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    P0Pi=(2r0ρs)2[1exp(ρs22r02)]2.

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    (α11α12α1Mα21α22α2Mα31αP1αPM)×(k11k12k1Nk21k21k2NkM1kMN)×(I1I2IN)=(Y1Y2YP).

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    LGAN(G,D)=Ex,y[logD(x,y)]+Ex,z{log{1D[x,G(x,z)]}},

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    Ll1(G)=Ex,y,z[yG(x,z)1].

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    G*=argminGmaxDLGAN(G,D)+βLl1(G).

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    Haogong Feng, Runze Zhu, Fei Xu. Feature-enhanced fiber bundle imaging based on light field acquisition[J]. Advanced Imaging, 2024, 1(1): 011002
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