• Acta Optica Sinica
  • Vol. 19, Issue 5, 577 (1999)
[in Chinese], [in Chinese], [in Chinese], and [in Chinese]
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  • [in Chinese]
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    [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Optimized Perturbation Method for Image Reconstruction in Optical Computerized Tomography[J]. Acta Optica Sinica, 1999, 19(5): 577 Copy Citation Text show less
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    [1] Hebden J C, Arridge S R, Delpy D T. Optical imaging in medicine: I. Experimental techniques. Phys. Med. Biol., 1997, 42(5):825~840

    [2] Arridge S R, Hebden J C. Optical imaging in medicine: II. Modelling and reconstruction. Phys. Med. Biol., 1997, 42(5):841~853

    [3] Gao F, Niu H, Zhao H. A study on numerical simulation of image reconstruction in optical computer tomography. Bioimaging, 1997, 5(2):51~57

    [4] Schweiger M, Arridge S R, Deply D T. Application of the finite element method for the forward and inverse models in optical tomography. J. Mathematical Imaging and Vision, 1993, 3(2):263~283

    [5] Ishimaru A. Wave Propagation and Scattering in Random Media. New York: Academic Press, 1978. 175~188

    [6] Arridge S R, Schweiger M, Hiraoka M et al.. A finite element approach for modeling photon transport in tissue. Med. Phys., 1993, 20(2):299~309

    [8] Netterer F. The Mathematics of Computerized Tomography. New York: Wiley, 1986. 114~126

    [9] Arridge S R, Scjweiger M. Photon-measurement density functions. Part2: Finite-element-method calculations. Appl. Opt., 1995, 34(34):8026~8037

    [10] van der Zee P, Essenpreis M, Delpy D T et al.. Accurate determination of the optical properties of biological tissue using Monte-Carlo inversion technique, Proc. International Conference on Atmospheric, Volume and Surface Scattering and Propagation, Italy, 1991. 125~128

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    [in Chinese], [in Chinese], [in Chinese], [in Chinese]. Optimized Perturbation Method for Image Reconstruction in Optical Computerized Tomography[J]. Acta Optica Sinica, 1999, 19(5): 577
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