• Acta Optica Sinica
  • Vol. 36, Issue 9, 911009 (2016)
Wu Weiwen1、2、*, Quan Chao1, and Liu Fenglin1、2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    DOI: 10.3788/aos201636.0911009 Cite this Article Set citation alerts
    Wu Weiwen, Quan Chao, Liu Fenglin. Filtered Back-Projection Image Reconstruction Algorithm for Opposite Parallel Linear CT Scanning[J]. Acta Optica Sinica, 2016, 36(9): 911009 Copy Citation Text show less
    References

    [1] Fuchs V R, Sox H C, Jr. Physicians’ views of the relative importance of thirty medical innovations[J]. Health Affairs, 2001, 20(5): 30-42.

    [3] Wang G, Liu F, Liu F L, et al. Top-level design of the first CT-MRI scanner[C]. 12th International Meeting on Fully Three-Dimensional Image Reconstruction in Radiology and Nuclear Medicine, 2013: 975-978.

    [4] Liu F L, Yu H Y, Cong W X, et al. Top-level design and pilot analysis of low-end CT scanners based on linear scanning for developing countries[J]. Journal of X-Ray Science and Technology, 2014, 22(5): 673-686.

    [5] Wang Jue, Liu Fenglin, Zou Yongning. Electronic linear scanning micro-nano focus CT scanning system and method: CN104757988A[P]. 2015-07-08.

    [6] Smith B D, Singh T. Fan-beam reconstruction from a straight line of source points[J]. IEEE Transactions on Medical Imaging, 1993, 12(1): 10-18.

    [7] Sidky E Y, Zou Y, Pan X C. Volume image reconstruction from a straight-line source trajectory[C]. IEEE Nuclear Science Symposium Conference Record, 2005, 5: 2441-2444.

    [8] Gao H W, Zhang L, Xing Y, et al. Volumetric imaging from a multi-segments straight-line trajectory and a practical reconstruction algorithm[J]. Optical Engineering, 2007, 46(7): 077004.

    [9] Gao H W, Zhang L, Chen Z Q, et al. Direct filtered-backprojection-type reconstruction from a straight-line trajectory[J]. Optical Engineering, 2006, 46(5): 057003.

    [10] Gao H W, Zhang L, Chen Z Q, et al. Straight-line-trajectory-based X-ray tomographic imaging for security inspections: System design, image reconstruction and preliminary results[J]. IEEE Transactions on Nuclear Science, 2013, 60(5): 3955-3968.

    [11] Liu B, Zeng L. Parallel SART algorithm of linear scan cone-beam CT for fixed pipeline[J]. Journal of X-Ray Science and Technology, 2009, 17(3): 221-232.

    [12] Fu J, Zhang J, Tan R. A straight-line trajectory tomography method based on multiple tilted X-ray cone-beams[J]. Applied Mechanics & Materials, 2012, 239-240: 238-242.

    [13] Zhang H M, Wang L Y, Yan B, et al. Image reconstruction based on total-variation minimization and alternating direction method in linear scan computed tomography[J]. Chinese Physics B, 2013, 22(7): 078701.

    [14] Ma Jiming, Zhang Jianqi, Song Guzhou, et al. Total variation constrained iterative filtered backprojection CT reconstruction method[J]. Acta Optica Sinica, 2015, 35(2): 0234002.

    [15] Kak A C, Slaney M. Principles of computerized tomographic imaging[M]. New York: IEEE Press, 1988.

    [16] Natterer F. The mathematics of computerized tomography[J]. Medical Physics, 29(1): 106-108.

    [17] Rieder A, Faridani A. The semidiscrete filtered backprojection algorithm is optimal for tomographic inversion[J]. SIAM Journal on Numerical Analysis, 2004, 41(3): 869-892.

    [18] Ye Y, Wang G. Filtered backprojection formula for exact image reconstruction from cone-beam data along a general scanning curve[J]. Medical Physics, 2005, 32(1): 42-48.

    CLP Journals

    [1] Zhang Yulin, Kong Huihua, Pan Jinxiao, Han Yan. Spectral Computed Tomographic Image Reconstruction Based on Split-Bregman Algorithm[J]. Acta Optica Sinica, 2017, 37(4): 411003

    Wu Weiwen, Quan Chao, Liu Fenglin. Filtered Back-Projection Image Reconstruction Algorithm for Opposite Parallel Linear CT Scanning[J]. Acta Optica Sinica, 2016, 36(9): 911009
    Download Citation