[1] Rogowska J, Brezinski M E. Image processing techniques for noise removal, enhancement and segmentation of cartilage OCT images [J]. Phys. Med. Biol., 2002, 47(4): 641-655.
[3] Schmitt J M, Xiang S H, Yung K M. Speckle in optical coherence tomography: an overview [J]. J. Biomed. Opt., 1999, 4(1): 95-105.
[4] Yung K M, Lee S L, Schmitt J M. Phase-domain of optical coherence tomography images [J]. J. Biomed. Opt., 1999, 4(1): 125-136.
[5] Schmitt J M. Restoration of optical coherence images of living tissue using the CLEAN algorithm [J]. J. Biomed. Opt., 1998, 3(1): 66-75.
[6] Kulkarni M D, Thomas C W, et al. Image enhancement in optical coherence tomography using deconvolution [J]. Electron. Lett., 1997, 33(16): 1365-1367.
[7] Rogowska J, Brezinski M E. Evaluation of the adaptive speckle suppression filter for coronary optical coherence tomography imaging [J]. IEEE Med. Imaging, 2000, 19(12): 1261-1266.
[8] Xiang S H, Zhou L, Schmitt J M. Speckle noise reduction for optical coherence tomography [C]. Proc. of SPIE, 1998, 3196(79): 79-88.
[9] Pietro P, Malik J. Scale-space and edge detection using anisotropic diffusion [J]. IEEE Transactions on Pattern Analysis and Machine Intelligence, 1990, 12(7): 629-639.
[10] Sziranyi T, Kopilovic I, et al. Anisotropic diffusion as a preprocessing step for efficient image compression [J]. Pattern Recognition, 1998, 2(16-20): 1565-1567.
[11] Puvanathasan Prabakar, Bizheva Kostadinka. Interval type-II fuzzy anisotropic diffusion algorithm for speckle noise reduction in optical coherence tomography images [J]. Opt. Expr., 2009, 17(2): 733-747.
[12] Peter K. Phase congruency: a low-level image invariant [J]. Psychological Research, 2000, 64(2): 136-148.
[14] Najarian K, Splinter R. Biomedical Signal and Image Processing [M]. Florida: CRC Press, 2006: 52-69.
[15] Kovesi P. Phase congruency detects corners and edges [C]. The Australian Pattern Recognition Society Conference, DICTA Sydney, 2003, 309-318.