[4] CCITT. ISO/IEC 10918-1 Information technology-digital compression and coding of continuous-tone still image: requirements and guidelines[S].Geneva: ISO, 1994.
[5] SKODRAS A, CHRISTOPOULOS C, EBRAHIMI T. The JPEG 2000 still image compression standard[J]. IEEE Signal Processing Magazine, 2001, 18(5): 36-58.
[6] PENNA B, TILLO T, MAGLI E, et al. Progressive 3-D coding of hyperspectral images based on JPEG 2000 [J]. IEEE Geosci Remote Sens Lett, 2006, 3(1): 125-129.
[7] OLIVER J, PEREZ M M. On the design of fast wavelet transform algorithms with low memory requirements [J], IEEE Trans Circuits Syst Video Technol, 2008, 18(2): 237-248.
[8] TRAN T D, LIANG J, TU C. Lapped transform via time-domain pre- and post-processing [J]. IEEE Trans on Signal Process, 2003, 51(6): 1557-1571.
[9] http://www.microsoft.com/whdc/xps/hdphotodpk.mspx.
[10] TU C, SRINIVASN S, SULLIVAN G J, et al. Low-complexity hierarchical lapped transform for lossy-to-lossless image coding in JPEG XR/HD-Photo [C]. SPIE,2008, 7073: 70730C-1-12.
[12] HAO P, SHI Q. Matrix factorizations for reversible integer mapping [J], IEEE Trans on Signal Process, 2001, 42(10): 2314-2324.
[13] GALLI L, SALZO S. Lossless hyperspectral compression using KLT [C]. IEEE Int Geosci Remote Sens Symposium, 2004, 1: 313-316.
[14] WANG L, WU J, JIAO L, et al. Lossy to lossless image compression based on reversible integer DCT [C]. IEEE Int Conf Image Processing, 2008: 1037-1040.
[15] ISALM A, PEARLMAN W A. Embedded and efficient low-complexity hierarchical image coder [C]. SPIE, 1998, 3653: 294-305.