[1]CHEN H S,NI J Q,HONG W. High-fidelity reversible data hiding using directionally enclosed prediction[J]. IEEE signal processing letters,2017,24(5):574-578.
[2]HONG W,CHEN T S,CHEN J. Reversible data hiding using delaunay triangulation and selective embedment[J]. Information sciences,2015,308(1):140-154.
[3]FRIDRICH J,GOLJAN M,DU R. Lossless data embedding—new paradigm in digital watermarking[J]. Journal on applied signal processing,2002(2):185-196.
[4]CELIK M U,SHARMA G,TEKALP A M,et al. Lossless generalized-LSB data embedding[J]. IEEE transactions on image processing,2005,14(2):253-266.
[5]NI Z C,SHI Y Q,ANSARI N,et al. Reversible data hiding[J]. IEEE transactions on circuits and systems for video technology,2006,16(3):354-362.
[6]THODI D M,RODRIGUEZ J J. Expansion embedding techniques for reversible watermarking[J]. IEEE transactions on image processing,2007,16(3):721-730.
[7]TIAN J. Reversible data embedding using a difference expansion[J]. IEEE transactions on circuits and systems for video technology,2003,13(8):890-896.
[8]LI R,LI X Y. Pixel value ordering reversible data hiding algorithm based on image block selection[J]. Journal of image and graphics,2017,22(12):1664-1676.
[9]LIAO X,LI K,ZHU X,et al. Robust detection of image operator chain with two-stream convolutional neural network[J]. IEEE Journal of selected topics in signal processing,2020,14(5)955-968.
[10]SHI Y Q,LI X,ZHANG X,et al. Reversible data hiding:advances in the past two decades[J]. IEEE access,2016(4):3210-3237.
[11]LIAO X,YU Y,LI B,et al. A new payload partition strategy in color image steganography[J]. IEEE transaction on circuits and system for video technology,2020,30(3):685-696.
[12]LIAO X,YIN J,CHEN M,et al. Adaptive payload distribution in multiple images steganography based on image texture features[J]. IEEE transaction on dependable and secure computing,2020. doi:10.1109/TDSC.2020.3004708.
[13]ZHANG X P. Reversible data hiding in encrypted image[J]. IEEE signal processing letters,2011,18(4):255-258.
[14]QIN C,QIAN X K,HONG W,et al. An efficient coding scheme for reversible data hiding in encrypted image with redundancy transfern[J]. Information sciences,2019,487(6):176-192.
[15]MA K,ZHANG W,ZHAO X,et al. Reversible data hiding in encrypted images by reserving room before encryption[J]. IEEE transactions on information forensics and secur,2013,8(3):553-562.
[16]PUTEAUX P,PUECH W. An efficient MSB prediction-based method for high-capacity reversible data hiding in encrypted images[J]. IEEE transactions on information forensics and security,2018,13(7):1670-1681.
[17]PUTEAUX P,PUECH W. Epe-based huge-capacity reversible data hiding in encrypted images[C]//2018 IEEE International Workshop on Information Forensics and Security(WIFS),IEEE,2018:1-7.
[18]PUTEAUX P,PUECH W. A recursive reversible data hiding in encrypted images method with a very high payload[J]. IEEE transaction on multimedia,2021,23:636-650.
[19]CHEN F,YUAN Y,HE H,et al. Multi-MSB compression based reversible data hiding scheme in encrypted images[J]. IEEE transaction on circuits and system for video technology,2021,31(3):905-916.
[20]YIN Z X,SHE X M,TANG J,et al. Reversible data hiding in encrypted images based on pixel prediction and multi-MSB planes rearrangement[J]. Signal processing,2021,187(10):10814.
[21]YIN Z,XIANG Y,ZHANG X. Reversible data hiding in encrypted images based on multi-MSB prediction and Huffman coding[J]. IEEE transaction on multimedia,2020,22(4):874-884.
[22]GAO G Y,ZHANG L P,LIN Y,et al. High-performance reversible data hiding in encrypted images with adaptive Huffman code[J]. Digital signal processing,2023,133:103870.