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[해외논문] Reversible DNA data hiding using multiple difference expansions for DNA authentication and storage

Multimedia tools and applications, v.77 no.15, 2018년, pp.19499 - 19526  

Lee, Suk-Hwan ,  Lee, Eung-Joo ,  Hwang, Won-Joo ,  Kwon, Ki-Ryong

초록이 없습니다.

참고문헌 (37)

  1. J Eng Technol Res OO Babatunde 3 5 148 2011 Babatunde OO (2011) Deoxyribonucleic acid (DNA) as a hypothetical information hiding medium: DNA mimics basic information security protocol. J Eng Technol Res 3(5):148-154 

  2. IEEE Trans Inf Theory F Balado 59 2 928 2013 10.1109/TIT.2012.2219495 Balado F (2013) Capacity of DNA data embedding under substitution mutations. IEEE Trans Inf Theory 59(2):928-941 

  3. 10.1109/ICCOMM.2010.5509086 Borda M, Tornea O (2010) DNA secret writing techniques. 8th International Conference on Communications (COMM), p. 451-456 

  4. Front Algorithm (FAW) Lect Notes Comput Sci T Chen 4613 84 2007 10.1007/978-3-540-73814-5_8 Chen T (2007) A novel biology-based reversible data hiding fusion scheme. Front Algorithm (FAW) Lect Notes Comput Sci 4613:84-95 

  5. Nature CT Clelland 399 533 1999 10.1038/21092 Clelland CT, Risca V, Bancroft C (1999) Hiding messages in DNA microdots. Nature 399:533-534 

  6. IEEE Trans Inf Forensic Secur D Coltuc 6 3 873 2011 10.1109/TIFS.2011.2145372 Coltuc D (2011) Improved embedding for prediction-based reversible watermarking. IEEE Trans Inf Forensic Secur 6(3):873-882 

  7. Trends Biotechnol JPL Cox 19 7 247 2001 10.1016/S0167-7799(01)01671-7 Cox JPL (2001) Long-term data storage in DNA. Trends Biotechnol 19(7):247-250 

  8. 10.1109/BMEI.2014.7002894 Fu J, Zhang W, Yu N, Ma G, Tang Q (2014) Fast tamper location of batch DNA sequences based on reversible data hiding. 7th International Conference on Biomedical Engineering and Informatics (BMEI), p 868-872 

  9. Science DG Gibson 319 5867 1215 2008 10.1126/science.1151721 Gibson DG, Benders GA, Andrews-Pfannkoch C, Denisova EA, Baden-Tillson H, Zaveri J, Stockwell TB, Brownley A, Thomas DW, Algire MA, Merryman C, Young L, Noskov VN, Glass JI, Venter JC, Hutchison CA III., Smith HO (2008) Complete Chemical Synthesis, Assembly, and Cloning of a Mycoplasma genitalium Genome. Science 319(5867):1215-1220 

  10. Science DG Gibson 329 5987 52 2010 10.1126/science.1190719 Gibson DG, Glass JI, Lartigue C, Noskov VN, Chuang R-Y, Algire MA, Benders GA, Montague MG, Ma L, Moodie MM, Merryman C, Vashee S, Krishnakumar R, Assad-Garcia N, Andrews-Pfannkoch C, Denisova EA, Young L, Qi Z-Q, Segall-Shapiro TH, Calvey CH, Parmar PP, Hutchison CA III, Smith HO, Venter JC (2010) Creation of a bacterial cell controlled by a chemically synthesized genome. Science 329(5987):52-56 

  11. Nature N Goldman 494 77 2013 10.1038/nature11875 Goldman N, Bertone P, Chen S, Dessimoz C, LeProust EM, Sipos B, Birney E (2013) Towards practical high-capacity, low-maintenance information storage in synthesized DNA. Nature 494:77-80 

  12. 10.1186/1471-2105-8-176 Heider D, Barnekow A (2007) DNA-based watermarks using the DNA-Crypt algorithm. BMC Bioinf 8(176) 

  13. 10.1186/1471-2199-9-40 Heider D, Barnekow A (2008) DNA Watermarks - a proof of concept. BMC Bioinf 9(40) 

  14. 10.1186/1756-0500-2-125 Heider D, Barnekow A (2009) DNA watermarks in non-coding regulatory sequences. BMC Bioinf 2(125) 

  15. Curr Bioinforma D Heider 6 3 375 2011 10.2174/157489311796904646 Heider D, Barnekow A (2011) DNA Watermarking: challenging perspectives for biotechnological applications. Curr Bioinforma 6(3):375-382 

  16. IEEE Trans Circ Syst Video Technol Y Hu 19 2 250 2007 Hu Y, Lee H-K, Li J (2007) DE-based reversible data hiding with improved overflow location map. IEEE Trans Circ Syst Video Technol 19(2):250-260 

  17. IEEE Trans Inf Forensic Secur X Hu 10 3 653 2015 10.1109/TIFS.2015.2392556 Hu X, Zhang W, Li X, Yu N (2015) Minimum rate prediction and optimized histograms modification for reversible data hiding. IEEE Trans Inf Forensic Secur 10(3):653-664 

  18. Multimed Tools Appl Y-H Huang 70 3 1439 2014 10.1007/s11042-012-1176-z Huang Y-H, Chang C-C, Wu C-Y (2014) A DNA-based data hiding technique with low modification rates. Multimed Tools Appl 70(3):1439-1451 

  19. PLoS Pathog D Jupiter 6 6 e1000950 2010 10.1371/journal.ppat.1000950 Jupiter D, Ficht T, Samuel J, Qin Q-M, Figueiredo P (2010) DNA watermarking of infectious agents: progress and prospects. PLoS Pathog 6(6):e1000950. https://doi.org/10.1371/journal.ppat.1000950 

  20. Digital Signal Process S-H Lee 25 173 2014 10.1016/j.dsp.2013.11.010 Lee S-H (2014) DNA sequence watermarking based on random circular angle. Digital Signal Process 25:173-189 

  21. Inf Sci S-H Lee 273 263 2014 10.1016/j.ins.2014.03.039 Lee S-H (2014) DWT based coding DNA watermarking for DNA copyright protection. Inf Sci 273:263-286 

  22. Lieff J (2012) mind and molecular genetics in the neuron 2: new genetic landscape. http://jonlieffmd.com/blog/mind-and-molecular-genetics-in-the-neuron-2-new-genetic-landscape-2 

  23. PLoS One M Liss 7 8 e42465 2012 10.1371/journal.pone.0042465 Liss M, Daubert D, Brunner K, Kliche K, Hammes U, Leiherer A, Wagner R (2012) Embedding permanent watermarks in synthetic genes. PLoS One 7(8):e42465. https://doi.org/10.1371/journal.pone.0042465 

  24. Int Conf Biomed Eng Inf (BMEI) G Ma 484-489 1 2013 Ma G, Tang Q, Zhang W, Yu N (2013) Tamper restoration on DNA sequences based on reversible data hiding. Int Conf Biomed Eng Inf (BMEI) 484-489:1-13 

  25. IEEE Trans Image Process B Ou 22 12 5010 2013 10.1109/TIP.2013.2281422 Ou B, Li X, Zhao Y, Ni R, Shi Y-Q (2013) Pairwise prediction-error expansion for efficient reversible data hiding. IEEE Trans Image Process 22(12):5010-5021 

  26. Cryptologia VI Risca 25 1 37 2001 10.1080/0161-110191889761 Risca VI (2001) DNA-based steganography. Cryptologia 25(1):37-49 

  27. Shimanovsky B, Feng J, Potkonjak M (2002) Hiding data in DNA. Procs. of the 5th Intl. Workshop in Information Hiding, p 373-386 

  28. Inf Sci HJ Shiu 180 11 2196 2010 10.1016/j.ins.2010.01.030 Shiu HJ, Ng KL, Fang JF, Lee RCT, Huan CH (2010) Data hiding methods based upon DNA sequences. Inf Sci 180(11):2196-2208 

  29. Multimed Tools Appl AK Singh 76 6 8881 2017 10.1007/s11042-016-3514-z Singh AK (2017) Improved Hybrid Technique for Robust and Imperceptible Multiple Watermarking using digital Images. Multimed Tools Appl 76(6):8881-8900 

  30. Int J Dig Crime Forensic Arch Q Tang 6 4 1 2014 10.4018/ijdcf.2014100101 Tang Q, Ma G, Zhang W, Yu N (2014) Reversible data hiding for DNA sequences and its applications. Int J Dig Crime Forensic Arch 6(4):1-13 

  31. IEEE Trans Circ Syst Video Technol J Tian 13 8 890 2003 10.1109/TCSVT.2003.815962 Tian J (2003) Reversible data embedding using a difference expansion. IEEE Trans Circ Syst Video Technol 13(8):890-896 

  32. 10.1155/2013/634832 Tulpan D, Regoui C, Durand G, Belliveau L, Léger S (2013) HyDEn: a hybrid steganocryptographic approach for data encryption using randomized error-correcting DNA codes. BioMed Res Int 634832 

  33. Wang Z, Zhao X, Wang H, Cui G (2013) Information hiding based on DNA steganography. 4th IEEE International Conference on Software Engineering and Service Science (ICSESS), p. 946-949 

  34. IEEE Trans Cybern J Wang 47 2 315 2017 Wang J, Ni J, Zhang X, Shi Y-Q (2017) Rate and distortion optimization for reversible data hiding using multiple histogram shifting. IEEE Trans Cybern 47(2):315-326 

  35. 10.1145/602421.602426 Wong PC, Wong KK, Foote HP (2003) Organic data memory using the DNA approach. Commun ACM 46(1) 

  36. Nat Comput M Yamamoto 7 3 335 2008 10.1007/s11047-008-9076-x Yamamoto M, Kashiwamura S, Ohuchi A, Furukawa M (2008) Large-scale DNA memory based on the nested PCR. Nat Comput 7(3):335-346 

  37. 10.1007/s11042-016-3862-8 Zear A, Singh AK, Kumar P (2016) A proposed secure multiple watermarking technique based on DWT, DCT and SVD for application in medicine. Multimed Tools Appl 1-20. Online first published 

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