Fast DNA encoding algorithm inspired by the SPOOLing system
The digital images are widely used in many fields, such as the military, government, and traffic. DNA encoding, as an important means of image encryption, has received increasing attention due to its powerful parallelism. But its low coding efficiency limits its application. This paper designs a qua...
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| Veröffentlicht in: | Medical & biological engineering & computing Jg. 60; H. 9; S. 2707 - 2720 |
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| Format: | Journal Article |
| Sprache: | Englisch |
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Berlin/Heidelberg
Springer Berlin Heidelberg
01.09.2022
Springer Nature B.V |
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| ISSN: | 0140-0118, 1741-0444, 1741-0444 |
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| Abstract | The digital images are widely used in many fields, such as the military, government, and traffic. DNA encoding, as an important means of image encryption, has received increasing attention due to its powerful parallelism. But its low coding efficiency limits its application. This paper designs a quartering search method and proposes a fast DNA encoding algorithm inspired by the simultaneous peripheral operations online system. By trading off memory for time, the base combinations corresponding to 256 different pixel values are precomputed and prestored in the computer memory or hard disk in advance. When the corresponding DNA encoding or decoding operations are carried out, the data can be called to avoid a large number of repeated calculations. Experimental results and comparative analyses show that the proposed algorithm can greatly improve the efficiency of DNA encoding or decoding and be practical. Our algorithm can further facilitate the promotion and application of DNA encoding in the field of image encryption.
Graphical abstract |
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| AbstractList | The digital images are widely used in many fields, such as the military, government, and traffic. DNA encoding, as an important means of image encryption, has received increasing attention due to its powerful parallelism. But its low coding efficiency limits its application. This paper designs a quartering search method and proposes a fast DNA encoding algorithm inspired by the simultaneous peripheral operations online system. By trading off memory for time, the base combinations corresponding to 256 different pixel values are precomputed and prestored in the computer memory or hard disk in advance. When the corresponding DNA encoding or decoding operations are carried out, the data can be called to avoid a large number of repeated calculations. Experimental results and comparative analyses show that the proposed algorithm can greatly improve the efficiency of DNA encoding or decoding and be practical. Our algorithm can further facilitate the promotion and application of DNA encoding in the field of image encryption.
Graphical abstract Abstract The digital images are widely used in many fields, such as the military, government, and traffic. DNA encoding, as an important means of image encryption, has received increasing attention due to its powerful parallelism. But its low coding efficiency limits its application. This paper designs a quartering search method and proposes a fast DNA encoding algorithm inspired by the simultaneous peripheral operations online system. By trading off memory for time, the base combinations corresponding to 256 different pixel values are precomputed and prestored in the computer memory or hard disk in advance. When the corresponding DNA encoding or decoding operations are carried out, the data can be called to avoid a large number of repeated calculations. Experimental results and comparative analyses show that the proposed algorithm can greatly improve the efficiency of DNA encoding or decoding and be practical. Our algorithm can further facilitate the promotion and application of DNA encoding in the field of image encryption. The digital images are widely used in many fields, such as the military, government, and traffic. DNA encoding, as an important means of image encryption, has received increasing attention due to its powerful parallelism. But its low coding efficiency limits its application. This paper designs a quartering search method and proposes a fast DNA encoding algorithm inspired by the simultaneous peripheral operations online system. By trading off memory for time, the base combinations corresponding to 256 different pixel values are precomputed and prestored in the computer memory or hard disk in advance. When the corresponding DNA encoding or decoding operations are carried out, the data can be called to avoid a large number of repeated calculations. Experimental results and comparative analyses show that the proposed algorithm can greatly improve the efficiency of DNA encoding or decoding and be practical. Our algorithm can further facilitate the promotion and application of DNA encoding in the field of image encryption.The digital images are widely used in many fields, such as the military, government, and traffic. DNA encoding, as an important means of image encryption, has received increasing attention due to its powerful parallelism. But its low coding efficiency limits its application. This paper designs a quartering search method and proposes a fast DNA encoding algorithm inspired by the simultaneous peripheral operations online system. By trading off memory for time, the base combinations corresponding to 256 different pixel values are precomputed and prestored in the computer memory or hard disk in advance. When the corresponding DNA encoding or decoding operations are carried out, the data can be called to avoid a large number of repeated calculations. Experimental results and comparative analyses show that the proposed algorithm can greatly improve the efficiency of DNA encoding or decoding and be practical. Our algorithm can further facilitate the promotion and application of DNA encoding in the field of image encryption. |
| Author | Zhang, Xiaoqiang Tian, Jingxi |
| Author_xml | – sequence: 1 givenname: Xiaoqiang orcidid: 0000-0002-7686-2841 surname: Zhang fullname: Zhang, Xiaoqiang email: grayqiang@163.com organization: School of Information and Control Engineering, China University of Mining and Technology – sequence: 2 givenname: Jingxi surname: Tian fullname: Tian, Jingxi organization: School of Information and Control Engineering, China University of Mining and Technology |
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| Cites_doi | 10.1007/s11042-021-10724-3 10.1364/AO.428203 10.1155/2021/6615411 10.1016/S1353-4858(21)00001-5 10.1007/s11071-021-06688-6 10.1109/TCBB.2017.2752703 10.1126/science.7973651 10.1007/s11071-015-2330-8 10.1147/rd.383.0243 10.1109/JPHOT.2021.3076480 10.1007/s11071-019-05378-8 10.1016/S1353-4858(21)00013-1 10.1007/s11042-020-08821-w 10.1049/iet-spr.2019.0276 10.1007/s11042-020-09672-1 10.1007/s11042-021-11122-5 10.1038/171737a0 10.1109/TII.2021.3053595 10.1007/s11042-021-10549-0 10.1088/1402-4896/ac66a1 10.1109/MSEC.2021.3107078 10.1007/s11042-020-10437-z 10.1007/s11042-021-10723-4 10.1007/s00521-019-04637-4 10.1109/JSEN.2020.3045950 10.1093/bjps/axl018 10.3390/e23081000 10.1007/s11042-020-08880-z 10.1080/02564602.2018.1544855 10.1093/gigascience/giab025 10.1109/ICTKE47035.2019.8966907 10.3390/s21030758 10.3390/e23050570 |
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| Keywords | SPOOLing system Image encryption Precomputation DNA encoding Efficient |
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| SubjectTerms | Algorithms Biomedical and Life Sciences Biomedical Engineering and Bioengineering Biomedicine Comparative analysis Computer Applications Decoding Deoxyribonucleic acid Digital imaging Disk drives DNA Human Physiology Imaging On-line systems Original Article Radiology Spooling |
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| Title | Fast DNA encoding algorithm inspired by the SPOOLing system |
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