A secure medical image encryption technique based on DNA cryptography with elliptic curves

被引:0
|
作者
V. N. Senthil Kumaran [1 ]
T. Manikandan [2 ]
Rajesh Kumar Dhanaraj [3 ]
Taher Al-Shehari [4 ]
Nasser A. Alsadhan [5 ]
Shitharth Selvarajan [6 ]
机构
[1] SRM Institute of Science and Technology,Department of Electronics and Communication Engineering
[2] Tiruchirappalli Campus,Department of Computer Science and Business Systems
[3] Rajalakshmi Engineering College,Symbiosis Institute of Computer Studies and Research (SICSR)
[4] Symbiosis International (Deemed University),Computer Skills, Department of Self
[5] King Saud University,Development Skill, Common First Year Deanship
[6] King Saud University,Computer Science Department, College of Computer and Information Sciences
[7] Kebri Dehar University,Department of Computer Science
[8] Chennai Institute of Technology,Department of Computer Science and Engineering
[9] Chitkara University Institute of Engineering and Technology, Centre for Research Impact & Outcome
[10] Chitkara University, School of Built Environment, Engineering and Computing
[11] Leeds Beckett University,undefined
关键词
Applied AI; Biomedical image encryption; DNA encoding; Elliptic curve cryptography; Security; Secure key generation;
D O I
10.1038/s41598-025-03898-5
中图分类号
学科分类号
摘要
Health services and telemedicine have proven to be an important area for information protection in research, especially with medical services and smart health care applications. In these systems, medical imaging protection are important not only for clinical diagnosis, but also to protect the very sensitive and confidential patient data. With progress in imaging technologies and biomedical processing algorithms, the amount of image data increases rapidly. However, securing this information while transferring through insecure channel is still a constant challenge. Existing encryption techniques often face limitations such as high computational complexity, insufficient security against advanced cryptographic attacks, poor reversal and pixel correlation. To overcome these challenges, the proposed approach provides an innovative hybrid encryption technique that integrates DNA cryptography with Elliptical Curve Cryptography (ECC). The DNA-based coding shows high randomness and equality while the ECC provides strong security and confidentiality. The DNA encoding and secure key generation are employed in the proposed technique to obtain the encrypted medical image. The combination of these techniques addresses the main boundaries of existing disadvantage by increasing both security and calculation efficiency, making it well suited for real time medical applications. The experimental analysis was carried out with various parameters like histogram analysis, correlation coefficient, Chi square, MSE, PSNR, entropy etc. The result analysis states that the proposed methodology outperforms the state-of-the-art existing methods with enhanced performance such as entropy of 7.9981, Correlation coefficient of 0.0019 and PSNR of 53.97. Also, the proposed methodology is tested for runtime analysis, memory analysis and security analysis.
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