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A novel and efficient amino acid codon based medical image encryption scheme colligating multiple chaotic maps

机译:基于新型和高效的氨基酸密码子的医学图像加密方案凝聚多个混沌映射

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Advancement of medical imaging in health care sector emerges new challenge of secure image transmission. Security of medical imaging is a prominent issue to keep patients information safe. In this paper an efficient and secure biomedical image encryption algorithm is proposed with two phases of encryption. In the first phase the image has to undergone a random substitution of 20 Amino Acid based Codon with one or more than alternate Codon in the form of triplets using the base DNA code (A, T, C and G) using Linear Congruential Generator. Upshot of the first phase encrypted image is divided into blocks and a logistic map is used to generate a series of unique initial condition and control parameter. Using a random ASCII character as a seed the unique initial conditions for each block is generating some Pseudo Random Number Generator. The seed is encrypted using RSA. Each block is circularly shifted using unique PRNG. These unique initial conditions and control parameters are utilized by a series of Tent Maps to perform block by block confusion in the second phase encryption using XOR operation. Keys used in both the phases are encrypted using AES technique. Proposed method is used to encrypt any biomedical and other images also. All type of security measure such as Differential attack, key space analysis to resist Brute force attack, Correlation analysis, key sensitivity test, resistance to Noise attack and plain text attack along with time analysis has been taken into consideration to test the vulnerability of the proposed algorithm. From the comparative study the proposed method outperform in many aspects than the existing methods.
机译:医疗保健部门的医学成像的进步出现了安全图像传输的新挑战。医学成像的安全是让患者信息安全的突出问题。在本文中,提出了一种有效和安全的生物医学图像加密算法,其两个相加密。在第一阶段中,图像必须经历两个氨基酸基氨基的密码子,其中使用线性总体发生器的基准DNA码(A,T,C和G)以三元组的形式具有一个或多个替代密码子。第一阶段加密图像的底部被分成块,逻辑映射用于生成一系列唯一的初始条件和控制参数。使用随机ASCII字符作为种子,每个块的唯一初始条件正在生成一些伪随机数发生器。使用RSA加密种子。每个块使用唯一的PRNG循环移位。这些独特的初始条件和控制参数由一系列帐篷映射利用以使用XOR操作在第二相加密中通过块混淆来执行块。两个阶段中使用的键都使用AES技术加密。所提出的方法用于加密任何生物医学和其他图像。所有类型的安全措施,如差异攻击,关键空间分析,抵抗严重力攻击,相关性分析,关键敏感性测试,抗噪声攻击抗性以及普通文本攻击以及​​时间分析,以测试提出的脆弱性算法。根据比较研究,所提出的方法在许多方面优于现有方法。

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