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使用DNA序列和图像的双层隐写技术。

Double layer steganography technique using DNA sequences and images.

作者信息

Aljahdali Asia Othman, Al-Harbi Omnia Abdullah

机构信息

Cybersecurity Department, College of Computer Science and Engineering, University of Jeddah, Jeddah, Saudi Arabia.

Department of Computer Science and Artificial Intelligent, College of Computer Science and Engineering, University of Jeddah, Jeddah, Saudi Arabia.

出版信息

PeerJ Comput Sci. 2023 May 16;9:e1379. doi: 10.7717/peerj-cs.1379. eCollection 2023.

Abstract

Information security has become increasingly challenging as a result of massive advancements in information and communication technologies. Due to the necessity of exchanging private information and the open nature of the network, there is an increased risk of various types of attacks. Consequently, data security is an essential component of data communication. One of the most effective methods used to achieve secrecy is steganography. This method hides data within a cover object without raising suspicion. The level of security is improved when two steganography methods are combined. This approach is known as multilevel steganography, which hides sensitive data in two cover objects in order to provide a two-level security system. Accordingly, we developed a technique that focuses on protecting secrecy while also being robust to attacks. The new technique uses a multi-layer steganography mechanism by using DNA sequences and images as carriers for sensitive data. The technique intends to hide secret messages in the DNA using the substation algorithm, and then the fake DNA is embedded in an image utilizing the discrete cosine transform (DCT) method. Eventually, the stego image is sent to the intended recipient. Different types of images with different sizes and lengths of messages and DNA sequences were used during the experiments. The results show that the proposed mechanism is resistant to histogram and chi-square attacks. The maximum mean value observed was 0.05, which means the histograms of the original and stego images are nearly identical, and the stego image does not raise any suspicion regarding the existence of secret information. In addition, the imperceptibility ratios were good, as the highest PSNR and MSE values were 0.078 and 72.2, respectively. Finally, the PNG and BMP images show excellent results. On the other hand, the JPG images failed to meet the expected ratio of imperceptibility and security.

摘要

由于信息和通信技术的巨大进步,信息安全变得越来越具有挑战性。由于交换私人信息的必要性和网络的开放性,各种类型攻击的风险增加。因此,数据安全是数据通信的重要组成部分。用于实现保密性的最有效方法之一是隐写术。这种方法将数据隐藏在载体对象中而不引起怀疑。当两种隐写术方法结合使用时,安全级别会提高。这种方法被称为多级隐写术,它将敏感数据隐藏在两个载体对象中以提供两级安全系统。因此,我们开发了一种技术,该技术专注于保护保密性同时对攻击具有鲁棒性。新技术通过使用DNA序列和图像作为敏感数据的载体,采用多层隐写机制。该技术打算使用替换算法将秘密消息隐藏在DNA中,然后利用离散余弦变换(DCT)方法将伪造的DNA嵌入图像中。最终,隐秘图像被发送给预期的接收者。实验中使用了不同大小、不同消息长度和DNA序列的不同类型图像。结果表明,所提出的机制能够抵抗直方图和卡方攻击。观察到的最大平均值为0.05,这意味着原始图像和隐秘图像的直方图几乎相同,并且隐秘图像不会引起对秘密信息存在的任何怀疑。此外,不可感知率良好,因为最高的PSNR和MSE值分别为0.078和72.2。最后,PNG和BMP图像显示出优异的结果。另一方面,JPG图像未能达到预期的不可感知性和安全性比率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4815/10280544/b4cba448eb6b/peerj-cs-09-1379-g001.jpg

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