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基于量子噪声掩蔽的射线图像的不可感知可逆水印。

Imperceptible reversible watermarking of radiographic images based on quantum noise masking.

机构信息

Institut Mines-Telecom; IMT Atlantique; Unite INSERM 1101 Latim, Technopole Brest-Iroise, CS 83818, 29238, Brest Cedex 3, France.

Institut Mines-Telecom; IMT Atlantique; Unite INSERM 1101 Latim, Technopole Brest-Iroise, CS 83818, 29238, Brest Cedex 3, France.

出版信息

Comput Methods Programs Biomed. 2018 Jul;160:119-128. doi: 10.1016/j.cmpb.2018.03.011. Epub 2018 Mar 21.

Abstract

BACKGROUND AND OBJECTIVE

Advances in information and communication technologies boost the sharing and remote access to medical images. Along with this evolution, needs in terms of data security are also increased. Watermarking can contribute to better protect images by dissimulating into their pixels some security attributes (e.g., digital signature, user identifier). But, to take full advantage of this technology in healthcare, one key problem to address is to ensure that the image distortion induced by the watermarking process does not endanger the image diagnosis value. To overcome this issue, reversible watermarking is one solution. It allows watermark removal with the exact recovery of the image. Unfortunately, reversibility does not mean that imperceptibility constraints are relaxed. Indeed, once the watermark removed, the image is unprotected. It is thus important to ensure the invisibility of reversible watermark in order to ensure a permanent image protection.

METHODS

We propose a new fragile reversible watermarking scheme for digital radiographic images, the main originality of which stands in masking a reversible watermark into the image quantum noise (the dominant noise in radiographic images). More clearly, in order to ensure the watermark imperceptibility, our scheme differentiates the image black background, where message embedding is conducted into pixel gray values with the well-known histogram shifting (HS) modulation, from the anatomical object, where HS is applied to wavelet detail coefficients, masking the watermark with the image quantum noise. In order to maintain the watermark embedder and reader synchronized in terms of image partitioning and insertion domain, our scheme makes use of different classification processes that are invariant to message embedding.

RESULTS

We provide the theoretical performance limits of our scheme into the image quantum noise in terms of image distortion and message size (i.e. capacity). Experiments conducted on more than 800 12 bits radiographic images of different anatomical structures show that our scheme induces a very low image distortion (PSNR∼ 76.5 dB) for a relatively important capacity (capacity∼ 0.02 bits of message per pixel).

CONCLUSIONS

The proposed watermarking scheme, while being reversible, preserves the diagnosis value of radiographic images by masking the watermark into the quantum noise. As theoretically and experimentally established our scheme offers a good capacity/image quality compromise that can support different watermarking based security services such as integrity and authenticity control. The watermark can be kept into the image during the interpretation of the image, offering thus a continuous protection. Such a masking strategy can be seen as the first psychovisual model for radiographic images. The reversibility allows the watermark update when necessary.

摘要

背景与目的

信息与通信技术的进步促进了医学图像的共享和远程访问。随着这一发展,对数据安全的需求也在增加。水印可以通过将一些安全属性(例如数字签名、用户标识符)嵌入到像素中来帮助更好地保护图像。但是,为了充分利用这项技术在医疗保健中的作用,需要解决的一个关键问题是确保水印过程引起的图像失真不会危及图像诊断价值。为了克服这个问题,可逆水印是一种解决方案。它允许在完全恢复图像的情况下去除水印。不幸的是,可逆性并不意味着可以放宽不可见性约束。事实上,一旦去除水印,图像就不再受到保护。因此,确保可逆水印的不可见性对于确保图像的永久保护非常重要。

方法

我们提出了一种新的用于数字射线照相图像的脆弱可逆水印方案,其主要创新之处在于将可逆水印掩蔽到图像量子噪声(射线照相图像中的主要噪声)中。更清楚地说,为了确保水印的不可感知性,我们的方案将消息嵌入到像素灰度值中的图像黑色背景(HS 调制)与解剖对象区分开来,在解剖对象中,HS 应用于小波细节系数,利用图像量子噪声来掩蔽水印。为了保持水印嵌入器和读者在图像分区和插入域方面的同步,我们的方案使用了不同的分类过程,这些过程对消息嵌入是不变的。

结果

我们提供了我们的方案在图像量子噪声中的理论性能极限,包括图像失真和消息大小(即容量)。在 800 多张不同解剖结构的 12 位射线照相图像上进行的实验表明,我们的方案在相对较大的容量(每像素约 0.02 位消息的容量)下引起的图像失真非常低(PSNR∼76.5dB)。

结论

所提出的水印方案在可逆的同时,通过将水印掩蔽到量子噪声中来保留射线照相图像的诊断价值。正如理论和实验所确定的,我们的方案提供了一种良好的容量/图像质量折衷方案,可以支持基于完整性和真实性控制等不同的水印安全服务。在解释图像时,可以将水印保留在图像中,从而提供连续的保护。这种掩蔽策略可以被视为射线照相图像的第一个心理视觉模型。可逆性允许在需要时更新水印。

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