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A Watermarking-Based Medical Image Integrity Control System and an Image Moment Signature for Tampering Characterization

机译:基于水印的医学图像完整性控制系统和篡改特征的图像矩签名

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摘要

In this paper, we present a medical image integrity verification system to detect and approximate local malevolent image alterations (e.g., removal or addition of lesions) as well as identifying the nature of a global processing an image may have undergone (e.g., lossy compression, filtering, etc.). The proposed integrity analysis process is based on nonsignificant region watermarking with signatures extracted from different pixel blocks of interest, which are compared with the recomputed ones at the verification stage. A set of three signatures is proposed. The first two devoted to detection and modification location are cryptographic hashes and checksums, while the last one is issued from the image moment theory. In this paper, we first show how geometric moments can be used to approximate any local modification by its nearest generalized 2-D Gaussian. We then demonstrate how ratios between original and recomputed geometric moments can be used as image features in a classifier-based strategy in order to determine the nature of a global image processing. Experimental results considering both local and global modifications in MRI and retina images illustrate the overall performances of our approach. With a pixel block signature of about 200 bit long, it is possible to detect, to roughly localize, and to get an idea about the image tamper.
机译:在本文中,我们提出了一种医学图像完整性验证系统,用于检测和估计局部恶意图像的变化(例如,病变的去除或增加),以及识别图像可能经历的整体处理的性质(例如,有损压缩,过滤等)。所提出的完整性分析过程基于带有从不同目标像素块提取的签名的非重要区域水印,并在验证阶段将其与重新计算的签名进行比较。提出了一组三个签名。前两个专门用于检测和修改位置的是加密散列和校验和,而最后一个是根据图像矩理论发行的。在本文中,我们首先展示如何通过最接近的广义二维高斯将几何矩用于近似任何局部修正。然后,我们演示了原始和重新计算的几何矩之间的比率如何在基于分类器的策略中用作图像特征,以便确定全局图像处理的性质。同时考虑了MRI和视网膜图像的局部和全局修改的实验结果说明了我们方法的整体性能。使用大约200位长的像素块签名,可以检测,粗略定位并获得有关图像篡改的想法。

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