利用启发式搜索算法增强医学图像水印的鲁棒性

E. Elbasi
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引用次数: 2

摘要

如今,借助互联网技术,图像、视频、动画、音频和软件等多媒体元素可以在短时间内传播到世界任何地方。内容所有者关心版权保护和认证。在磁共振、超声等医学图像中,水印是保护患者信息的一种方法。在文献中,提出了几种使用频域(如数字余弦变换(DCT),数字小波变换(DWT),数字傅立叶变换(DFT),数字氡变换(DRT))和空间域(最低有效位(LSB))方法的方法。大多数基于数字小波变换的水印方法在常见攻击后都能得到很好的效果。在DWT算法中,使用比例因子进行嵌入和提取。缩放因子是一个介于0和1之间的数字,由用户决定,这是不有效的。我们可以使用蛮力方法,通过检查所有可能的情况来解决问题,但它很慢。在这项工作中,我们使用模拟退火启发式搜索算法来寻找最佳缩放因子,以达到更鲁棒、透明、高数据容量和抗医学图像水印的方法。实验结果表明,基于模拟退火的频率域水印比例因子确定方法能获得更强的鲁棒性、抗干扰性和透明性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing the robustness of watermarked medical images using heuristic search algorithm
Nowadays, multimedia elements such as image, video, animation, audio, and software can be distributed in a short time anywhere in the world using internet technology. Content owners are concerned about copyright protection and authentication. Watermarking is one of the method to protect patient information in medical images such as magnetic resonance and ultrasound imaging. In the literature, there are several methods proposed using both frequency-domain (etc. digital cosine transforms (DCT), digital wavelet transforms (DWT), digital Fourier transforms (DFT), digital radon transform (DRT)) and spatial domain (least significant bits (LSB)) methods. Mostly digital wavelet transform based watermarking methods give very promising results after common attacks. In the DWT algorithm, scaling factor is used in embedding and extraction. A scaling factor is a number between 0 and 1 which has been determined by the user which is not efficient. We can use the brute force method which solves a problem by checking all the possible cases, but it is slow. In this work, we use simulated annealing heuristic search algorithm to find out the best scaling factor to reach more robust, transparent, high data capacity and resistant watermarking method in medical images. Experimental results show that simulated annealing-based scaling factor determination in frequency domain watermarking gives more robust, resistant, and transparent watermarked images.
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