基于优化算法的医学图像水印系统

Mohamed Saber, E. El-Kenawy, A. Ibrahim, M. Eid
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引用次数: 0

摘要

当通过开放网络交换这些记录时,用于提供医疗记录安全性的主要方法之一是数字水印。为了保护患者的隐私,该系统还需要一种保护图像的手段。本文提出了一种基于离散小波变换(DWT)和离散余弦变换(DCT)的级联水印方法,具有更好的鲁棒性和安全性。DCT将图像分为低频段和高频频段,将水印信息嵌入到低频频段,防止原始图像失真。DWT将图像分成四个频率系数;水平,垂直,近似,和详细的频率成分。水印系统强度的判断因素是鲁棒性、不可见性和嵌入信息容量。不可见性是指水印、标志或数据在原始图像或主图像中的透明性,没有任何失真。容量数据有效载荷是指嵌入图像的大小,这与将嵌入到主机图像中的数据量或徽标大小有关。鲁棒性是指水印与主图像操作相适应的能力。在本文中,我们提出了一个优化器来权衡鲁棒性、不可见性和消息容量。采用三个指标来评估所提出方法取得的结果,即峰值信噪比(PSNR)、归一化相互关系(NCC)和图像保真度(IF)。实验结果证实了该方法在实际数字水印应用中的有效性和优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Watermarking System for Medical Images Using Optimization Algorithm
One of the main methods used to provide security for medical records when exchanging these records through open networks is digital watermarking. In order to preserve the privacy of patients, this system also requires a means to secure images. In this paper, a watermarking based on discrete wavelet transform (DWT), and discrete and discrete cosine transform (DCT) in cascade provides more robustness and security. DCT divides the image into low and high-frequency regions, watermarking message can be embedded into low-frequency regions to prevent distortion of the original image. DWT splits the image into four frequency coefficients; horizontal, vertical, approximation, and detailed frequency component. The judgment factors for the strength of the watermark system are robustness, invisibility, and embedded message capacity. Invisibility means transparency of the watermark logo or data in the original or host image without any distortion. Capacity data payload means the size of the embedded image which is related to the amount of data or logo size that will be embedded in the host image. Robustness refers to the capability of the watermark to stand with the host image operations. In this paper, we propose an optimizer to trade-off between robustness, invisibility, and message capacity. Three metrics were employed to assess the results achieved by the proposed approach, namely, Peak Signal-to-Noise Ratio (PSNR), Normalized Cross Correlation (NCC), and Image Fidelity (IF). The achieved results confirmed the effectiveness and superiority of the proposed approach for real-world digital watermarking applications.
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