Department of Biomedical Engineering, Isfahan University of Medical Sciences, Isfahan, Iran.
Biomed Eng Online. 2011 Jun 17;10:53. doi: 10.1186/1475-925X-10-53.
Nowadays, medical imaging equipments produce digital form of medical images. In a modern health care environment, new systems such as PACS (picture archiving and communication systems), use the digital form of medical image too. The digital form of medical images has lots of advantages over its analog form such as ease in storage and transmission. Medical images in digital form must be stored in a secured environment to preserve patient privacy. It is also important to detect modifications on the image. These objectives are obtained by watermarking in medical image.
In this paper, we present a dual and oblivious (blind) watermarking scheme in the contourlet domain. Because of importance of ROI (region of interest) in interpretation by medical doctors rather than RONI (region of non-interest), we propose an adaptive dual watermarking scheme with different embedding strength in ROI and RONI. We embed watermark bits in singular value vectors of the embedded blocks within lowpass subband in contourlet domain.
The values of PSNR (peak signal-to-noise ratio) and SSIM (structural similarity measure) index of ROI for proposed DICOM (digital imaging and communications in medicine) images in this paper are respectively larger than 64 and 0.997. These values confirm that our algorithm has good transparency. Because of different embedding strength, BER (bit error rate) values of signature watermark are less than BER values of caption watermark. Our results show that watermarked images in contourlet domain have greater robustness against attacks than wavelet domain. In addition, the qualitative analysis of our method shows it has good invisibility.
The proposed contourlet-based watermarking algorithm in this paper uses an automatically selection for ROI and embeds the watermark in the singular values of contourlet subbands that makes the algorithm more efficient, and robust against noise attacks than other transform domains. The embedded watermark bits can be extracted without the original image, the proposed method has high PSNR and SSIM, and the watermarked image has high transparency and can still conform to the DICOM format.
如今,医学成像设备产生医学图像的数字形式。在现代医疗保健环境中,PACS(影像归档和通信系统)等新系统也使用医学图像的数字形式。与模拟形式相比,医学图像的数字形式具有存储和传输方便等诸多优势。必须将医学图像的数字形式存储在安全的环境中,以保护患者隐私。检测图像的修改也很重要。这些目标是通过医学图像的水印来实现的。
在本文中,我们提出了一种在轮廓波域中的双盲(盲)水印方案。由于医生在解释时对 ROI(感兴趣区域)的重视程度高于 RONI(非感兴趣区域),因此我们提出了一种自适应双水印方案,在 ROI 和 RONI 中采用不同的嵌入强度。我们将水印位嵌入轮廓波域低通子带内嵌入块的奇异值向量中。
本文提出的 DICOM(医学数字成像和通信)图像 ROI 的 PSNR(峰值信噪比)和 SSIM(结构相似性度量)指数值分别大于 64 和 0.997。这些值证实了我们的算法具有良好的透明度。由于嵌入强度不同,签名水印的 BER(误码率)值小于标题水印的 BER 值。我们的结果表明,与小波域相比,轮廓波域中的水印图像对攻击具有更强的鲁棒性。此外,我们方法的定性分析表明它具有良好的不可见性。
本文提出的基于轮廓波的水印算法使用 ROI 的自动选择,并将水印嵌入到轮廓子带的奇异值中,这使得算法比其他变换域更有效、更能抵抗噪声攻击。可以在没有原始图像的情况下提取嵌入的水印位,该方法具有较高的 PSNR 和 SSIM,并且水印图像具有较高的透明度,仍然符合 DICOM 格式。