基于DWT-BAT算法的医学图像水印

P. Kishore, S. Kishore, E. K. Kumar, K. Kumar, P. Aparna
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引用次数: 11

摘要

医学图像向医生传达有关病人健康状况的重要信息。互联网将这些医学图像广播到全球无法进入的地点,由专科医生检查。但是,通过不安全的网络传输数据会引发任何图像数据的验证问题。通过互联网传输的医学图像必须加上患者图片的水印,以供医生证实,以确定医学图像。医学图像水印需要仔细调整,以保护带有患者图像水印的医学图像中的信息。在水印过程中,医学图像作为包络图像,在网络上可见。采用BAT算法对这些包络医学图像进行小波域患者图像的水印处理,优化峰值信噪比(psnr)和归一化互相关系数(ncc)值的嵌入过程。将医学图像的包络和包络内的字母即水印图像变换到小波域,并使用称为嵌入强度的尺度因子alpha进行混合。BAT算法是一种针对嵌入水印强度alpha值的特定值,对峰值信噪比值进行优化的优化算法。最后将这些带水印的医学图像连同用于提取的密钥一起放到网络上。在接收端,利用BAT算法对嵌入强度值进行2DWT提取嵌入水印。通过对加水印医学图像的各种攻击,验证了所提水印技术的鲁棒性。通过计算峰值信噪比和归一化互相关系数来获取水印医学图像的质量,提取出患者图像。利用4个不同级别的小波(haar、db、symlets、bior)对3种类型的医学图像进行单键水印分析。
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Medical image watermarking with DWT-BAT algorithm
Medical images communicate imperative information to the doctors about a patient's health situation. Internet broadcasts these medical images to inaccessible sites of the globe which are inspected by specialist doctors. But data transmissions through unsecured web invoke validation problems for any image data. Medical images that are transmitted through the internet must be watermarked with patient pictures for substantiation by the doctors to ascertain the medical image. Watermarking medical images necessitate attentive adjustments to protect the information in the medical images with patient image watermarks. The medical images are used as an envelope image in the watermarking process which is visible on the network. These envelope medical images are watermarked with patient images in wavelet domain there by using the BAT algorithm form optimizing the embedding process for peak signal to noise ratio (psnr) and normalized cross correlation coefficient (ncc) values. The medical image envelope and letter inside envelope i.e. watermark image are transformed into wavelet domain and are mixed using scaling factor alpha which is termed as embedding strength. BAT algorithm is an optimization algorithm specialized in optimizing the values of peak-signal-to-noise ratio for a particular value of alpha, the embedding watermark strength. Finally these watermarked medical images are put on the network along with the secret key that will be used for extraction. At the receiving the embedded watermark is extracted using 2DWT using the embedding strength value using BAT algorithm. The robustness of the proposed watermarking techniques is tested with various attacks on the watermarked medical images. Peak-Signal-to-Noise ratios and Normalized cross correlation coefficients are computed to accesses the quality of the watermarked medical images and extracted patient images. The results are produced for three types of medical images with one patient image watermarks using single key by using four wavelets (haar, db, symlets, bior) at four different levels.
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