医学图像水印的FPGA实现

Sandeep Bal, Sanjay Das, Soumadeb Dutta, Souma Das, Debamita Biswas, A. Basu
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引用次数: 1

摘要

数字信息本质上是离散的,具有以更快的速度传输更多信息的能力,并且具有更高的处理便利性,这些都与模拟信息形成鲜明对比。这使得数字信息在图像、视频和音频等不同类型的媒体中处于最前沿。这样做的唯一缺点是版权侵权问题的出现,即由于恶意用户的口是心非和篡改,原始所有者对其独特设计的作品失去了权利。数字水印是一个很好的解决方案。为了防止侵犯版权,原始用户故意在数字媒体上植入一个明显可识别的印象。本文的作者主要关注医学图像水印的具体领域。像x光、USG和MRI这样的医学图像通过提供更好的诊断和治疗,彻底改变了药物行业。但与此同时,医学图像的版权侵权问题日益引起人们的关注。为了抑制这一问题,提出了一种创建二值掩码图像与原始医学图像相比较的概念。掩码有助于明确识别感兴趣区域(ROI),其中必须植入加密水印以获得更好的隐蔽性和安全性。将加密水印嵌入到空间域中,即根据水印位修改图像像素的最低有效位(LSB)。为了广泛接受所提出的技术,嵌入和提取方法已经使用现场可编程门阵列(FPGA)实现。在隐蔽性、安全性和位隐藏能力方面取得了可观的成果。此外,将所建议的技术与一些已经相关的前沿技术进行比较,保证了所建议技术的优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FPGA Realization of Medical Image Watermarking
Digital information, being discrete in nature, possesses the capability to transfer more information at a faster rate with a significantly higher processing ease, all of which are in sharp contrast to analogue information. This has led to digital information being at the forefront of different types of media like image, video and audio. The only drawback of this has been the rise of copyright infringement issues, whereby the original owner becomes devoid of his claim over his uniquely designed creation because of duplicity and tampering by malicious users. Digital watermarking is a well sought out solution to this. The original user deliberately implants a distinctively identifiable impression onto the digital media for preventing copyright violation. The authors over here have focused on the specific domain of Medical Image Watermarking. Medical images like X-rays, USG, and MRI have revolutionized the medication fraternity by providing enhanced diagnosis and treatment of patients. But at the same time, copyright infringement of the medical images is a growing concern. To curb this problem, a notion of creating a binary masked image in comparison to the original medical image has been suggested. The mask helps in specifically identifying the region of interest (ROI)wherein the encrypted watermark has to be implanted for better imperceptibility and security. The encrypted watermark is embedded in the spatial domain, that is, the Least Significant Bit (LSB)of image pixels are modified in accordance to the watermarking bits. For a widespread acceptance of the proposed technique, the embedding and extracting methodologies have been implemented using Field Programmable Gate Array (FPGA). The imperceptibility, security and bit hiding capacity results are appreciably substantial. Further, a comparison of the suggested technique against some already relevant cutting edge techniques guarantees the superiority of the proposed technique.
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