Garcia-Hernandez Jose Juan, Gomez-Flores Wilfrido, Rubio-Loyola Javier
Technology Information Laboratory, Center for Research and Advanced Studies of the National Polytechnic Institute, Ciudad Victoria, Tamaulipas, Mexico.
Comput Biol Med. 2016 Jan 1;68:37-48. doi: 10.1016/j.compbiomed.2015.10.014. Epub 2015 Nov 10.
Medical images (MI) are relevant sources of information for detecting and diagnosing a large number of illnesses and abnormalities. Due to their importance, this study is focused on breast ultrasound (BUS), which is the main adjunct for mammography to detect common breast lesions among women worldwide. On the other hand, aiming to enhance data security, image fidelity, authenticity, and content verification in e-health environments, MI watermarking has been widely used, whose main goal is to embed patient meta-data into MI so that the resulting image keeps its original quality. In this sense, this paper deals with the comparison of two watermarking approaches, namely spread spectrum based on the discrete cosine transform (SS-DCT) and the high-capacity data-hiding (HCDH) algorithm, so that the watermarked BUS images are guaranteed to be adequate for a computer-aided diagnosis (CADx) system, whose two principal outcomes are lesion segmentation and classification. Experimental results show that HCDH algorithm is highly recommended for watermarking medical images, maintaining the image quality and without introducing distortion into the output of CADx.
医学图像(MI)是检测和诊断大量疾病及异常情况的重要信息来源。鉴于其重要性,本研究聚焦于乳腺超声(BUS),它是全球女性乳腺钼靶检查中检测常见乳腺病变的主要辅助手段。另一方面,为了增强电子健康环境中的数据安全性、图像保真度、真实性和内容验证,医学图像水印技术已被广泛应用,其主要目标是将患者元数据嵌入医学图像中,以使生成的图像保持其原始质量。从这个意义上讲,本文对两种水印方法进行了比较,即基于离散余弦变换的扩频(SS-DCT)和高容量数据隐藏(HCDH)算法,以便确保带水印的乳腺超声图像适用于计算机辅助诊断(CADx)系统,该系统的两个主要成果是病变分割和分类。实验结果表明,强烈推荐使用HCDH算法对医学图像进行水印处理,该算法能保持图像质量且不会在CADx输出中引入失真。