DWT-DCT-SVD based blind watermarking technique of gray image in electrooculogram signal

N. Dey, D. Biswas, A. B. Roy, Achintya Das, S. S. Chaudhuri
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引用次数: 43

Abstract

At present most of the hospitals and diagnostic centers globally, use wireless media to exchange biomedical information for mutual availability of therapeutic case studies. The required level of security and authenticity for transmitting biomedical information through the internet is quite high. Level of security can be increased; authenticity of the information can be verified and control over the copy process can be ascertained by adding watermark as “ownership” information in multimedia content. In this proposed method different types of gray scale biomedical images can be used as added ownership (watermark) data. Electrooculography is a medical test used by the ophthalmologists for monitoring eyeball movement in Rapid Eye Movement (REM) and non-REM sleep, to detect the disorders of human eyes and to measure the resting potential of the eye. In this present work 1-D EOG signal is transformed into 2-D signal. DWT, DCT, SVD are applied on the transformed 2D signal to embed watermark in it. Extraction of watermark image is done by applying inverse DWT, inverse DCT and SVD. The Peak Signal to Noise Ratio (PSNR) of the original EOG signal vs. watermarked signal and the correlation value between the original and extracted watermark image are calculated to prove the efficacy of the proposed method.
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基于DWT-DCT-SVD的眼电信号灰度图像盲水印技术
目前,全球大多数医院和诊断中心都使用无线媒体交换生物医学信息,以相互提供治疗病例研究。通过互联网传输生物医学信息对安全性和真实性的要求相当高。安全级别可以提高;通过在多媒体内容中添加水印作为“所有权”信息,可以验证信息的真实性,并确定对复制过程的控制。在该方法中,可以使用不同类型的灰度生物医学图像作为添加所有权(水印)数据。眼电描记术是眼科医生在快速眼动(REM)和非快速眼动(non-REM)睡眠中监测眼球运动的一种医学测试,用于检测人眼的紊乱和测量眼睛的静息电位。在本研究中,将1-D eeg信号转换为2-D信号。对变换后的二维信号进行小波变换、离散余波变换、奇异值分解,并在其中嵌入水印。利用反DWT、反DCT和奇异值分解对水印图像进行提取。计算原始EOG信号与水印信号的峰值信噪比(PSNR)以及原始水印图像与提取水印图像的相关值,证明了该方法的有效性。
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