2021
DOI: 10.1109/access.2021.3074254
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Reversible Data Hiding in Encrypted DICOM Images Using Cyclic Binary Golay (23, 12) Code

Abstract: In this paper, a novel reversible data hiding method for encrypted images (RDHEI) is proposed. An efficient coding scheme based on cyclic binary Golay (23, 12) code is designed to embed additional data into the least significant bits (LSBs) of the encrypted image. The most significant bits (MSBs) are used to ensure the reversibility of the embedding process. The proposed scheme is lossless, and based on the receiver's privileges, allows recovery of marked data, original data and embedded data. Furthermore, the… Show more

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Cited by 6 publications
(3 citation statements)
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“…As shown in Figure 2 below, VTK connects data objects and processing objects through the data visualization pipeline to complete the data processing. Since CT images are easily disturbed by noise during transmission and acquisition, in order to improve the quality of the images as much as possible, the images must be denoised and smoothed [11]. At present, many methods of image denoising have been proposed, such as neighborhood averaging method, median filtering method, and Gaussian filtering algorithm; according to some characteristics of medical images, we choose a method that can remove noise well and also a denoising method to protect image edge information.…”
Section: Vtk Class Library Visualization Toolkit (Vtkmentioning
confidence: 99%
“…As shown in Figure 2 below, VTK connects data objects and processing objects through the data visualization pipeline to complete the data processing. Since CT images are easily disturbed by noise during transmission and acquisition, in order to improve the quality of the images as much as possible, the images must be denoised and smoothed [11]. At present, many methods of image denoising have been proposed, such as neighborhood averaging method, median filtering method, and Gaussian filtering algorithm; according to some characteristics of medical images, we choose a method that can remove noise well and also a denoising method to protect image edge information.…”
Section: Vtk Class Library Visualization Toolkit (Vtkmentioning
confidence: 99%
“…Furthermore, watermarking is considered to offer a smaller embedding capacity when compared to steganography and its main purpose is to hide data in a sturdy method, mainly for copyright protection [9]. Conversely, steganography which is the science of data hiding over a digital medium [10] overcomes the obviousness caused by cryptography because the secret data can be hidden into a digital cover medium which can be a 2D [11,12,13] or a 3D image [14,2,4,15], a video [16], an audio ile [17,18,19] or maybe even a digital document [20] or an information matrix [21]. This provides a larger embedding capacity under the main purpose that the secret data is kept inaccessible.…”
Section: Introductionmentioning
confidence: 99%
“…Incorporating data coding to modify data embedding for picture encryption is a revolutionary RDHEI approach for digital imaging communications in medicine images. Further [6], presents a novel RDHEI method for digital imaging and communications in medicine (DICOM) images. The concept of introducing data coding to enable data embedding for encrypted images.…”
mentioning
confidence: 99%