An evolutionary computing enriched RS attack resilient medical image steganography model for telemedicine applications

被引:0
|
作者
Romany F. Mansour
Elsaid M. Abdelrahim
机构
[1] New Valley,Department of Mathematics, Faculty of Science
[2] Assiut University,Department of Mathematics Computer Science Division, Faculty of Science
[3] Tanta University,undefined
来源
Multidimensional Systems and Signal Processing | 2019年 / 30卷
关键词
Medical image steganography; Ripplet transform; Adaptive genetic algorithm; OPAP; Telemedicine;
D O I
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中图分类号
学科分类号
摘要
The recent advancement in computing technologies and resulting vision based applications has given rise to a novel practice called telemedicine that requires patient diagnosis images or allied information to recommend or even perform diagnosis practices being located remotely. However, to ensure accurate and optimal telemedicine there is the requirement of seamless or flawless biomedical information about patient. On the contrary, medical data transmitted over insecure channel often remains prone to manipulated or corrupted by attackers. The existing cryptosystems alone are not sufficient to deal with these issues and hence in this paper a highly robust reversible image steganography model has been developed for secret information hiding. Unlike traditional wavelet transform techniques, we incorporated Discrete Ripplet Transformation technique for message embedding in the medical cover images. In addition to, ensure seamless communication over insecure channel, a dual cryptosystem model containing proposed steganography scheme and RSA cryptosystem has been developed. One of the key novelties of the proposed research work is the use of adaptive genetic algorithm for optimal pixel adjustment process that enriches data hiding capacity as well as imperceptibility features. The performance assessment reveals that the proposed steganography model outperforms other wavelet transformation based approaches in terms of high PSNR, embedding capacity, imperceptibility etc.
引用
收藏
页码:791 / 814
页数:23
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