Medical Data Are Safe

P. Praveenkumar, R. Santhiyadevi, Rengarajan Amirtharajan
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Abstract

In this internet era, transferring and preservation of medical diagnostic reports and images across the globe have become inevitable for the collaborative tele-diagnosis and tele-surgery. Consequently, it is of prime importance to protect it from unauthorized users and to confirm integrity and privacy of the user. Quantum image processing (QIP) paves a way by integrating security algorithms in protecting and safeguarding medical images. This chapter proposes a quantum-assisted encryption scheme by making use of quantum gates, chaotic maps, and hash function to provide reversibility, ergodicity, and integrity, respectively. The first step in any quantum-related image communication is the representation of the classical image into quantum. It has been carried out using novel enhanced quantum representation (NEQR) format, where it uses two entangled qubit sequences to hoard the location and its pixel values of an image. The second step is performing transformations like confusion, diffusion, and permutation to provide an uncorrelated encrypted image.
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医疗数据是安全的
在这个互联网时代,医疗诊断报告和图像在全球范围内的传输和保存已成为协作远程诊断和远程手术的必然。因此,保护它免受未经授权的用户的侵害,并确认用户的完整性和隐私性是至关重要的。量子图像处理(QIP)通过集成安全算法为医学图像的保护和维护铺平了道路。本章提出了一种量子辅助加密方案,利用量子门、混沌映射和哈希函数分别提供可逆性、遍历性和完整性。任何与量子相关的图像通信的第一步是将经典图像表示为量子。它使用新型增强量子表示(NEQR)格式进行,其中它使用两个纠缠的量子比特序列来存储图像的位置及其像素值。第二步是执行混淆、扩散和排列等转换,以提供不相关的加密图像。
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