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Secured Transmission of Clinical Signals Using Hyperchaotic DNA Confusion and Diffusion Transform

机译:使用超混沌DNA混淆和扩散变换确保临床信号的安全传输

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摘要

Secured transmission of electrophysiological signals is one of the crucial requirements in telemedicine, telemonitoring, cardiovascular disease diagnosis (CVD) and telecardiology applications. The chaotic systems have good potential in secured transmission of ECG/EEG signals due to their inherent characteristics relevant to cryptography. This article introduces a new cryptosystem for clinical signals such as electrocardiograms (ECG) and electroencephalograms (EEG) based on hyperchaotic DNA confusion and diffusion transform (HC-DNA-CDT). The algorithm uses a hyperchaotic system with cubic nonlinearity and deoxyribonucleic acid (DNA) encoding rules. The performance of the cryptosystem is evaluated for different clinical signals using different encryption/decryption quality metrics. Simulation and comparison results show that the cryptosystem yield good encryption results and is able to resist various cryptographic attacks. The proposed algorithm can also be used in picture archiving and communication systems (PACS) to provide an efficient sharing of medical image over the networks.
机译:电生理信号的安全传输是远程医疗,远程监控,心血管疾病诊断(CVD)和远程心脏病学应用的关键要求之一。混沌系统由于其与密码相关的固有特性,在安全传输ECG / EEG信号方面具有良好的潜力。本文介绍了一种基于超混沌DNA混淆和扩散变换(HC-DNA-CDT)的临床信号(例如心电图(ECG)和脑电图(EEG))的新密码系统。该算法使用具有立方非线性和脱氧核糖核酸(DNA)编码规则的超混沌系统。使用不同的加密/解密质量指标针对不同的临床信号评估密码系统的性能。仿真和比较结果表明,该密码系统具有良好的加密效果,能够抵抗各种密码攻击。所提出的算法还可以用于图片存档和通信系统(PACS)中,以通过网络提供有效的医学图像共享。

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