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Chua's diode and strange attractor: a three-layer hardware–software co-design for medical image confidentiality

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TLDR
The proposed approach has adopted Chua diode circuit for the generation of 256 × 256 random synthetic image which has been utilised to scramble the DICOM image for the second level of diffusion as the cellular automata provides the first level of scrambling and diffusion.
Abstract
Medical image security relies upon the arrival of improved techniques for enhancing the confusion as well as diffusion processes in the pixel level manipulations. Non-linear circuits constructed with hardware components can be employed for hardware–software co-design in medical image encryption. The proposed approach has adopted Chua diode circuit for the generation of 256 × 256 random synthetic image with the entropy of 7.9972. This synthetic image has been utilised to scramble the DICOM image for the second level of diffusion as the cellular automata provides the first level of scrambling and diffusion. The average correlation coefficients of encrypted pixels are 0.00204, −0.00298 and −0.00054 in three directions. The encrypted pixels pass the NIST SP 800-22 test suite and offer resistance to statistical, differential and chosen plain text attacks.

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Citations
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Advanced framework for highly secure and cloud-based storage of colour images

TL;DR: The proposed colour image encryption scheme innately uses Deoxyribo Nucleic Acid coding that blends well with chaotic cryptosystem for an efficient statistical shift and yields near-zero correlation and good entropy.
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A novel perturbation method to reduce the dynamical degradation of digital chaotic maps

TL;DR: Numerical experiments prove that this novel perturbation method can greatly improve the dynamical characteristics of original chaotic map and is competitive with other remedies.
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An improved digital logistic map and its application in image encryption

TL;DR: A method to suppress the dynamic degradation of digital chaotic systems by using parameter variables and state variables to influence each other, and using sine function as feedback function to destroy the state space is proposed.
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Tri-level scrambling and enhanced diffusion for DICOM image cipher- DNA and chaotic fused approach

TL;DR: A novel way of scrambling and Deoxyribonucleic Acid sequence operations is performed to encrypt the digital medical images through a chaotic tri-level scrambling carried out by a two dimensional Tinkerbell map.
Journal ArticleDOI

Chaotic Lightweight Cryptosystem for Image Encryption

TL;DR: The chaotic-based lightweight image encryption method is studied, which is efficient and less complex than the existing state-of-the-art methods and found an equal distribution of pixels and less correlation coefficients among adjacent pixels of the encrypted image.
References
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BookDOI

Chua's circuit : a paradigm for chaos

TL;DR: Strange attractors and dynamical models, L.O. Kennedy sound and music from Chua's low-level visual sensing, E.J. Elgar and M.P. Shil'nikov from the Chua circuit to the generalized Chua map.

SP 800-22 Rev. 1a. A Statistical Test Suite for Random and Pseudorandom Number Generators for Cryptographic Applications

TL;DR: This paper discusses some aspects of selecting and testing random and pseudorandom number generators and their relation to cryptanalysis, and some recommended statistical tests are provided.
Journal ArticleDOI

A novel bit-level image encryption algorithm based on chaotic maps

TL;DR: A novel bit-level image encryption algorithm that is based on piecewise linear chaotic maps (PWLCM) that is both secure and reliable for image encryption.
Journal ArticleDOI

A color image cryptosystem based on dynamic DNA encryption and chaos

TL;DR: A four-wing hyperchaotic system is used to provide pseudo-random chaotic sequences, SHA 384 hash function of the plain image and external parameters are combined to compute its initial values, and one-time-pad encryption policy makes the proposed encryption effectively resist plaintext attacks.
Journal ArticleDOI

A novel image encryption scheme based on substitution-permutation network and chaos

TL;DR: A novel image encryption approach based on permutation-substitution (SP) network and chaotic systems that shows superior performance than previous schemes.
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