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Updated: Jan 8, 2026

Automated Analysis of Dynamic Ca2+ Signals in Image Sequences
Published on: June 16, 2014
Hyperchaos and the fusion of Moore's automaton with gold sequences for augmented medical image encryption
Mohamed Gabr1, Eyad Mamdouh2, Dina El-Damak3
1Computer Science Department, Faculty of Media Engineering and Technology, German University in Cairo (GUC), New Cairo, 11835, Egypt.
Abstract:
This study presents a sophisticated encryption methodology specifically designed for the secure transfer of medical images across cloud services. The initial phase of the algorithm involves the consolidation of multiple images to form a single augmented image, which is then subjected to the first layer of encryption. This layer employs an encryption key and an S-box generated through a Memristive Coupled Neural Network Model (MCNNM), establishing a strong foundation for security. Following this, the novel integration of Moore's Automaton with Gold sequences is applied as a confusion mechanism, intrinsically scrambling the image structure to effectively disrupt pixel correlations. The encryption process iterates over N cycles, significantly deepening the level of encryption with each iteration. Performance evaluations reflect a considerable key space of [Formula: see text] and a high encryption rate of 15.5 Mbps, while rigorous statistical tests validate the algorithm's resilience. The encryption system proposed in this manuscript not only ensures a formidable level of security but is also pragmatically designed for application in the protection of sensitive healthcare data.
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