Advanced Medical Imaging using Quantum Sensing and Neuromorphic Processing with Space-Time Relativistic QKD based Secure Transmission

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A. John Basco Vijay Anand, S. Sukumaran, Mosay Calebian

Abstract

Advanced medical imaging demands high sensitivity in signal acquisition, real-time intelligent processing and secure transmission of sensitive patient data. This paper presents a hybrid framework integrating quantum sensing, neuromorphic processing and space-time relativistic quantum key distribution [1] (STR-QKD) based secure transmission. Quantum sensing enables the detection of extremely weak biomedical signals beyond classical limits, enhancing imaging [2] precision. Neuromorphic processing, inspired by spiking neural networks, facilitates real-time and energy-efficient analysis of dynamic biomedical data. To ensure data integrity and confidentiality, STR-QKD [1] is used for secure key generation and transmission under relativistic constraints, enabling robust protection against eavesdropping. The proposed framework supports early detection of abnormalities, such as neurological disorders [8], while ensuring secure and reliable data flow across distributed medical systems. This integrated approach advances the development of intelligent, high-precision and secure next-generation medical imaging systems.

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How to Cite
A. John Basco Vijay Anand. (2026). Advanced Medical Imaging using Quantum Sensing and Neuromorphic Processing with Space-Time Relativistic QKD based Secure Transmission. Journal of Online Engineering Education, 17(2), 139–148. Retrieved from https://onlineengineeringeducation.com/index.php/joee/article/view/148
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