Blockchain Based Access Control for Remote Coronary within Tactile Internet Environment
Tarik Hidar, Mohamed Amine Amil, Mariya Ouaissa, Mariyam Ouaissa, Amitava Choudhury, Keshav Kaushik · 2025
Cutting-edge technologies have revolutionized various aspects of human life by offering a myriad of applications across diverse fields. This study delves into the intricate realm of Access control mechanisms, employing cutting- edge blockchain and smart contract technologies. The focus lies on the implementation of these mechanisms in the context of remote coronary interventions within the dynamic environment of Tactile Internet. As an evolutionary extension of the Internet of Things (IoT), the Tactile Internet facilitates seamless real-time communication between humans and machines, opening avenues for remote surgical procedures. The proposed Access control system harnesses the decentralized and robust attributes of blockchain technology, utilizing smart contracts to orchestrate authentication and Access protocols tailored to the intricacies of medical scenarios. The paper meticulously elucidates the architecture, confrontations, and contributions of this novel Access control system, underscoring its potential to elevate the security and dependability of remote coronary interventions within the Tactile Internet landscape. The inclusion of performance analyses and results further enriches the comprehensive exploration presented in this paper, fostering possibilities for significant strides in the realms of telemedicine and healthcare.