Aug 2026· International Journal of Innovative Research in Engineering· 0 citations
TL;DR
A blockchain-based framework designed to protect the privacy of healthcare insurance data using optimized Elliptic Curve Cryptography (ECC) is introduced, which provides a practical and scalable solution for sharing healthcare information securely in today's insurance environments.
Abstract
The growing use of digital healthcare services has greatly improved access to medical information. However, it has also created serious challenges in protecting the privacy and integrity of healthcare insurance data. Traditional centralized storage systems can be vulnerable to unauthorized access, data tampering, and security breaches. This limits their ability to manage sensitive patient records. This paper introduces a blockchain-based framework designed to protect the privacy of healthcare insurance data using optimized Elliptic Curve Cryptography (ECC). In this framework, healthcare records are encrypted with an optimized ECC algorithm before being stored on a blockchain. This ensures secure and tamper-proof data management. A role-based access mechanism allows secure interactions between healthcare providers and insurance organizations while blocking unauthorized access to private information. The framework also includes secure cryptographic key management and verifies blockchain integrity to protect encrypted records during the data-sharing process. Experimental results show that this approach offers secure storage, controlled access, and efficient cryptographic performance while maintaining the confidentiality and integrity of healthcare insurance data. The framework provides a practical and scalable solution for sharing healthcare information securely in today's insurance environments.
The management of healthcare data has become an intricate task with the advent of digital health records, multiple data sources, and the need for security and privacy. Current centralized healthcare systems are vulnerable to major issues, including single points of failure, data breaches, opacity, and poor data-sharing...
T. Raghunathan, S. Peter, R. Vidhya et al.· International Conference on...· 0 citations
Overall, the proposed solution enhances interoperability, auditability, and automation while ensuring data privacy and security, demonstrating its viability across various blockchain networks.
A. Kashmar, A. I. Shihab· Iraqi Journal of Science· 0 citations
High rate of digitalization of the healthcare systems has led to the creation of huge amounts of sensitive patient information that need to be safely disseminated among healthcare providers. Nevertheless, the use of the traditional centralized healthcare information systems is associated with major difficulties associa...
S. Sreesubha, Moorthy Agoramoorthy· International Conference on...· 0 citations
Providing security, privacy, and integrity to sensitive medical data in the contemporary healthcare systems is an issue that is very pressing during the digital health age. The growing use of smart healthcare technologies, electronic health records (EHRs), and Internet of Medical Things (IoMT) devices has increased the...
S. Sreesubha, Moorthy Agoramoorthy· International Conference on...· 0 citations
A novel blockchain-based secure framework with the integration of Ethereum smart contracts, CBOR compression, AES-256 GCM encryption, and SHA-256 validation is proposed with the integration of Ethereum smart contracts, CBOR compression, AES-256 GCM encryption, and SHA-256 validation.
Vinita Hari Patil, S. Kolhe· Journal of Intelligent Decis...· 0 citations
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