BTMDS: Blockchain trusted medical data sharing scheme with privacy protection and access control

IF 4.5 3区 计算机科学 Q1 COMPUTER SCIENCE, INFORMATION SYSTEMS Computer Communications Pub Date : 2024-07-18 DOI:10.1016/j.comcom.2024.07.007
Liqiu Chen, Tao Feng, Rong Ma, Jianming Shi
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Abstract

With the development of smart healthcare, eliminating information silos through trusted data sharing has become a social consensus, but there are still many problems that need to be solved. The multi-party sharing process of medical data usually occurs in an untrusted network environment, and the separation of data ownership and usage rights can result in the leakage of patients’ private information. Meanwhile, the communication and computation overheads of existing medical data sharing schemes are too large, resulting in inefficient data sharing. To address the above problems, we propose a blockchain-based trusted medical data sharing scheme (BTMDS) with privacy protection and access control. In it, we subdivided patient privacy into identity and data privacy, and designed a privacy protection mechanism for blockchain medical data sharing using local differential privacy technology and searchable encryption technology. The cloud server acts as a proxy server, and the on-chain-off-chain storage structure of the blockchain and the cloud server implements fine-grained access control to prevent conspiracy attacks. Security analysis proves the security of BTMDS and prioritizes it over other schemes. In terms of performance, BTMDS saves 30% and 48% in the decryption phase compared to Feng and Chen schemes, which is more suitable for digital healthcare data sharing services.

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BTMDS:具有隐私保护和访问控制功能的区块链可信医疗数据共享方案
随着智慧医疗的发展,通过可信数据共享消除信息孤岛已成为社会共识,但仍有许多问题亟待解决。医疗数据的多方共享过程通常发生在不信任的网络环境中,数据所有权和使用权的分离可能导致患者隐私信息的泄露。同时,现有医疗数据共享方案的通信和计算开销过大,导致数据共享效率低下。针对上述问题,我们提出了一种具有隐私保护和访问控制功能的基于区块链的可信医疗数据共享方案(BTMDS)。其中,我们将患者隐私细分为身份隐私和数据隐私,并利用本地差分隐私技术和可搜索加密技术设计了区块链医疗数据共享的隐私保护机制。云服务器作为代理服务器,区块链和云服务器的链上-链下存储结构实现了细粒度访问控制,防止共谋攻击。安全分析证明了 BTMDS 的安全性,并将其优先于其他方案。在性能方面,BTMDS 与 Feng 和 Chen 方案相比,在解密阶段分别节省了 30% 和 48%,更适合数字医疗数据共享服务。
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来源期刊
Computer Communications
Computer Communications 工程技术-电信学
CiteScore
14.10
自引率
5.00%
发文量
397
审稿时长
66 days
期刊介绍: Computer and Communications networks are key infrastructures of the information society with high socio-economic value as they contribute to the correct operations of many critical services (from healthcare to finance and transportation). Internet is the core of today''s computer-communication infrastructures. This has transformed the Internet, from a robust network for data transfer between computers, to a global, content-rich, communication and information system where contents are increasingly generated by the users, and distributed according to human social relations. Next-generation network technologies, architectures and protocols are therefore required to overcome the limitations of the legacy Internet and add new capabilities and services. The future Internet should be ubiquitous, secure, resilient, and closer to human communication paradigms. Computer Communications is a peer-reviewed international journal that publishes high-quality scientific articles (both theory and practice) and survey papers covering all aspects of future computer communication networks (on all layers, except the physical layer), with a special attention to the evolution of the Internet architecture, protocols, services, and applications.
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