论文标题

跨链:基于区块链的医疗数据共享和隐私保护eHealth系统

SPChain: Blockchain-based Medical Data Sharing and Privacy-preserving eHealth System

论文作者

Zou, Renpeng, Lv, Xixiang, Zhao, Jingsong

论文摘要

eHealth系统的发展为人们的生活带来了极大的便利。研究人员一直在结合新技术,以使eHealth系统对患者更有效。基于区块链的eHealth系统由于具有独特的耐隐私和隐私功能而变得流行。但是,由于区块链系统的安全问题,使用区块链技术的EHealth系统中存在许多安全风险。即51%的攻击可以破坏基于区块链的系统。此外,区块链系统中的琐碎交易和智能合约的频繁呼叫为基于区块链的EHEADH系统带来了额外的成本和安全风险。更糟糕的是,电子病历(EMR)由医疗机构而不是患者控制,这会导致隐私泄漏问题。在本文中,我们提出了基于区块链技术(Spchain)的医疗数据共享和隐私的EHEADH系统。我们将Repucoin与基于Snarks的变色龙哈希功能相结合,以抵抗潜在的区块链攻击,并设计一种新的链结构以使微嵌段有助于区块链的重量。该系统允许患者以隐私的方式在不同的医疗机构中共享其EMR。此外,在误诊的情况下,授权的医疗机构可​​以将错误的EMR标记为患者的许可。安全分析和绩效评估表明,拟议的系统可以以高效率提供强大的安全保证。

The development of eHealth systems has brought great convenience to people's life. Researchers have been combining new technologies to make eHealth systems work better for patients. The Blockchain-based eHealth system becomes popular because of its unique distributed tamper-resistant and privacy-preserving features. However, due to the security issues of the blockchain system, there are many security risks in eHealth systems utilizing the blockchain technology. i.e. 51% attacks can destroy blockchain-based systems. Besides, trivial transactions and frequent calls of smart contracts in the blockchain system bring additional costs and security risks to blockchain-based eHealth systems. Worse still, electronic medical records (EMRs) are controlled by medical institutions rather than patients, which causes privacy leakage issues. In this paper, we propose a medical data Sharing and Privacy-preserving eHealth system based on blockChain technology (SPChain). We combine RepuCoin with the SNARKs-based chameleon hash function to resist underlying blockchain attacks, and design a new chain structure to make microblocks contribute to the weight of blockchain. The system allows patients to share their EMRs among different medical institutions in a privacy-preserving way. Besides, authorized medical institutions can label wrong EMRs with the patients' permissions in the case of misdiagnosis. Security analysis and performance evaluation demonstrate that the proposed system can provide a strong security guarantee with a high efficiency.

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