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保障医疗行业中的患者数据安全:一种采用先进加密技术的区块链驱动协议。

Securing patient data in the healthcare industry: A blockchain-driven protocol with advanced encryption.

作者信息

Kunal Sourav, Gandhi Parth, Rathod Digvijaysinh, Amin Ruhul, Sharma Sachin

机构信息

Department of School of Cyber Security and Digital Forensics, National Forensic Sciences University, Gandhinagar, Gujarat, India.

Department of Computer Science and Engineering, NIT Jamshedpur, Jharkhand, India.

出版信息

J Educ Health Promot. 2024 Mar 28;13:94. doi: 10.4103/jehp.jehp_984_23. eCollection 2024.

Abstract

BACKGROUND

Ensuring the security and privacy of patient data is a critical concern in the healthcare industry. The growing utilization of electronic data transmission and storage in medical records has amplified apprehensions about data security. However, due to varying stakeholder interests, not all data can be freely shared, necessitating the development of secure protocols.

MATERIALS AND METHODS

This study presents a highly secure protocol that integrates blockchain technology, patient biometric information, and robust cryptographic algorithms (elliptic curve cryptography (ECC) and advanced encryption algorithm (AEC)) to facilitate data encryption and decryption. The protocol encompasses secure login, secure key sharing, and data sharing mechanisms among miners, offering comprehensive security measures. To validate the effectiveness of the proposed protocol, both informal and formal security analyses are conducted. The security protocol description language in Scyther is utilized to evaluate the protocol's resilience against attacks.

RESULTS

The culmination of this research is a secure protocol that leverages blockchain technology and ECC for the secure storage and sharing of medical records. The protocol covers all stages, including system setup, user registration, login mechanisms, key exchange between users and blockchain, communication between blockchains, and interaction with other miners, with a steadfast emphasis on security. Furthermore, the protocol's communication and computation costs are assessed, with a comparison to existing blockchain-based schemes. Informal proofs establish the protocol's security against common attacks faced by medical institutions. Formal simulation of the protocol using the Scyther tool provides definitive evidence of its resistance to attacks.

CONCLUSIONS

As a result, this protocol presents a viable real-time implementation solution for safeguarding patient data within the healthcare domain, representing a significant contribution to data security.

摘要

背景

确保患者数据的安全性和隐私性是医疗行业的关键问题。医疗记录中电子数据传输和存储的日益广泛使用加剧了人们对数据安全的担忧。然而,由于利益相关者的利益各不相同,并非所有数据都能自由共享,因此需要开发安全协议。

材料与方法

本研究提出了一种高度安全的协议,该协议集成了区块链技术、患者生物特征信息和强大的加密算法(椭圆曲线密码学(ECC)和高级加密算法(AEC)),以实现数据的加密和解密。该协议包括安全登录、安全密钥共享以及矿工之间的数据共享机制,提供了全面的安全措施。为了验证所提出协议的有效性,进行了非正式和正式的安全分析。利用Scyther中的安全协议描述语言来评估该协议抵御攻击的能力。

结果

本研究的成果是一种利用区块链技术和ECC来安全存储和共享医疗记录的安全协议。该协议涵盖了所有阶段,包括系统设置、用户注册、登录机制、用户与区块链之间的密钥交换、区块链之间的通信以及与其他矿工的交互,始终强调安全性。此外,还评估了该协议的通信和计算成本,并与现有的基于区块链的方案进行了比较。非正式证明确定了该协议对医疗机构面临的常见攻击的安全性。使用Scyther工具对该协议进行的正式模拟提供了其抵御攻击的决定性证据。

结论

因此,该协议为保护医疗领域的患者数据提供了一个可行的实时实施解决方案,对数据安全做出了重大贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d513/11081437/09635b07898a/JEHP-13-94-g001.jpg

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