Rajput Ahmed Raza, Li Qianmu, Ahvanooey Milad Taleby
School of Computer Science and Engineering, Nanjing University of Science and Technology, Nanjing 210094, China.
School of Cyber Science and Engineering, Nanjing University of Science and Technology, Nanjing 210094, China.
Healthcare (Basel). 2021 Feb 14;9(2):206. doi: 10.3390/healthcare9020206.
Blockchain technology is the most trusted all-in-one cryptosystem that provides a framework for securing transactions over networks due to its irreversibility and immutability characteristics. Blockchain network, as a decentralized infrastructure, has drawn the attention of various startups, administrators, and developers. This system preserves transactions from tampering and provides a tracking tool for tracing past network operations. A personal health record (PHR) system permits patients to control and share data concerning their health conditions by particular peoples. In the case of an emergency, the patient is unable to approve the emergency staff access to the PHR. Furthermore, a history record management system of the patient's PHR is required, which exhibits hugely private personal data (e.g., modification date, name of user, last health condition, etc.). In this paper, we suggest a healthcare management framework that employs blockchain technology to provide a tamper protection application by considering safe policies. These policies involve identifying extensible access control, auditing, and tamper resistance in an emergency scenario. Our experiments demonstrated that the proposed framework affords superior performance compared to the state-of-the-art healthcare systems concerning accessibility, privacy, emergency access control, and data auditing.
区块链技术是最值得信赖的一体化加密系统,由于其不可逆性和不可变性特征,它为通过网络保障交易安全提供了一个框架。区块链网络作为一种去中心化基础设施,已引起了各类初创企业、管理人员和开发者的关注。该系统可防止交易被篡改,并提供一个用于追溯过往网络操作的追踪工具。个人健康记录(PHR)系统允许患者控制并与特定人员共享有关其健康状况的数据。在紧急情况下,患者无法批准急救人员访问其PHR。此外,需要一个患者PHR的历史记录管理系统,该系统会展示大量高度私密的个人数据(例如,修改日期、用户姓名、上次健康状况等)。在本文中,我们提出了一个医疗管理框架,该框架采用区块链技术,通过考虑安全策略来提供一个防篡改应用程序。这些策略包括在紧急情况下识别可扩展的访问控制、审计和抗篡改能力。我们的实验表明,与最先进的医疗系统相比,所提出的框架在可访问性、隐私性、紧急访问控制和数据审计方面具有卓越的性能。