使用区块链技术对传统医疗系统进行现代化改造,以实现去中心化平台

A. Aljaloud, Abdul Razzaq
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引用次数: 1

摘要

区块链技术在金融、供应链管理、食品、能源、物联网和医疗保健等各个行业的应用正在扩大。本文旨在解决医疗保健行业中复杂医疗程序、大规模医疗数据管理和成本优化方面的挑战。通过采用区块链技术,本文旨在增强数据安全性和隐私性,同时确保医疗保健系统的完整性和效率。本文通过回顾现有文献并提出用于更好的数据管理的多个工作流程,重点关注区块链技术在医疗保健系统中的应用。这些工作流程是使用以太坊区块链平台实现的,涉及复杂的医疗程序,如手术和临床试验,以及管理大量医疗数据。根据相关成本分析了所提议系统的可行性,并使用模型驱动的工程方法来恢复传统医疗保健系统的体系结构。其目的是为医疗保健系统的利益相关者提供更好的医疗保健服务和成本优化。所提出的解决方案使不同参与方之间的交互自动化。使用Solidity语言创建智能合约,并使用Remix IDE对其功能进行测试。本文说明了我们的智能合约代码旨在避免常见的安全漏洞和攻击。为了测试该框架,智能合约的原型被部署在Windows环境中的以太坊TESTNET区块链上。研究结果表明,该方法既实用又高效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modernizing the Legacy Healthcare System to Decentralize Platform Using Blockchain Technology
The use of blockchain technology is expanding in various industries, including finance, supply chain management, food, energy, IoT, and healthcare. The article aims to address the challenges of complex medical procedures, large-scale medical data management, and cost optimization in the healthcare industry. By employing blockchain technology, the article aims to enhance data security and privacy while ensuring the integrity and efficiency of the healthcare system. This article focuses on the application of blockchain technology in the healthcare system by reviewing the existing literature and proposing multiple workflows for better data management. These workflows were implemented using the Ethereum blockchain platform and involve complex medical procedures such as surgery and clinical trials, as well as managing a large amount of medical data. The feasibility of the proposed system is analyzed in terms of associated costs, and a model-driven engineering approach is used to recover the architecture of traditional healthcare systems. The aim is to provide stakeholders in the healthcare system with better healthcare services and cost optimization. The solution being proposed automates interactions between different parties involved. Smart contracts were created using Solidity language, and their functions were tested using the Remix IDE. This paper illustrates that our smart contract code was designed to avoid common security vulnerabilities and attacks. To test the framework, a prototype of the smart contract was deployed on an Ethereum TESTNET blockchain in a Windows environment. This study found that the proposed approach is both practical and efficient.
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