区块链实现糖尿病患者数据共享和实时监测

Dodo Khan, L. T. Jung, M. Hashmani, Moke Kwai Cheong
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引用次数: 0

摘要

根据世界卫生组织的全球糖尿病报告,糖尿病患者的数量从20世纪80年代的1.08亿激增到2014年的4.22亿。据研究人员称,未来几十年,这一数字将继续攀升。糖尿病是一种需要长期自我护理和密切监测才能得到适当控制的疾病。因此,持续监测血糖水平有可能挽救数百万人的生命。本文提出了一个基于区块链的平台,将患者,医疗从业者(HP)和护理人员连接起来,以持续监测和护理糖尿病患者。它允许患者安全地连接到惠普进行远程患者监控(远程医疗),同时使用区块链技术保护患者数据隐私。物联网传感器用于读取糖水平,并将这些数据存储在防篡改的不可变分类账(Hyperledger)中。该平台提供患者数据的端到端移动。也就是说,从它形成的点(传感器)到它最终在HP端结束的点。它为患者提供了控制和跟踪功能,以维护/跟踪数据移动。它提供了一个独特的功能,允许患者跟踪私人数据,并选择他们想要与谁共享数据以及共享多长时间(以及出于什么原因)。该平台的开发分两个阶段进行。最初,这个概念是使用Hyperledger Fabric实现的。然后,包含基于新颖的验证(PoR)共识模型的区块链,以在超级账本结构中提供高效的性能和可扩展性。从本质上讲,该平台旨在缓解传统医疗系统在糖尿病患者实时监测的信息交换、数据安全和隐私维护方面的痛点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Blockchain Enabled Diabetic Patients’ Data Sharing and Real Time Monitoring
According to the World Health Organization worldwide diabetes report, the number of diabetic patients has surged from 108 million in the 1980s to 422 million in 2014. According to researchers, the numbers will continue to climb in the next decades. Diabetes is a sickness that requires long-term self-care and close monitoring to be appropriately put under control. As a result, continuous monitoring of blood sugar levels has the potential to save millions of lives. This paper proposes a Blockchain-based platform that connects the patients, healthcare practitioners (HP), and caregivers for a continuous monitoring and care ofdiabetic patients. It lets the patients to securely connected to HP for the purpose of remote patient monitoring (telemedicine), whilst preserving patient data privacy using the blockchain technology. IoT sensors are used to read sugar levels and store these data in a tamper-proof immutable ledger (Hyperledger). This platform provides an End-to-End movement of the patient's data. That is, from the point where it is formed (sensors) to the point it ends up in the HP side. It gives patient a control-and-track function to maintain/track data movement. It provides a unique feature in allowing the patient to keep track of the private data and to pick who they want to share the data with and for how long (and for what reason). The platform is developed in two stages. Initially, the concept is implemented using the Hyperledger Fabric. Then, a Blockchain based on a novel Proof-of-Review (PoR) consensus model is included on to provide efficient performance and scalability in the Hyperledger fabric. Essentially, this proposed platform is to alleviate the pain points in traditional healthcare systems in the scopes of information exchange, data security, and privacy maintenance for real-time diabetic patient monitoring.
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