Ribeirão Preto Medical School, University of São Paulo, Ribeirão Preto, Brazil.
Bioengineering Postgraduate Program, São Carlos School of Engineering, University of São Paulo, São Carlos, Brazil.
Stud Health Technol Inform. 2021 May 7;279:130-135. doi: 10.3233/SHTI210099.
Intensified research and innovation and rapid uptake of new tools, interventions, and strategies are crucial to fight Tuberculosis, the world's deadliest infectious disease. The sharing of health data remains a significant challenge. Data consumers must be able to verify the consistency and integrity of data. Solutions based on distributed ledger technologies may be adequate, where each member in a network holds a unique credential and stores an identical copy of the ledger and contributes to the collective process of validating and certifying digital transactions.
This work proposes a mechanism and presents a use case in Digital Health to allow the verification of integrity and immutability of TB electronic health records.
IOTA was selected as a supporting tool due to its data immutability, traceability and tamper-proof characteristics.
A mechanism to verify the integrity of data through hash functions and the IOTA network is proposed. Then, a set of TB related information systems was integrated with the network.
IOTA technology offers performance and flexibility to enable a reliable environment for electronic health records.
加强研究和创新,加快采用新工具、干预措施和战略,对于防治结核病这一致命传染病至关重要。分享卫生数据仍然是一个重大挑战。数据使用者必须能够验证数据的一致性和完整性。基于分布式账本技术的解决方案可能是足够的,在这种解决方案中,网络中的每个成员都持有唯一的证书,并存储账本的相同副本,并为验证和认证数字交易的集体过程做出贡献。
本工作提出了一种机制,并提出了一个数字健康用例,以允许验证结核病电子健康记录的完整性和不可变性。
由于 IOTA 具有数据不可变、可追溯和防篡改的特点,因此被选为支持工具。
提出了一种通过哈希函数和 IOTA 网络验证数据完整性的机制。然后,将一组与结核病相关的信息系统与网络集成。
IOTA 技术提供了性能和灵活性,为电子健康记录提供了可靠的环境。