A Blockchain-Based E-Healthcare System With Provenance Awareness

Efficient sharing of comprehensive and relevant electronic health records (EHRs) is critical for precise disease research and high-quality, timely diagnoses. Recently, blockchain-based EHR sharing solutions have addressed issues such as single points of failure and data silos. However, decentralized...

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Main Authors: Lianshan Sun, Diandong Liu, Yang Li, Danni Zhou
Format: Article
Language:English
Published: IEEE 2024-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/10630559/
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author Lianshan Sun
Diandong Liu
Yang Li
Danni Zhou
author_facet Lianshan Sun
Diandong Liu
Yang Li
Danni Zhou
author_sort Lianshan Sun
collection DOAJ
description Efficient sharing of comprehensive and relevant electronic health records (EHRs) is critical for precise disease research and high-quality, timely diagnoses. Recently, blockchain-based EHR sharing solutions have addressed issues such as single points of failure and data silos. However, decentralized solutions still face challenges in efficiently tracking and sharing dispersed and correlated medical records. Patients, lacking professional medical knowledge, struggle to construct and maintain the lineage of their overall medical records, leading to inefficient and insecure sharing of correlated EHRs with trusted doctors. Doctors from various departments also struggle to access the most relevant EHRs necessary for a precise understanding of patients’ medical histories. This study introduces a blockchain-based EHR system with provenance awareness, collecting data provenance to document traceable patient histories, facilitate rapid authorizations for correlated EHRs in a lineage, and conduct post-authorization audits. Designing a DAG-like data structure, the system efficiently stores the EHR provenance on blockchain and optimizes provenance-specific search. The system introduces a dedicated EHR authorization layer to facilitate dynamic authorization propagation along with the EHR provenance path. Harnessing Nash equilibrium principles, the system establishes an honesty-driven auditing mechanism to scrutinize doctors’ data access provenance and the intricate journey of patient health records. We developed a prototype using Ethereum blockchain smart contracts, verifying the feasibility of our model. The prototype successfully integrates data provenance, operates at expected costs, enhances user-friendliness, and improves access control efficiency.
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spelling doaj-art-757f27f322a34ea8917e62fdba6968202025-08-20T03:13:43ZengIEEEIEEE Access2169-35362024-01-011211009811011210.1109/ACCESS.2024.344017010630559A Blockchain-Based E-Healthcare System With Provenance AwarenessLianshan Sun0https://orcid.org/0000-0002-5738-7862Diandong Liu1https://orcid.org/0009-0003-7094-2511Yang Li2Danni Zhou3College of Electronic Information and Artificial Intelligence, Shaanxi University of Science and Technology, Xi’an, ChinaCollege of Electronic Information and Artificial Intelligence, Shaanxi University of Science and Technology, Xi’an, ChinaCollege of Electronic Information and Artificial Intelligence, Shaanxi University of Science and Technology, Xi’an, ChinaCollege of Electronic Information and Artificial Intelligence, Shaanxi University of Science and Technology, Xi’an, ChinaEfficient sharing of comprehensive and relevant electronic health records (EHRs) is critical for precise disease research and high-quality, timely diagnoses. Recently, blockchain-based EHR sharing solutions have addressed issues such as single points of failure and data silos. However, decentralized solutions still face challenges in efficiently tracking and sharing dispersed and correlated medical records. Patients, lacking professional medical knowledge, struggle to construct and maintain the lineage of their overall medical records, leading to inefficient and insecure sharing of correlated EHRs with trusted doctors. Doctors from various departments also struggle to access the most relevant EHRs necessary for a precise understanding of patients’ medical histories. This study introduces a blockchain-based EHR system with provenance awareness, collecting data provenance to document traceable patient histories, facilitate rapid authorizations for correlated EHRs in a lineage, and conduct post-authorization audits. Designing a DAG-like data structure, the system efficiently stores the EHR provenance on blockchain and optimizes provenance-specific search. The system introduces a dedicated EHR authorization layer to facilitate dynamic authorization propagation along with the EHR provenance path. Harnessing Nash equilibrium principles, the system establishes an honesty-driven auditing mechanism to scrutinize doctors’ data access provenance and the intricate journey of patient health records. We developed a prototype using Ethereum blockchain smart contracts, verifying the feasibility of our model. The prototype successfully integrates data provenance, operates at expected costs, enhances user-friendliness, and improves access control efficiency.https://ieeexplore.ieee.org/document/10630559/Blockchaindata provenanceelectronic health recordssmart contract
spellingShingle Lianshan Sun
Diandong Liu
Yang Li
Danni Zhou
A Blockchain-Based E-Healthcare System With Provenance Awareness
IEEE Access
Blockchain
data provenance
electronic health records
smart contract
title A Blockchain-Based E-Healthcare System With Provenance Awareness
title_full A Blockchain-Based E-Healthcare System With Provenance Awareness
title_fullStr A Blockchain-Based E-Healthcare System With Provenance Awareness
title_full_unstemmed A Blockchain-Based E-Healthcare System With Provenance Awareness
title_short A Blockchain-Based E-Healthcare System With Provenance Awareness
title_sort blockchain based e healthcare system with provenance awareness
topic Blockchain
data provenance
electronic health records
smart contract
url https://ieeexplore.ieee.org/document/10630559/
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