A Patient-Centric Health Information Exchange Framework Using Blockchain Technology

Health Information Exchange (HIE) exhibits remarkable benefits for patient care such as improving healthcare quality and expediting coordinated care. The Office of the National Coordinator (ONC) for Health Information Technology is seeking patient-centric HIE designs that shift data ownership from p...

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Vydané v:IEEE journal of biomedical and health informatics Ročník 24; číslo 8; s. 2169 - 2176
Hlavní autori: Zhuang, Yan, Sheets, Lincoln R., Chen, Yin-Wu, Shae, Zon-Yin, Tsai, Jeffrey J.P., Shyu, Chi-Ren
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: United States IEEE 01.08.2020
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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ISSN:2168-2194, 2168-2208, 2168-2208
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Abstract Health Information Exchange (HIE) exhibits remarkable benefits for patient care such as improving healthcare quality and expediting coordinated care. The Office of the National Coordinator (ONC) for Health Information Technology is seeking patient-centric HIE designs that shift data ownership from providers to patients. There are multiple barriers to patient-centric HIE in the current system, such as security and privacy concerns, data inconsistency, timely access to the right records across multiple healthcare facilities. After investigating the current workflow of HIE, this paper provides a feasible solution to these challenges by utilizing the unique features of blockchain, a distributed ledger technology which is considered "unhackable". Utilizing the smart contract feature, which is a programmable self-executing protocol running on a blockchain, we developed a blockchain model to protect data security and patients' privacy, ensure data provenance, and provide patients full control of their health records. By personalizing data segmentation and an "allowed list" for clinicians to access their data, this design achieves patient-centric HIE. We conducted a large-scale simulation of this patient-centric HIE process and quantitatively evaluated the model's feasibility, stability, security, and robustness.
AbstractList Health Information Exchange (HIE) exhibits remarkable benefits for patient care such as improving healthcare quality and expediting coordinated care. The Office of the National Coordinator (ONC) for Health Information Technology is seeking patient-centric HIE designs that shift data ownership from providers to patients. There are multiple barriers to patient-centric HIE in the current system, such as security and privacy concerns, data inconsistency, timely access to the right records across multiple healthcare facilities. After investigating the current workflow of HIE, this paper provides a feasible solution to these challenges by utilizing the unique features of blockchain, a distributed ledger technology which is considered “unhackable”. Utilizing the smart contract feature, which is a programmable self-executing protocol running on a blockchain, we developed a blockchain model to protect data security and patients’ privacy, ensure data provenance, and provide patients full control of their health records. By personalizing data segmentation and an “allowed list” for clinicians to access their data, this design achieves patient-centric HIE. We conducted a large-scale simulation of this patient-centric HIE process and quantitatively evaluated the model's feasibility, stability, security, and robustness.
Health Information Exchange (HIE) exhibits remarkable benefits for patient care such as improving healthcare quality and expediting coordinated care. The Office of the National Coordinator (ONC) for Health Information Technology is seeking patient-centric HIE designs that shift data ownership from providers to patients. There are multiple barriers to patient-centric HIE in the current system, such as security and privacy concerns, data inconsistency, timely access to the right records across multiple healthcare facilities. After investigating the current workflow of HIE, this paper provides a feasible solution to these challenges by utilizing the unique features of blockchain, a distributed ledger technology which is considered "unhackable". Utilizing the smart contract feature, which is a programmable self-executing protocol running on a blockchain, we developed a blockchain model to protect data security and patients' privacy, ensure data provenance, and provide patients full control of their health records. By personalizing data segmentation and an "allowed list" for clinicians to access their data, this design achieves patient-centric HIE. We conducted a large-scale simulation of this patient-centric HIE process and quantitatively evaluated the model's feasibility, stability, security, and robustness.Health Information Exchange (HIE) exhibits remarkable benefits for patient care such as improving healthcare quality and expediting coordinated care. The Office of the National Coordinator (ONC) for Health Information Technology is seeking patient-centric HIE designs that shift data ownership from providers to patients. There are multiple barriers to patient-centric HIE in the current system, such as security and privacy concerns, data inconsistency, timely access to the right records across multiple healthcare facilities. After investigating the current workflow of HIE, this paper provides a feasible solution to these challenges by utilizing the unique features of blockchain, a distributed ledger technology which is considered "unhackable". Utilizing the smart contract feature, which is a programmable self-executing protocol running on a blockchain, we developed a blockchain model to protect data security and patients' privacy, ensure data provenance, and provide patients full control of their health records. By personalizing data segmentation and an "allowed list" for clinicians to access their data, this design achieves patient-centric HIE. We conducted a large-scale simulation of this patient-centric HIE process and quantitatively evaluated the model's feasibility, stability, security, and robustness.
Author Sheets, Lincoln R.
Chen, Yin-Wu
Shae, Zon-Yin
Shyu, Chi-Ren
Tsai, Jeffrey J.P.
Zhuang, Yan
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  fullname: Zhuang, Yan
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  organization: Institute for Data Science and Informatics, University of Missouri, Columbia, MO, USA
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  givenname: Lincoln R.
  orcidid: 0000-0002-1586-1474
  surname: Sheets
  fullname: Sheets, Lincoln R.
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  organization: Institute for Data Science & Informatics, Health Management & Informatics Department, Missouri Telehealth Network, and School of Medicine, University of Missouri, Columbia, MO, USA
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  givenname: Yin-Wu
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  organization: Artificial Intelligence Research Lab, Asia University, Taichung, Taiwan
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  givenname: Jeffrey J.P.
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  surname: Shyu
  fullname: Shyu, Chi-Ren
  email: shyuc@missouri.edu
  organization: Institute for Data Science and Informatics, Department of Electrical Engineering and Computer Science, and School of Medicine, University of Missouri, Columbia, MO, USA
BackLink https://www.ncbi.nlm.nih.gov/pubmed/32396110$$D View this record in MEDLINE/PubMed
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Snippet Health Information Exchange (HIE) exhibits remarkable benefits for patient care such as improving healthcare quality and expediting coordinated care. The...
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SubjectTerms Blockchain
Computer Communication Networks
Computer simulation
Contracts
Cryptography
Data exchange
Data models
Data privacy
data segmentation
Distributed ledger
electronic health records (EHR)
Feasibility
Health care
Health care facilities
Health Information Exchange
health information exchange (HIE)
Humans
Informatics
Information exchange
Information technology
Medical services
patient-centric
Patients
Privacy
Security
Segmentation
smart contract
Stability analysis
Technology
Workflow
Title A Patient-Centric Health Information Exchange Framework Using Blockchain Technology
URI https://ieeexplore.ieee.org/document/9090282
https://www.ncbi.nlm.nih.gov/pubmed/32396110
https://www.proquest.com/docview/2431703439
https://www.proquest.com/docview/2401829091
Volume 24
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