Dynamic Autonomous Cross Consortium Chain Mechanism in e-Healthcare
Safe and scalable dynamic autonomous data interaction between medical institutions can increase the number of clinical trial records, which is of great significance for improving the level of medical trial collaboration, especially for clinical decision-making with regard to rare diseases. Through a...
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Published in | IEEE journal of biomedical and health informatics Vol. 24; no. 8; pp. 2157 - 2168 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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United States
IEEE
01.08.2020
The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
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Abstract | Safe and scalable dynamic autonomous data interaction between medical institutions can increase the number of clinical trial records, which is of great significance for improving the level of medical trial collaboration, especially for clinical decision-making with regard to rare diseases. Through a preset authorization access and consensus mechanism, consortium chain provides integrity and traceability management for medical clinical data. However, how to enable users have ownership of their own medical data and share their medical data safely and dynamically between different medical institutions remains an area of particular concern. To achieve dynamic communication between medical consortium chains, this paper proposes (i) a cross-chain communication mechanism by simplifying the heterogeneous node communication topology and (ii) the construction rules of the node identity credibility path-proof to carry out dynamic construction and verification of the path-proof for cross-chain transactions. In addition, the consensus of the cross-chain transaction is modeled as a threshold digital signature process with multiple privileged subgroups; thus, the intra-chain consortium consensus based on the verification node list is extended to the cross-chain consensus. A smart contract deployment and execution scheme based on rational node value transfer mechanism is proposed by analyzing the value transfer game between nodes. Experimental results showed that the proposed scheme can not only enable patients to share their records safely and autonomously in an authorized medical consortium chain within milliseconds but also realize dynamic adaptive interaction among heterogeneous consortium chains. |
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AbstractList | Safe and scalable dynamic autonomous data interaction between medical institutions can increase the number of clinical trial records, which is of great significance for improving the level of medical trial collaboration, especially for clinical decision-making with regard to rare diseases. Through a preset authorization access and consensus mechanism, consortium chain provides integrity and traceability management for medical clinical data. However, how to enable users have ownership of their own medical data and share their medical data safely and dynamically between different medical institutions remains an area of particular concern. To achieve dynamic communication between medical consortium chains, this paper proposes (i) a cross-chain communication mechanism by simplifying the heterogeneous node communication topology and (ii) the construction rules of the node identity credibility path-proof to carry out dynamic construction and verification of the path-proof for cross-chain transactions. In addition, the consensus of the cross-chain transaction is modeled as a threshold digital signature process with multiple privileged subgroups; thus, the intra-chain consortium consensus based on the verification node list is extended to the cross-chain consensus. A smart contract deployment and execution scheme based on rational node value transfer mechanism is proposed by analyzing the value transfer game between nodes. Experimental results showed that the proposed scheme can not only enable patients to share their records safely and autonomously in an authorized medical consortium chain within milliseconds but also realize dynamic adaptive interaction among heterogeneous consortium chains. Safe and scalable dynamic autonomous data interaction between medical institutions can increase the number of clinical trial records, which is of great significance for improving the level of medical trial collaboration, especially for clinical decision-making with regard to rare diseases. Through a preset authorization access and consensus mechanism, consortium chain provides integrity and traceability management for medical clinical data. However, how to enable users have ownership of their own medical data and share their medical data safely and dynamically between different medical institutions remains an area of particular concern. To achieve dynamic communication between medical consortium chains, this paper proposes (i) a cross-chain communication mechanism by simplifying the heterogeneous node communication topology and (ii) the construction rules of the node identity credibility path-proof to carry out dynamic construction and verification of the path-proof for cross-chain transactions. In addition, the consensus of the cross-chain transaction is modeled as a threshold digital signature process with multiple privileged subgroups; thus, the intra-chain consortium consensus based on the verification node list is extended to the cross-chain consensus. A smart contract deployment and execution scheme based on rational node value transfer mechanism is proposed by analyzing the value transfer game between nodes. Experimental results showed that the proposed scheme can not only enable patients to share their records safely and autonomously in an authorized medical consortium chain within milliseconds but also realize dynamic adaptive interaction among heterogeneous consortium chains.Safe and scalable dynamic autonomous data interaction between medical institutions can increase the number of clinical trial records, which is of great significance for improving the level of medical trial collaboration, especially for clinical decision-making with regard to rare diseases. Through a preset authorization access and consensus mechanism, consortium chain provides integrity and traceability management for medical clinical data. However, how to enable users have ownership of their own medical data and share their medical data safely and dynamically between different medical institutions remains an area of particular concern. To achieve dynamic communication between medical consortium chains, this paper proposes (i) a cross-chain communication mechanism by simplifying the heterogeneous node communication topology and (ii) the construction rules of the node identity credibility path-proof to carry out dynamic construction and verification of the path-proof for cross-chain transactions. In addition, the consensus of the cross-chain transaction is modeled as a threshold digital signature process with multiple privileged subgroups; thus, the intra-chain consortium consensus based on the verification node list is extended to the cross-chain consensus. A smart contract deployment and execution scheme based on rational node value transfer mechanism is proposed by analyzing the value transfer game between nodes. Experimental results showed that the proposed scheme can not only enable patients to share their records safely and autonomously in an authorized medical consortium chain within milliseconds but also realize dynamic adaptive interaction among heterogeneous consortium chains. |
Author | Qiao, Rui Yan, Xin-Qing Luo, Xiang-Yang Liu, Ao-Di Zhu, Si-Feng Wang, Qing-Xian |
Author_xml | – sequence: 1 givenname: Rui orcidid: 0000-0002-0569-2179 surname: Qiao fullname: Qiao, Rui email: jorui_314@126.com organization: Zhoukou Normal University, Zhoukou, China – sequence: 2 givenname: Xiang-Yang orcidid: 0000-0003-3225-4649 surname: Luo fullname: Luo, Xiang-Yang email: luoxy_ieu@sina.com organization: State Key Laboratory of Mathematical Engineering and Advanced Computing, Zhengzhou, China – sequence: 3 givenname: Si-Feng surname: Zhu fullname: Zhu, Si-Feng email: 304854105@qq.com organization: Tianjin Chengjian University, Tianjin, China – sequence: 4 givenname: Ao-Di orcidid: 0000-0002-9644-3812 surname: Liu fullname: Liu, Ao-Di email: ladyexue@163.com organization: State Key Laboratory of Mathematical Engineering and Advanced Computing, Zhengzhou, China – sequence: 5 givenname: Xin-Qing surname: Yan fullname: Yan, Xin-Qing email: yanxq@ncwu.edu.cn organization: North China University of Water Resources and Electric Power, Zhengzhou, China – sequence: 6 givenname: Qing-Xian surname: Wang fullname: Wang, Qing-Xian email: wqx2008@vip.sina.com organization: State Key Laboratory of Mathematical Engineering and Advanced Computing, Zhengzhou, China |
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SubjectTerms | Algorithms Biomedical Research Blockchain Chains Clinical decision making Clinical trials Collaboration Communication Confidentiality Consortia Construction cross consortium chain Decision making Digital signatures Electronic Health Records group signature Health care facilities Humans Informatics Intersectoral Collaboration Logic gates Medical collaboration Nodes Rare diseases Smart contracts Subgroups Telemedicine Topology value transfer Verification |
Title | Dynamic Autonomous Cross Consortium Chain Mechanism in e-Healthcare |
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