EPPS: Efficient and Privacy-Preserving Personal Health Information Sharing in Mobile Healthcare Social Networks

Mobile healthcare social networks (MHSNs) have emerged as a promising next-generation healthcare system, which will significantly improve the quality of life. However, there are many security and privacy concerns before personal health information (PHI) is shared with other parities. To ensure patie...

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Main Authors: Shunrong Jiang, Xiaoyan Zhu, Liangmin Wang
Format: Article
Language:English
Published: MDPI AG 2015-09-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/15/9/22419
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spelling doaj-5fab139bca63476c913f50310972c12f2020-11-24T23:43:30ZengMDPI AGSensors1424-82202015-09-01159224192243810.3390/s150922419s150922419EPPS: Efficient and Privacy-Preserving Personal Health Information Sharing in Mobile Healthcare Social NetworksShunrong Jiang0Xiaoyan Zhu1Liangmin Wang2National Key Laboratory of Integrated Services Networks, Xidian University, Xi'an 710071, ChinaNational Key Laboratory of Integrated Services Networks, Xidian University, Xi'an 710071, ChinaThe Department of Internet of Things, Jiangsu University, Zhenjiang 212013, ChinaMobile healthcare social networks (MHSNs) have emerged as a promising next-generation healthcare system, which will significantly improve the quality of life. However, there are many security and privacy concerns before personal health information (PHI) is shared with other parities. To ensure patients’ full control over their PHI, we propose a fine-grained and scalable data access control scheme based on attribute-based encryption (ABE). Besides, policies themselves for PHI sharing may be sensitive and may reveal information about underlying PHI or about data owners or recipients. In our scheme, we let each attribute contain an attribute name and its value and adopt the Bloom filter to efficiently check attributes before decryption. Thus, the data privacy and policy privacy can be preserved in our proposed scheme. Moreover, considering the fact that the computational cost grows with the complexity of the access policy and the limitation of the resource and energy in a smart phone, we outsource ABE decryption to the cloud while preventing the cloud from learning anything about the content and access policy. The security and performance analysis is carried out to demonstrate that our proposed scheme can achieve fine-grained access policies for PHI sharing in MHSNs.http://www.mdpi.com/1424-8220/15/9/22419privacyattribute-based encryptionbloom filtermobile healthcare social networks
collection DOAJ
language English
format Article
sources DOAJ
author Shunrong Jiang
Xiaoyan Zhu
Liangmin Wang
spellingShingle Shunrong Jiang
Xiaoyan Zhu
Liangmin Wang
EPPS: Efficient and Privacy-Preserving Personal Health Information Sharing in Mobile Healthcare Social Networks
Sensors
privacy
attribute-based encryption
bloom filter
mobile healthcare social networks
author_facet Shunrong Jiang
Xiaoyan Zhu
Liangmin Wang
author_sort Shunrong Jiang
title EPPS: Efficient and Privacy-Preserving Personal Health Information Sharing in Mobile Healthcare Social Networks
title_short EPPS: Efficient and Privacy-Preserving Personal Health Information Sharing in Mobile Healthcare Social Networks
title_full EPPS: Efficient and Privacy-Preserving Personal Health Information Sharing in Mobile Healthcare Social Networks
title_fullStr EPPS: Efficient and Privacy-Preserving Personal Health Information Sharing in Mobile Healthcare Social Networks
title_full_unstemmed EPPS: Efficient and Privacy-Preserving Personal Health Information Sharing in Mobile Healthcare Social Networks
title_sort epps: efficient and privacy-preserving personal health information sharing in mobile healthcare social networks
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2015-09-01
description Mobile healthcare social networks (MHSNs) have emerged as a promising next-generation healthcare system, which will significantly improve the quality of life. However, there are many security and privacy concerns before personal health information (PHI) is shared with other parities. To ensure patients’ full control over their PHI, we propose a fine-grained and scalable data access control scheme based on attribute-based encryption (ABE). Besides, policies themselves for PHI sharing may be sensitive and may reveal information about underlying PHI or about data owners or recipients. In our scheme, we let each attribute contain an attribute name and its value and adopt the Bloom filter to efficiently check attributes before decryption. Thus, the data privacy and policy privacy can be preserved in our proposed scheme. Moreover, considering the fact that the computational cost grows with the complexity of the access policy and the limitation of the resource and energy in a smart phone, we outsource ABE decryption to the cloud while preventing the cloud from learning anything about the content and access policy. The security and performance analysis is carried out to demonstrate that our proposed scheme can achieve fine-grained access policies for PHI sharing in MHSNs.
topic privacy
attribute-based encryption
bloom filter
mobile healthcare social networks
url http://www.mdpi.com/1424-8220/15/9/22419
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