EFFICIENT FINE-GRAINED DATA SHARING MECHANISM FOR ELECTRONIC MEDICAL RECORD SYSTEM.

Safe personal data storage is a key problem when using cloud providers because it contributes to a range of protection and data secrecy concerns. Data privacy protection, open data exchange, effective authority delegation, and computing efficiency optimization are all roadblocks to achieving realist...

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Publicado en:Turkish Journal of Physiotherapy Rehabilitation Vol. 32; no. 2; pp. 2222 - 2227
Autores principales: E., DINESH, V., KARTHICK, S., NAVEENKUMAR, N., YOGESWARAN
Formato: Journal Article
Publicado: Turkish Journal of Physiotherapy & Rehabilitation 2021
Acceso en línea:Ver este registro en EBSCOhost
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      pub: Turkish Journal of Physiotherapy & Rehabilitation
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        atl: EFFICIENT FINE-GRAINED DATA SHARING MECHANISM FOR ELECTRONIC MEDICAL RECORD SYSTEM.
      aug:
        au:
          E., DINESH
          V., KARTHICK
          S., NAVEENKUMAR
          N., YOGESWARAN
        affil: Assistant Professor, Department of Electronics and Communication Engineering, M.Kumarasamy College of Engineering, Karur, Tamil Nadu, India
      sug:
        subj:
          Data Management
          Electronic Health Records
          Health Information Systems
          Communication
          Conceptual Framework
          Diagnostic Imaging
      ab: Safe personal data storage is a key problem when using cloud providers because it contributes to a range of protection and data secrecy concerns. Data privacy protection, open data exchange, effective authority delegation, and computing efficiency optimization are all roadblocks to achieving realistic fine-grained access control in the Personal Information Sharing environment. It is essential to encrypt confidential data before uploading it to the cloud. To address the issues raised above, we recommend a Personal Data Exchange data sharing mechanism that provides data security, fine-grained access control, and authority delegation. The proposed methodology uses the duplicate generation technique with a two-server based computing facility to secure patients' MHR (Medical Health Record) in the healthcare cloud. The duplicate server serves as a second gallery, containing duplicate MHR that are mistaken for the original by the attacker. When a user uploads a file to the original server, a copy is created and stored on a different server. When an attacker attempts to access the system, the duplicate (decoy) files are named in this method; however, in our proposed methodology, the duplicate files are obtained from the beginning to ensure better protection. Encrypting medical records employs the AES algorithm.
      pubtype: Academic Journal
      doctype: Journal Article
      ougenre: Article
    language: English
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