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...

Descripción completa

Detalles Bibliográficos
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
Descripción
Sumario: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.