arrow
Return

Secure gene profile data processing using lightweight cryptography and blockchain

delete2023-08-12
delete11
PRE
AI
H
Hemant B. Mahajan *
K
K. T. V. Reddy
DOI:10.1007/s10586-023-04123-6delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Human microarray gene profile analysis has become popular for early cancer detection. Due to security risks, Healthcare 4.0 standards make processing patient gene data difficult. Healthcare 4.0 guidelines must secure gene profile data storage and exchange. Recently several blockchain-based methods have been proposed for secure data processing for Cloud-based Healthcare 4.0 architecture. However, existing solutions not providing all the essential features like scalability, strong security measures, computational efficiency, and multiple security parameters. To overcome these problems, we propose a novel approach for the secure processing of the microarray gene expression data using computationally efficient, scalable, and highly secured Healthcare 4.0 standards. We propose a new Healthcare 4.0 architecture based on lightweight cryptography and blockchain technologies. Blockchain technology's recent advancements in cloud data storage and sharing indicate potential security features. Smart healthcare applications need a centralized approach for safe data storage and exchange. Edge layer (patients/gene users), fog, cloud storage, and blockchain make up Healthcare 4.0. Fog nodes store and search edge-layer gene data in blockchain-enabled cloud storage using lightweight cryptography. Elliptic Curve Cryptography (ECC) protects data processing and privacy using Elliptic Curve Diffie-Hellman (ECDH) and Elliptic Curve Digital Signature Algorithm (ECDSA). Meta-data from cloud-saved data is stored in blockchain to prevent tampering, forging, and quantum. We designed different threat-based case studies to demonstrate the model's efficiency and scalability. Computing efficiency and security are better with the proposed strategy. The outcome case studies showed that the suggested approach protected against various opponent models. The proposed method reduces encryption and decryption times by 325 and 20 ms, respectively.
Keywords:
Blockchain
Cloud service provider
Elliptical curve cryptography
Electronic heath records
Healthcare 4.0
Gene profile data
Security

Journal

C
Cluster Computing-The Journal of Networks Software Tools and Applications
IF:
4.1
Papers:
5.1K
Citations:
7.5K

Organization

Cited Papers

Cited Papers

Blockchain-based secured event-information sharing protocol in internet of vehicles for smart cities
err2020-09-01
err71
PREAI
errDwivedi, Sanjeev Kumar; Amin, Ruhul; Vollala, Satyanarayana; Chaudhry, Rashmi
errShare
errSave
A novel framework paradigm for EMR management cloud system authentication using blockchain security network
err2023-03-03
err3
PREAI
errThilagavathy, R.; Renjith, P. N.; Lalitha, R. V. S.; Murthy, Mantripragada Yaswanth Bhanu; Sucharitha, Yadala; Narayanan, S. Lakshmi
errShare
errSave
A systematic review of blockchain
err2019-07-04
err250
errOAAI
errXu, Min; Chen, Xingtong; Kou, Gang
errShare
errSave
Blockchain based searchable encryption for electronic health record sharing
err2019-06-01
err325
PREAI
errChen, Lanxiang; Lee, Wai-Kong; Chang, Chin-Chen; Choo, Kim-Kwang Raymond; Zhang, Nan
errShare
errSave
A hybrid framework for multimedia data processing in IoT-healthcare using blockchain technology
err2019-06-03
err130
PREAI
errRathee, Geetanjali; Sharma, Ashutosh; Saini, Hemraj; Kumar, Rajiv; Iqbal, Razi
errShare
errSave
researcher View more