4.6 Article

Managing Security of Healthcare Data for a Modern Healthcare System

期刊

SENSORS
卷 23, 期 7, 页码 -

出版社

MDPI
DOI: 10.3390/s23073612

关键词

smart hospital system; internet of things; security and privacy; optimization; artificial intelligence; healthcare data

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The advent of AI and IoT has created new opportunities for healthcare, but the challenge of storing and securely transferring data remains. This research proposes a novel encryption method to protect sensitive patient data from unauthorized access and cyber-attacks. The method combines metaheuristic optimization and improved security algorithm to generate secure keys for encryption. The experiment's findings suggest that the proposed method is effective in reducing execution time and improving privacy standards.
The advent of Artificial Intelligence (AI) and the Internet of Things (IoT) have recently created previously unimaginable opportunities for boosting clinical and patient services, reducing costs and improving community health. Yet, a fundamental challenge that the modern healthcare management system faces is storing and securely transferring data. Therefore, this research proposes a novel Lionized remora optimization-based serpent (LRO-S) encryption method to encrypt sensitive data and reduce privacy breaches and cyber-attacks from unauthorized users and hackers. The LRO-S method is the combination of hybrid metaheuristic optimization and improved security algorithm. The fitness functions of lion and remora are combined to create a new algorithm for security key generation, which is provided to the serpent encryption algorithm. The LRO-S technique encrypts sensitive patient data before storing it in the cloud. The primary goal of this study is to improve the safety and adaptability of medical professionals' access to cloud-based patient-sensitive data more securely. The experiment's findings suggest that the secret keys generated are sufficiently random and one of a kind to provide adequate protection for the data stored in modern healthcare management systems. The proposed method minimizes the time needed to encrypt and decrypt data and improves privacy standards. This study found that the suggested technique outperformed previous techniques in terms of reducing execution time and is cost-effective.

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