Alghamdi Turki, Gebali Fayez, Salem Fares
Faculty of Computer and Information Systems, The Islamic University of Medinah, Prince Naif Ibn Abdulaziz, Al jamiah, Medinah 42351, Saudi Arabia.
Department of Electrical and Computer Engineering, University of Victoria, Victoria, BC, Canada V8W 3P6.
Int J Telemed Appl. 2022 Sep 23;2022:5394942. doi: 10.1155/2022/5394942. eCollection 2022.
Securing telehealth IoT infrastructure is essential to provide high-level medical care and prevent cyberattacks. A vulnerable stage in IoT telehealth is while the patient is being transported to a healthcare facility, the transporter could be an ambulance or an air ambulance. In this paper, we propose a multifactor authentication scheme to secure the system when the patient is in transit to the healthcare facility. We apply this scheme to an ambulance, using physical unclonable functions (PUFs) embedded in the ambulance to facilitate authentication and secure key exchange. We validated the security of the proposed scheme using formal and informal security analysis. The analysis supports our claim that the proposed scheme protects against many types of attacks.
确保远程医疗物联网基础设施的安全对于提供高水平医疗护理和防止网络攻击至关重要。物联网远程医疗中的一个脆弱阶段是患者被送往医疗机构的过程中,运送者可能是救护车或空中救护车。在本文中,我们提出了一种多因素认证方案,以在患者转运至医疗机构期间确保系统安全。我们将此方案应用于救护车,利用嵌入救护车中的物理不可克隆功能(PUF)来促进认证和安全密钥交换。我们使用形式化和非形式化安全分析验证了所提方案的安全性。该分析支持了我们的主张,即所提方案可抵御多种类型的攻击。