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e-SAFE: Secure, Efficient and Forensics-Enabled Access to Implantable Medical Devices

机译:e-SAFE:对植入式医疗设备的安全,高效且取证启用的访问

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To facilitate monitoring and management, modern Implantable Medical Devices (IMDs) are often equipped with wireless capabilities, which raise the risk of malicious access to IMDs. Although schemes are proposed to secure the IMD access, some issues are still open. First, pre-sharing a long-term key between a patient’s IMD and a doctor’s programmer is vulnerable since once the doctor’s programmer is compromised, all of her patients suffer; establishing a temporary key by leveraging proximity gets rid of pre-shared keys, but as the approach lacks real authentication, it can be exploited by nearby adversaries or through man-in-the-middle attacks. Second, while prolonging the lifetime of IMDs is one of the most important design goals, few schemes explore to lower the communication and computation overhead all at once. Finally, how to safely record the commands issued by doctors for the purpose of forensics, which can be the last measure to protect the patients’ rights, is commonly omitted in the existing literature. Motivated by these important yet open problems, we propose an innovative scheme e-SAFE, which significantly improves security and safety, reduces the communication overhead and enables IMD-access forensics. We present a novel lightweight compressive sensing based encryption algorithm to encrypt and compress the IMD data simultaneously, reducing the data transmission overhead by over 50% while ensuring high data confidentiality and usability. Furthermore, we provide a suite of protocols regarding device pairing, dual-factor authentication, and accountability-enabled access. The security analysis and performance evaluation show the validity and efficiency of the proposed scheme.
机译:为了促进监视和管理,现代植入式医疗设备(IMD)通常配备有无线功能,这增加了恶意访问IMD的风险。尽管提出了保护IMD访问安全的方案,但仍然存在一些问题。首先,在患者的IMD与医生的编程人员之间预先共享一个长期密钥很容易受到攻击,因为一旦医生的编程人员受到威胁,她的所有患者都会遭受痛苦。通过利用邻近性来建立临时密钥可以摆脱预先共享的密钥,但是由于该方法缺乏真实的身份验证,它可以被附近的对手或通过中间人攻击加以利用。其次,虽然延长IMD的寿命是最重要的设计目标之一,但很少有方案试图同时降低通信和计算开销。最后,在现有文献中通常省略了如何安全记录医生为进行取证而发出的命令,这可能是保护患者权益的最后措施。受这些重要但尚未解决的问题的影响,我们提出了一种创新的方案e-SAFE,该方案可显着提高安全性和安全性,减少通信开销并启用IMD访问取证。我们提出了一种新颖的基于轻量级压缩感知的加密算法,可以同时加密和压缩IMD数据,在确保高数据机密性和可用性的同时,将数据传输开销减少了50%以上。此外,我们提供了一套有关设备配对,双因素身份验证和启用问责性访问的协议。安全分析和性能评估表明了该方案的有效性和有效性。

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