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A patient-identity security mechanism for electronic medical records during transit and at rest.

机译:一种在运输过程中和休息时用于电子病历的患者身份安全机制。

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摘要

This paper proposes a patient-identity security mechanism, including an identity cipher/decipher and a user-authentication protocol, to ensure the confidentiality and authentication of patients' electronic medical records (EMRs) during transit and at rest. To support the confidentiality of an EMR, the identity cipher/decipher uses a data-hiding function and three logical-based functions to encrypt/decrypt a patient's identifying data and medical details in an EMR. The ciphertext of the patient's identifying data is patient-EMR related, whereas that of medical details is healthcare agent-EMR related. To support the authentication of an EMR, the user-authentication protocol based on a public key infrastructure uses certificates and dynamic cookies for verification/identification. The identity cipher has been simulated using C programming language running on a 1500 MHz Pentium PC with 512 MB of RAM. The experimental results show that healthcare agents can install large amounts of patients' encrypted EMRs in healthcare databases efficiently. In addition, separately storing the keys in a user's token and an EMR database for decryption increases the safety of patients' EMRs. For each user-authentication trail, the use of certificates and dynamic cookies for verification/identification ensures that only authorized users can obtain access to the EMR, and anyone involved cannot make false claims on the transmission made.
机译:本文提出了一种患者身份安全机制,包括身份密码/解密和用户身份验证协议,以确保患者在运输和休息期间的电子病历(EMR)的机密性和身份验证。为了支持EMR的机密性,身份密码/解密器使用数据隐藏功能和三个基于逻辑的功能来加密/解密EMR中的患者识别数据和医疗详细信息。患者识别数据的密文与患者-EMR有关,而医疗细节的密文与医疗代理-EMR有关。为了支持EMR的身份验证,基于公钥基础结构的用户身份验证协议使用证书和动态cookie进行验证/识别。身份密码是使用C编程语言模拟的,该语言在具有512 MB RAM的1500 MHz奔腾PC上运行。实验结果表明,医疗保健代理可以有效地在医疗保健数据库中安装大量患者的加密EMR。另外,将密钥分别存储在用户的令牌和用于解密的EMR数据库中可提高患者EMR的安全性。对于每个用户身份验证线索,使用证书和动态cookie进行验证/识别可确保只有授权用户才能访问EMR,并且所涉及的任何人都不能对所进行的传输提出虚假声明。

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