Makris L, Argiriou N, Strintzis M G
Electrical and Computer Engineering Department, Aristotle University of Thessaloniki, Greece.
Med Inform (Lond). 1997 Apr-Jun;22(2):133-42. doi: 10.3109/14639239709010886.
The maturing of telecommunication technologies has ushered in a whole new era of applications and services in the health care environment. Teleworking, teleconsultation, mutlimedia conferencing and medical data distribution are rapidly becoming commonplace in clinical practice. As a result, a set of problems arises, concerning data confidentiality and integrity. Public computer networks, such as the emerging ISDN technology, are vulnerable to eavesdropping. Therefore it is important for telemedicine applications to employ end-to-end encryption mechanisms securing the data channel from unauthorized access of modification. We propose a network access and encryption system that is both economical and easily implemented for integration in developing or existing applications, using well-known and thoroughly tested encryption algorithms. Public-key cryptography is used for session-key exchange, while symmetric algorithms are used for bulk encryption. Mechanisms for session-key generation and exchange are also provided.
电信技术的成熟开创了医疗保健环境中全新的应用和服务时代。远程办公、远程会诊、多媒体会议和医疗数据分发在临床实践中迅速变得司空见惯。结果,出现了一系列有关数据保密性和完整性的问题。诸如新兴的综合业务数字网(ISDN)技术之类的公共计算机网络容易受到窃听。因此,远程医疗应用采用端到端加密机制以保护数据通道免遭未经授权的访问或修改非常重要。我们提出了一种网络访问和加密系统,该系统经济实惠且易于实现,可使用知名且经过充分测试的加密算法集成到正在开发的或现有的应用程序中。公钥加密技术用于会话密钥交换,而对称算法用于批量加密。还提供了会话密钥生成和交换机制。