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A Secure Architecture for Australia’s Index Based E-health Environment

Liu, V., Caelli, W., Smith, J. May, L., Lee, M. H., Ng, Z. H., Foo, J. H. and Li, W.

    This paper proposes a security architecture for the basic cross indexing systems emerging as foundational structures in current health information systems. In these systems unique identifiers are issued to healthcare providers and consumers. In most cases, such numbering schemes are national in scope and must therefore necessarily be used via an indexing system to identify records contained in pre-existing local, regional or national health information systems. Most large scale electronic health record systems envisage that such correlation between national healthcare identifiers and pre-existing identifiers will be performed by some centrally administered cross referencing, or index system. This paper is concerned with the security architecture for such indexing servers and the manner in which they interface with pre-existing health systems (including both workstations and servers). The paper proposes two required structures to achieve the goal of a national scale, and secure exchange of electronic health information, including: (a) the employment of high trust computer systems to perform an indexing function, and (b) the development and deployment of an appropriate high trust interface module, a Healthcare Interface Processor (HIP), to be integrated into the connected workstations or servers of healthcare service providers. This proposed architecture is specifically oriented toward requirements identified in the Connectivity Architecture for Australia’s e-health scheme as outlined by NEHTA and the national e-health strategy released by the Australian Health Ministers.
Cite as: Liu, V., Caelli, W., Smith, J. May, L., Lee, M. H., Ng, Z. H., Foo, J. H. and Li, W. (2010). A Secure Architecture for Australia’s Index Based E-health Environment. In Proc. Fourth Australasian Workshop on Health Informatics and Knowledge Management (HIKM 2010) Brisbane, Australia. CRPIT, 108. Maeder, A. and Hansen, D. Eds., ACS. 7-16
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