Wong Stephen T C, Tjandra Donny, Wang Huili, Shen Weimin
Center of Bioinformatics, Harvard Center of Neurodegeneration and Repair, Harvard Medical School, Boston, MA 02115, USA.
IEEE Trans Inf Technol Biomed. 2003 Sep;7(3):171-83. doi: 10.1109/titb.2003.813790.
Few information systems today offer a flexible means to define and manage the automated part of radiology processes, which provide clinical imaging services for the entire healthcare organization. Even fewer of them provide a coherent architecture that can easily cope with heterogeneity and inevitable local adaptation of applications and can integrate clinical and administrative information to aid better clinical, operational, and business decisions. We describe an innovative enterprise architecture of image information management systems to fill the needs. Such a system is based on the interplay of production workflow management, distributed object computing, Java and Web techniques, and in-depth domain knowledge in radiology operations. Our design adapts the approach of "4+1" architectural view. In this new architecture, PACS and RIS become one while the user interaction can be automated by customized workflow process. Clinical service applications are implemented as active components. They can be reasonably substituted by applications of local adaptations and can be multiplied for fault tolerance and load balancing. Furthermore, the workflow-enabled digital radiology system would provide powerful query and statistical functions for managing resources and improving productivity. This paper will potentially lead to a new direction of image information management. We illustrate the innovative design with examples taken from an implemented system.
如今,很少有信息系统能提供一种灵活的方式来定义和管理放射学流程的自动化部分,而放射学流程为整个医疗保健机构提供临床影像服务。其中能提供一个连贯架构的更是少之又少,这种架构要能轻松应对异构性以及应用程序不可避免的本地化适配问题,还要能整合临床和管理信息,以辅助做出更好的临床、运营和业务决策。我们描述了一种创新的图像信息管理系统企业架构来满足这些需求。这样一个系统基于生产工作流管理、分布式对象计算、Java和Web技术以及放射学操作方面的深入领域知识之间的相互作用。我们的设计采用了“4+1”架构视图的方法。在这个新架构中,PACS( Picture Archiving and Communication System,图像存档与通信系统)和RIS(Radiology Information System,放射学信息系统)合二为一,同时用户交互可以通过定制的工作流流程实现自动化。临床服务应用程序作为活动组件来实现。它们可以被本地化适配的应用程序合理替代,并且可以进行复制以实现容错和负载均衡。此外,启用工作流的数字放射学系统将提供强大的查询和统计功能,用于管理资源和提高生产力。本文可能会引领图像信息管理的新方向。我们用一个已实施系统中的示例来说明这种创新设计。