Ho B K, Taira R K, Steckel R J, Kangarloo H
Department of Radiological Sciences, UCLA School of Medicine, USA.
Telemed J. 1995 Spring;1(1):53-65. doi: 10.1089/tmj.1.1995.1.53.
A large-scale teleradiology project is under way to link a Florida imaging center to the UCLA Department of Radiology. The initial goal is to provide Florida patients in a routine clinical practice environment with subspecialty consultation by academic radiologists. The plan then calls for the addition of other domestic and international sites. Technical issues in planning to establish the necessary teleradiology infrastructure include wide area network design, image compression, distributed archiving, and special viewing station features. Special emphasis is placed on archive design that makes intelligent use of information, such as triggering events from the radiological information system (RIS) for image prefetching and visual cues from photo-icons for full-size image retrieval. Concepts such as teleconsultation and remote procedure monitoring are aimed at providing the same level of services at distant sites that would be available in-house. This article highlights the system design parameters that must be considered to engineer a scalable distributed teleradiology system.
一个大规模的远程放射学项目正在进行中,该项目旨在将佛罗里达州的一家影像中心与加州大学洛杉矶分校放射科连接起来。最初的目标是在常规临床实践环境中为佛罗里达州的患者提供学术放射科医生的亚专业会诊。该计划随后要求增加其他国内和国际站点。规划建立必要的远程放射学基础设施时涉及的技术问题包括广域网设计、图像压缩、分布式存档以及特殊的阅片站功能。特别强调存档设计要智能利用信息,例如利用放射学信息系统(RIS)触发事件进行图像预取,以及利用照片图标中的视觉提示进行全尺寸图像检索。远程会诊和远程程序监测等概念旨在为远程站点提供与内部相同水平的服务。本文重点介绍了设计一个可扩展的分布式远程放射学系统时必须考虑的系统设计参数。