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大规模图像存档与通信系统的实施

Implementation of a large-scale picture archiving and communication system.

作者信息

Huang H K, Taira R K, Lou S L, Wong A W, Breant C, Ho B K, Chuang K S, Stewart B K, Andriole K, Tecotzky R

机构信息

Department of Radiological Sciences, University of California, Los Angeles 90024-1721.

出版信息

Comput Med Imaging Graph. 1993 Jan-Feb;17(1):1-11. doi: 10.1016/0895-6111(93)90069-y.

Abstract

This paper describes the implementation of a large-scale picture archiving and communication system (PACS) in a clinical environment. The system consists of a PACS infrastructure, composed of a PACS controller, a database management system, communication networks, and optical disk archive. It connects to three MR units, four CT scanners, three computed radiography systems, and two laser film digitizers. Seven display stations are on line 24 h/day, 7 days/wk in genitourinary radiology (2K), pediatric radiology in-patient (1K and 2K) and outpatient (2K), neuroradiology (2K), pediatric ICU (1K), coronary care unit (1K), and one laser film printing station. The PACS is integrated with the hospital information system and the radiology information system. The system has been in operation since February 1992. We have integrated this PACS as a clinical component in daily radiology practice. It archives an average of 2.0-gigabyte image data per workday. A 3-mo system performance of various components are tabulated. The deployment of this large-scale PACS signifies a milestone in our PACS research and development effort. Radiologists, fellows, residents, and clinicians use it for case review, conferences, and occasionally for primary diagnosis. With this large-scale PACS in place, it will allow us to investigate the two critical issues raised when PACS research first started 10 yrs ago: system performance and cost effectiveness between a digital-based and a film-based system.

摘要

本文描述了在临床环境中大规模图像存档与通信系统(PACS)的实施情况。该系统由PACS基础设施组成,包括PACS控制器、数据库管理系统、通信网络和光盘存档。它连接到三台磁共振成像(MR)设备、四台计算机断层扫描(CT)扫描仪、三台计算机X线摄影系统和两台激光胶片数字化仪。七个显示工作站每周7天、每天24小时在线,分别用于泌尿生殖系统放射学(2K)、儿科放射学住院部(1K和2K)及门诊部(2K)、神经放射学(2K)、儿科重症监护室(1K)、冠心病监护病房(1K),还有一个激光胶片打印工作站。该PACS与医院信息系统和放射学信息系统集成。该系统自1992年2月起投入使用。我们已将此PACS作为日常放射学实践中的一个临床组件进行整合。它每个工作日平均存档2.0千兆字节的图像数据。列出了该系统各组件三个月的性能情况。这种大规模PACS的部署标志着我们在PACS研发工作中的一个里程碑。放射科医生、研究员、住院医生和临床医生用它进行病例复查、会诊,偶尔也用于初步诊断。有了这个大规模PACS,将使我们能够研究10年前PACS研究刚开始时提出的两个关键问题:基于数字系统和基于胶片系统之间的系统性能和成本效益。

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