Suppr超能文献

放射学信息系统、图像存档与通信系统、远程放射学——概述与设计标准。

Radiology information systems, picture archiving and communication systems, teleradiology--overview and design criteria.

作者信息

Roberson G H, Shieh Y Y

机构信息

Department of Radiology, Texas Tech University Health Sciences Center, Lubbock 79430, USA.

出版信息

J Digit Imaging. 1998 Nov;11(4 Suppl 2):2-7. doi: 10.1007/BF03168169.

Abstract

Information technology (IT), long taken for granted in commercial settings, is now being utilized for health-care applications. Medical imaging has lagged comparatively due to the extremely vast data content of each frame; thus, the requirement for expensive high-end components. Further, IT in radiology has evolved from two distinctly separate camps--information systems, known as RIS (radiology information systems) and PACS (picture archiving and communications systems). Both RIS and PACS applications have migrated to the PC environment, enabling cost-effective implementation, but from two backgrounds: RIS from vendors using conventional information systems platforms and products, and PACS from radiographic film and modality vendors. The radiology department at Texas Tech University has assembled a seamlessly integrated, enterprise-wide RIS/PACS/teleradiology intranet. The design criteria include user-friendliness, flexibility to respond to changing needs, and open modular architecture to assure interoperability, cost-effectiveness, and future-proofing of investment. Since no single venor could provide an integrated system meeting our specifications, we decided to assume the burden of constructing our own system. As the system integrator, we embrace open architecture, thus enabling the incorporation of industry-standard-compliant, COTS (commercially off the shelf) products as modules. Microsoft Windows NT operating system, Visual C++ programming language, TCP/IP (transmission control protocol/internetworking protocol), relational SQL (structured query language) database, ODBC (open database connectivity), HL-7 (health level seven) and DICOM (digital imaging and communications in medicine) interfaces are utilized. The usage of COTS components reduces the cost to very affordable levels. With this approach, any module in our system can be replaced when outmoded, without affecting other modules in our system, making it truly future-proof. Construction and evolution of our system (TECHRAD) is reviewed.

摘要

信息技术(IT)在商业环境中早已被视为理所当然,如今正被应用于医疗保健领域。由于每一帧图像的数据量极其庞大,医学成像相对滞后,因此需要昂贵的高端组件。此外,放射学领域的信息技术源自两个截然不同的阵营——信息系统,即放射学信息系统(RIS)和图像存档与通信系统(PACS)。RIS和PACS应用都已迁移到PC环境,实现了经济高效的实施,但它们来自两个不同的背景:RIS来自使用传统信息系统平台和产品的供应商,而PACS则来自射线照相胶片和成像设备供应商。德克萨斯理工大学放射科组建了一个无缝集成的、企业级的RIS/PACS/远程放射学内部网。设计标准包括用户友好性、灵活应对不断变化的需求,以及开放的模块化架构,以确保互操作性、成本效益和投资的前瞻性。由于没有单一供应商能够提供符合我们规格的集成系统,我们决定承担构建自己系统的重任。作为系统集成商,我们采用开放架构,从而能够将符合行业标准的商用现货(COTS)产品作为模块纳入系统。我们使用了微软Windows NT操作系统、Visual C++编程语言、TCP/IP(传输控制协议/网际协议)、关系型SQL(结构化查询语言)数据库、ODBC(开放数据库连接)、HL-7(健康级别7)和DICOM(医学数字成像和通信)接口。使用COTS组件将成本降低到非常实惠的水平。通过这种方法,我们系统中的任何模块过时后都可以更换,而不会影响系统中的其他模块,使其真正具有前瞻性。本文回顾了我们系统(TECHRAD)的构建和发展情况。

相似文献

5
Borderless teleradiology with CHILI.使用CHILI的无边界远程放射学。
J Med Internet Res. 1999 Oct-Dec;1(2):E8. doi: 10.2196/jmir.1.2.e8.
7
Integrating IT into the radiology environment.将信息技术融入放射学环境。
J Digit Imaging. 2002;15 Suppl 1:67-70. doi: 10.1007/s10278-002-5048-3. Epub 2002 Mar 20.
10
Large-scale PACS implementation.大规模PACS实施。
J Digit Imaging. 1998 Aug;11(3 Suppl 1):3-7. doi: 10.1007/BF03168246.

本文引用的文献

1
The role of smart cards in France.智能卡在法国的作用。
Health Data Manag. 1998 Feb;6(2):52, 54, 56.

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验