McNeill Kevin M
Radiology Research Laboratory, Department of Radiology, University of Arizona, Tucson, AZ 85724-5067, USA.
J Digit Imaging. 2004 Mar;17(1):28-36. doi: 10.1007/s10278-003-1666-7.
The core principles of digital radiology were well developed by the end of the 1980 s. During the following decade tremendous improvements in computer technology enabled realization of those principles at an affordable cost. In this decade work can focus on highly distributed radiology in the context of the integrated health care enterprise. Over the same period computer networking has evolved from a relatively obscure field used by a small number of researchers across low-speed serial links to a pervasive technology that affects nearly all facets of society. Development directions in network technology will ultimately provide end-to-end data paths with speeds that match or exceed the speeds of data paths within the local network and even within workstations. This article describes key developments in Next Generation Networks, potential obstacles, and scenarios in which digital radiology can become a "killer app" that helps to drive deployment of new network infrastructure.
数字放射学的核心原理在20世纪80年代末已得到充分发展。在接下来的十年里,计算机技术的巨大进步使得能够以可承受的成本实现这些原理。在这十年中,工作可以集中在综合医疗企业背景下的高度分布式放射学上。同一时期,计算机网络已从少数研究人员通过低速串行链路使用的相对晦涩的领域发展成为影响社会几乎所有方面的普及技术。网络技术的发展方向最终将提供端到端的数据路径,其速度与或超过局域网甚至工作站内的数据路径速度。本文描述了下一代网络的关键发展、潜在障碍以及数字放射学能够成为有助于推动新网络基础设施部署的“杀手级应用”的场景。