Schwaiger J, Haller M, Finsterer U
GSF-Forschungszentrum für Umwelt und Gesundheit GmbH medis-Institut, Neuherberg, Germany.
Proc Annu Symp Comput Appl Med Care. 1992:13-7.
In co-operation with the Institute of Anaesthesiology of the Ludwig-Maximilians-University in Munich a computer-based system for the analysis and interpretation of renal function, fluid and electrolyte metabolism of critical care patients has been developed. This paper focuses on the requirements and implementation aspects of the knowledge-based interpretation for this particular system. Objective of the proposed approach is, to transform an enormous--and constantly increasing--amount of raw data available in modern intensive care units (ICUs) into relevant, patient-oriented information, which is easy to understand by the medical staff. The essential features of a knowledge-based system at an ICU are outlined. A system is described where these features are realized using deductive database technology as a specification paradigm and extended relational databases as an implementation platform. The integration into the hospital information system is highlighted.
与慕尼黑路德维希 - 马克西米利安大学麻醉学研究所合作,开发了一种基于计算机的系统,用于分析和解释重症监护患者的肾功能、液体和电解质代谢。本文重点关注该特定系统基于知识的解释的要求和实现方面。所提出方法的目标是,将现代重症监护病房(ICU)中可用的大量且不断增加的原始数据转化为相关的、以患者为导向的信息,以便医护人员易于理解。概述了ICU中基于知识的系统的基本特征。描述了一个系统,其中使用演绎数据库技术作为规范范式,并以扩展关系数据库作为实现平台来实现这些特征。突出了该系统与医院信息系统的集成。