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Design of a Multi Dimensional Database for the Archimed DataWarehouse

机译:存档数据仓库的多维数据库设计

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摘要

The Archimed data warehouse project started in 1993 at the Geneva University Hospital. It has progressively integrated seven data marts (or domains of activity) archiving medical data such as Admission/Discharge/Transfer (ADT) data, laboratory results, radiology exams, diagnoses, and procedure codes. The objective of the Archimed data warehouse is to facilitate the access to an integrated and coherent view of patient medical in order to support analytical activities such as medical statistics, clinical studies, retrieval of similar cases and data mining processes. This paper discusses three principal design aspects relative to the conception of the database of the data warehouse: 1) the granularity of the database, which refers to the level of detail or summarization of data, 2) the database model and architecture, describing how data will be presented to end users and how new data is integrated, 3) the life cycle of the database, in order to ensure long term scalability of the environment. Both, the organization of patient medical data using a standardized elementary fact representation and the use of the multi dimensional model have proved to be powerful design tools to integrate data coming from the multiple heterogeneous database systems part of the transactional Hospital Information System (HIS). Concurrently, the building of the data warehouse in an incremental way has helped to control the evolution of the data content. These three design aspects bring clarity and performance regarding data access. They also provide long term scalability to the system and resilience to further changes that may occur in source systems feeding the data warehouse.
机译:Archimed数据仓库项目于1993年在日内瓦大学医院开始。它已逐步集成了七个数据集市(或活动领域),以归档医疗数据,例如入院/出院/转移(ADT)数据,实验室结果,放射学检查,诊断和程序代码。 Archimed数据仓库的目的是促进访问患者医疗的集成且一致的视图,以支持诸如医学统计,临床研究,类似病例的检索和数据挖掘过程之类的分析活动。本文讨论了与数据仓库的数据库概念有关的三个主要设计方面:1)数据库的粒度,指的是数据的详细程度或摘要级别; 2)数据库模型和体系结构,描述了数据如何将向最终用户介绍以及如何集成新数据; 3)数据库的生命周期,以确保环境的长期可扩展性。事实证明,使用标准化的基本事实表示来组织患者医疗数据以及使用多维模型都是强大的设计工具,可以集成来自事务型医院信息系统(HIS)的多个异构数据库系统部分的数据。同时,以增量方式构建数据仓库有助于控制数据内容的演变。这三个设计方面为数据访问带来了清晰度和性能。它们还为系统提供了长期的可伸缩性,并具有抵御源数据系统中可能发生的进一步更改的弹性。

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